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The UK should cut its emissions to 87% below 1990 levels by 2040 under its seventh five-yearly “carbon budget”, according to official advice from the Climate Change Committee (CCC).

This target, which includes greenhouse gas emissions from international aviation and shipping, would keep the UK on track for reaching net-zero by 2050, the CCC says.

The committee says electrification is the key to decarbonising the UK economy, with most vehicles shifting to electric and most homes using heat pumps by the middle of the century.

It says there would be small, but vital roles for energy efficiency, behaviour change, carbon removal and technologies, such as carbon capture and storage.

It says reaching net-zero would require significant up-front investment, but would enhance energy security, cut operating costs and reduce bills, by cutting demand for imported fossil fuels.

In total, the CCC says the transition would have a net cost of around £108bn out to 2050, which is £4bn per year, or less than 0.2% of GDP. This is 73% lower than previously thought under its sixth carbon budget advice, published in 2020.

Moreover, the transition to net-zero would cut average household energy bills to £700 below today’s levels by 2050 and cut household motoring costs by a similar amount, the CCC says.

The government has until 30 June 2026 to legislate for the seventh carbon budget, which covers the period from 2038-2042.

Previous governments – whether Conservative or Labour – have always followed the CCC’s advice on the level of UK carbon budgets.

What is the ‘seventh carbon budget’?

The UK’s efforts to tackle global warming are governed by the 2008 Climate Change Act, which was legislated by a cross-party parliamentary consensus of 463 votes to five.

After being amended by the Conservative government in 2019, the long-term target of the act is to cut the UK’s emissions in 2050 to 100% below 1990 levels – usually referred to as “net-zero”.

(The Intergovernmental Panel on Climate Change (IPCC) has affirmed that reaching net-zero is the only way to stop global warming from getting worse – and that emissions would need to reach net-zero by 2050 globally to limit the rise in temperatures to 1.5C.)

In addition to the 2050 target, the Act sets a framework for five-yearly “carbon budgets”, which are “stepping stones” for the UK’s emissions along the pathway towards net-zero.

The UK met its first three carbon budgets, covering the 15 years from 2008-2022, and is currently at the mid-point of the fourth carbon budget period for 2023-2027.

Under the Act, the CCC is required to offer advice to government on the level of each carbon budget, 12 years in advance. In doing so, it must take into account a range of factors, including the latest scientific evidence, technological trends, the state of the economy and public finances.

Its advice on the seventh carbon budget, covering 2038-2042, is for the UK to cut its emissions to 87% below the 1990 baseline – equivalent to a three-quarters reduction on current levels.

Specifically, the CCC says emissions should fall from around 400m tonnes of carbon dioxide equivalent (MtCO2e) in 2023 to just 107MtCO2e on average across 2038-2042.

This is shown in the figure below, alongside previously legislated budgets and the UK’s international climate pledges for 2030 and 2035 under the Paris Agreement.

UK greenhouse gas emissions, including international aviation and shipping (IAS), MtCO2e.
UK greenhouse gas emissions, including international aviation and shipping (IAS), MtCO2e. Lines show historical emissions (black) and the CCC’s “balanced pathway” to reaching net-zero. Legislated carbon budgets levels are shown as grey steps. The first five budgets did not include IAS, but “headroom” was left to allow for these emissions (darker grey wedges). Source: CCC 2024 progress report

Note that the sixth and seventh budgets were set in line with the net-zero target, whereas previous budgets were set on a pathway to 80% by 2050, hence the step change.

These budgets also include emissions from international aviation and shipping, whereas previous ones had allowed “headroom” for these emissions. (The CCC notes that the government has yet to reflect this shift in legislation and calls for it to do so, when setting the seventh carbon budget.)

Now that the CCC has offered its advice, the government must pass legislation setting the level of the seventh carbon budget by no later than 30 June 2026.

Previous governments – whether Conservative or Labour – have always followed the advice of the committee. However, the government can choose not to do so, if it explains why.

This legislation is subject to the “affirmative procedure” in parliament, which can reject the government’s proposal. It must be debated and voted through by both houses of parliament.

Notably, the CCC backs a proposal by the former prime minister Rishi Sunak for the government to publish its plan for meeting the seventh carbon budget, before the target is voted on by parliament.

It suggests the government could publish a draft plan ahead of the votes in parliament. (The Climate Change Act requires the government’s final plan for meeting carbon budgets to be published “after” the carbon budget has been set.)

In line with its long-standing position, the CCC says the seventh carbon budget should be met via domestic action “without resorting to international [emissions] credits”.

Note that the CCC’s full methodology report will be published on 21 May 2025, alongside its advice to the devolved administrations of Northern Ireland, Scotland and Wales.

How could the UK cut emissions 87% by 2040?

The CCC says its recommended 87% emissions cut for the seventh carbon budget is “ambitious”, but remains “deliverable provided action is taken rapidly”.

In order to illustrate what it would take to reach this target, the CCC advice includes a “balanced pathway” that extends out to net-zero by 2050.

Speaking to a pre-launch press briefing, CCC chief executive Emma Pinchbeck, who took up the role last November, said this was designed to prove the 87% target was “feasible and deliverable”.

However, she stressed that the committee does not set policy and that it was up to the government to choose its preferred route. (See: What new climate policies does the CCC recommend?)

Still, the balanced pathway offers useful insight into how the UK could reach the 87% target by 2040 – and what the country would look like as a result.

To date, most of the reductions in UK greenhouse gas emissions have come in the power sector thanks to the expansion of renewable energy and the phase-out of coal-fired generation.

By 2040, however, this would need to change significantly, with emissions cuts taking place across every sector of the UK economy. (See: How would each sector need to change by 2040?)

Specifically, the UK would massively reduce emissions from surface transport (86%), building heat (72%), industry (78%) and the power sector (88%), historically the country’s largest polluters.

By 2040, aviation and agriculture would be the UK’s largest emitters, shown in the figure below. Even in 2050, these sectors would continue to have significant emissions.

Under the CCC’s net-zero pathway, natural carbon sinks in the land sector would balance out emissions from agriculture, while engineered carbon removals would balance aviation.

UK greenhouse gas emissions by sector, MtCO2e, showing the six largest emitters as of 2023
UK greenhouse gas emissions by sector, MtCO2e, showing the six largest emitters as of 2023 and changes to 2050 under the CCC’s balanced pathway. Source: Climate Change Committee.

While emissions cuts would be needed across the whole economy to meet the seventh carbon budget, the power sector would remain the lynchpin for wider progress. This is because electrification is now seen as the key solution for decarbonising the rest of the economy.

Whereas the sixth carbon budget advice hedged, offering five different routes towards net-zero, the CCC now offers a single balanced pathway built around clean power. The report says:

“In many key areas, the best way forward is now clear. Electrification and low-carbon electricity supply make up the largest share of emissions reductions in our pathway.”

This includes heat pumps in homes and businesses. The CCC says very clearly that there is “no role” for hydrogen heat.

In addition, the CCC now sees a far greater role for electrification of transport, including all HGVs, as well as in heavy industry.

Furthermore, the CCC points to important roles for energy efficiency, such as improved home insulation, and continued gradual changes in behaviour, such as reduced red meat consumption.

Where electrification is not possible, the CCC says other technologies will be needed. This includes bioenergy, synthetic fuels, such as hydrogen or methanol, and the continued use of small amounts of fossil fuels – in “limited circumstances” – with carbon capture and storage (CCS).

(The CCC says: “We cannot see a route to net-zero that does not include CCS.”)

The Sankey diagram below shows how the UK’s energy system looks today – and how it would need to change by 2050, if the seventh carbon budget and net-zero target are to be met.

On the left, each figure shows inputs of “primary energy” into the economy from low-carbon sources or fossil fuels. The central section shows the conversion of these fuels into final energy delivered to consumers, such as electricity or road fuel. The right-hand section shows the useful “energy services” that this final energy is able to provide, such as heat, light or motion (green).

Notably, the energy system would shift away from relying on fossil fuels (grey) towards a much greater use of electricity (blue). Technologies such as heat pumps and electric vehicles are far more efficient than boilers or combustion engines. As a result, the UK would get more useful energy (green) using far less primary energy, thanks to waste heat losses being halved (red).

Sankey diagram showing the UK energy system in 2025 and 2050 under the CCC’s balanced pathway.
Sankey diagram showing the UK energy system in 2025 and 2050 under the CCC’s balanced pathway. The electricity system is shown in blue, fossil fuels are grey, losses of waste heat are red and useful energy services green. Source: Climate Change Committee.

The huge reductions in fossil-fuel use and related increase in the overall efficiency of the UK system would yield significant economic benefits, the CCC explains, covered in the next section.

The CCC says that the shift to net-zero would cut oil imports tenfold from current levels by 2050 and cut gas imports by two-thirds over the same period.

What are the costs and benefits of net-zero?

The CCC’s advice comes against a backdrop of record global temperatures, with 2024 the first full year more than 1.5C hotter than pre-industrial times and escalating extreme weather impacts.

At the same time, there is growing hostility to climate action from large parts of the UK’s right-leaning media, as well as climate-sceptic, right-wing populist politicians, such as US president Donald Trump.

In addition, Russia’s 2021 invasion of Ukraine and the subsequent spike in fossil-fuel prices continue to cause geopolitical instability – and high energy bills.

The CCC presents the pathway towards net-zero as a solution to all of these problems.

It says reaching net-zero would not only end the UK’s contribution to climate change, but would also reduce high energy bills and energy insecurity caused by reliance on fossil-fuel imports.

Moreover, it says the up-front investment needed to reach net-zero is much smaller than thought in its previous 2020 advice, bringing the net cost down to just £108bn over 25 years (0.2% of GDP).

The new 2025 estimate of the net cost of reaching net-zero by 2050 is shown by the red bars in the figure below, compared with the previous sixth carbon budget advice from 2020 (blue). The chart also shows the capital investments and operational savings that make up the net cost overall.

UK capital investment costs and operational savings under the CCC’s balanced pathway to net-zero, £bn, 2025-2050.
UK capital investment costs and operational savings under the CCC’s balanced pathway to net-zero, £bn, 2025-2050. Blue: sixth carbon budget advice from 2020. Red: seventh carbon budget advice from 2025. Source: Carbon Brief analysis of figures from the CCC.

Significantly, the new advice halves the CCC’s previous estimate published in 2020 of the capital investments needed to hit net-zero, from £1.3tn over 2025-2050 to £0.7tn. The earlier figure has been cited repeatedly by those attempting to undermine support for net-zero.

(Those attacking climate policy rarely mention the operational savings that would be delivered by investing in low-carbon technologies as a result of buying less oil and gas. Even under the earlier 2020 advice, the net cost of net-zero was £0.4tn, or around 0.6% of GDP.)

Notably, the large majority of the investment needed to reach net-zero would come from the private sector, according to the CCC, as long as the “right incentives” are in place.

It says that publicly funded outlays would need to range from £6-23bn per year out to 2035 and would never exceed 2% of government spending overall. Pinchbeck told a press briefing:

“We think 65-90% of the capital required is coming from the private sector…Wwhat the government needs to do is create the enabling environment to get that capital to move.”

There are several reasons for the fall in estimated net costs, with the largest contribution coming from the CCC assuming that EVs will be cheaper to buy than petrol equivalents within a few years.

This means that decarbonising the road transport sector would be cheaper than sticking with combustion engine cars, even before considering the considerable operational cost savings.

The figure below shows how the up-front investment needed for net-zero would deliver substantial operational cost savings from the 2040s under the CCC’s balanced pathway.

UK capital investment costs and operational savings
UK capital investment costs and operational savings under the CCC’s balanced pathway to net-zero by sector, £bn, 2025-2050. Source: CCC.

The figure shows that the largest capital cost would come in the buildings sector, where it expects the upfront cost of heat pumps could remain higher than gas boilers even in 2050.

As a result – and despite lower running costs, if electricity prices are cut in line with its advice – the CCC says the government would need to support households shifting to heat pumps.

In total, the CCC says that household energy bills for heat and power could fall to £700 below 2025 levels by 2050. In addition, it says that motoring bills would fall by another £700.

The advice considers distributional impacts for the first time, looking at how different types of households would be affected by the shift to net-zero. If the government reduces electricity costs then most types of households would see a cost saving. The exception to this would be homes unable to switch to heat pumps and using less efficient “resistive” heating instead.

In a pre-launch press briefing, Pinchbeck addressed those arguing against the transition:

“If you are an elected representative who is hostile to renewables, heat pumps, electric vehicles, what our numbers say is you are also hostile to your constituents saving £700 on their energy bill and [another] £700 on their fuel bill through making those changes.”

What new climate policies does the CCC recommend?

The CCC says that achieving its recommended targets will rely on a “combination of markets, government support and choices by the public”.

It stresses that a “stable” and “consistent” set of climate policies would help to provide confidence to people and businesses during the net-zero transition. It adds that certain policies are also needed to “provide financial incentives, where necessary”.

Under the previous government, the committee repeatedly warned that the UK required more comprehensive climate policies. This shortfall was exacerbated by the Conservative leadership’s decision in 2023 to roll back some of its own net-zero policies.

The CCC has also warned that the Labour government, which was elected last year, must take urgent action to “make up lost ground”.

However, the committee’s new recommendations are less prescriptive about specific policies than its previous advice. (The last carbon budget advice, in 2020, was accompanied by an additional 209-page report titled: “Policies for the sixth carbon budget and net-zero.”)

Speaking to journalists at a press briefing, interim CCC chair Prof Piers Forster explained this new approach:

“We went back to the Climate Change Act and we did have a look at our core responsibility within that act – and that is to give government and parliament the very best non-partisan advice possible…It’s not up to us to make the policy, it’s up to government.”

Nevertheless, the new report still includes 43 “priority recommendations” for the government to support the delivery of the proposed seventh carbon budget. There are “seven core themes that underpin most of these recommendations”, which are:

  • “Making electricity cheaper”: Rebalancing prices to remove policy levies from electricity bills could incentivise people and businesses to choose low-carbon technologies, the CCC says.
  • “Removing barriers”: Processes and rules around planning, consenting and regulatory funding – including those covering grid infrastructure – “need to enable rapid deployment of low-carbon technologies”, according to the CCC.
  • “Providing certainty”: For technologies where markets have already “locked into a solution”, the committee says the government should introduce clear policies for phasing out old technologies and scaling up new ones.
  • “Supporting households to install low-carbon heating”: Government support is specifically needed to tackle the high up-front costs of heat-pump installations and other barriers such as “misconceptions”, the report states.
  • “Setting out how government will support businesses”: The CCC says businesses, including farmers, need clarity on how much government support they will receive and how much to rely on market mechanisms, such as the UK emissions trading scheme (ETS), to decarbonise.
  • “Enabling the growth of skilled workforces and supporting workers in the transition”: Government, businesses and affected communities should plan for changes in some industries, plus ensure that there is a workforce available to enable the net-zero transition, according to the CCC.
  • “Implementing an engagement strategy”: Finally, the committee stresses the importance of the government providing ”clear information to households and businesses”, including on the benefits of low-carbon choices.

There is some more specific guidance within these recommendations. This includes confirming that there will be no role for hydrogen in heating, no new properties connected to the gas grid from 2026 and no extended contracts for large biomass plants operating extensively beyond 2027.

CCC lead analyst Dr James Richardson tells Carbon Brief that such specificity reflects the committee’s certainty on some policies. He contrasts this with rebalancing electricity pricing, which the committee thinks is necessary, but could be achieved in a number of ways.

The report also calls for the government to publish its long-awaited land-use framework, which it is currently consulting on, as well as a common sustainability framework for biomass, which would support bioenergy with carbon capture and storage (BECCS).

More broadly, the CCC recommends that the government should produce a draft set of proposals and policies for delivering the seventh carbon budget. This would “aid parliamentary scrutiny in the setting of the budget level”, it says (See: What is the ‘seventh carbon budget’?).

It also says the government should introduce indicators to ensure emissions cuts are on track, as well as “contingency measures that could make up any shortfalls”.

Beyond emissions cuts, the CCC also calls for the government to strengthen the implementation of its third national adaptation plan, and introduce “clear objectives and measurable targets” across all departments.

How would each sector need to change by 2040?

The CCC lays out a detailed breakdown of how each sector in the UK economy could reduce its emissions in the coming years.

This analysis aligns with its balanced pathway, which reduces overall emissions in line with the seventh carbon budget and, ultimately, achieves net-zero by 2050.

The committee also details key metrics, from electric cars on the road to average meat consumption, and how they change on this trajectory.

Surface transport

Road and rail transport has been the sector with the highest emissions in the UK for a decade, currently accounting for around a quarter of the nation’s emissions.

It is also the sector that would see the biggest dip in emissions in the CCC’s pathway – dropping by 86% from 103MtCO2e in 2023 to 15MtCO2e in 2040.

As the chart below shows, that drop is driven predominantly by the electrification of cars and vans. This accounts for 72% of the emissions savings out to 2040.

Another 12% comes from zero-emission heavy-goods vehicles (HGVs) and 3% comes from other zero-emissions vehicles, such as buses and motorcycles. Most of these vehicles are also expected to be electric.

Sources of abatement in the “balanced pathway” for road and rail transport.
Sources of abatement in the “balanced pathway” for road and rail transport. Source: CCC.

In total, by 2040 some 80% of cars, 74% of vans and 63% of HGVs would be electric, under the CCC’s balanced pathway.

The uptake of electric vehicles modelled by the CCC is faster than the trajectory in the government’s legally binding zero-emission vehicle (ZEV) mandate. The committee says this is achievable, noting that “there has been strong early electric vehicle growth in the UK”.

In the CCC’s pathway, the electric-vehicle transition is “propelled by the falling cost of batteries”, which allows electric cars to match the purchase price of petrol and diesel cars by 2026-2028.

The expansion of public charging points also plays an important role. The committee says there should also be efforts to make local public charging “more comparable to charging at home”.

The Labour government pledged to reintroduce the 2030 phaseout date for new petrol and diesel cars, which was delayed by Rishi Sunak’s Conservative government.

The CCC says the government should enact this pledge, as well as clarifying its position on similar phaseout dates for vans and HGVs with combustion engines.

Moreover, the committee says the government should consider including plug-in hybrid electric vehicles (PHEVs) in the phaseout. It says “ambitious targets” for the ZEV mandate would be needed beyond 2030, if PHEVs are not included in the ban.

The committee stresses that electric cars could also be included in a public information campaign to communicate their cost-saving potential. People have been “misinformed about battery longevity and electric vehicle lifecycle emissions”, the report says.

In addition, the committee says there is a need for a suite of policies, subsidies and regulatory mechanisms to scale up sales of electric vans and HGVs.

The CCC sees little or no role for hydrogen in any form of transport.

Another sizable chunk of emissions savings, amounting to 9% by 2040, comes from the replacement of 7% of car journeys with buses, walking and cycling. This is an “ambitious assumption” that the committee says is based on evidence from Germany and the Netherlands.

To achieve this shift, the committee says the government should “provide local authorities with long-term funding and powers”.

The CCC emphasises that many of the biggest benefits associated with net-zero will come from a switch to low-carbon forms of transport. For example, people will save money because electric cars are cheaper to run.

However, this also applies to the £2.4-8.2bn annual “co-benefits” that will accrue across the economy by 2050. Most of these benefits, including better air quality, fewer road accidents and reduced congestion, result from a switch to electric cars or away from cars altogether.

Building heat

Heat pumps are going to drive the biggest reduction in heating emissions in the UK, while there is “no role” for hydrogen in the sector, according to the CCC.

Residential buildings are currently the second highest emitting sector in the UK, accounting for 12% of emissions (52MtCO2e) in 2023.

The largest source of emissions within the sector is fossil fuels for space heating and hot water, representing 96% of emissions. Of this, 80% comes from gas, while oil and liquefied petroleum gas make up another 12%.

Emissions in the sector have gradually decreased since the early 2000s, driven by policies to improve the efficiency of heating technologies and invest in energy efficiency. A sharp decrease in emissions since 2021 has been caused by high gas prices and mild winters.

Under the CCC’s balanced pathway, emissions from residential heat would fall to 66% below 2023 levels by 2040. By the middle of the century, the sector could almost totally decarbonise.

Building emissions fall faster in the 2030s in the seventh carbon budget advice than in the sixth carbon budget report, predominantly due to the use of “S-curves” for the pickup of heat pumps.

Speaking to Carbon Brief, the CCC’s director of analysis Dr James Richardson says that, while the UK is behind other European countries in the installation of heat pumps, the advantage of being such a “laggard” is that it can learn from other markets, making the modelling “more precise”.

While there will be a limited role for other electric-heating technologies, there is no role for hydrogen heating in residential buildings, the CCC says.

Speaking during a briefing, Richardson highlighted the weight of research showing that hydrogen heat would be expensive and challenging to roll out. He said:

“Hydrogen is a limited resource. It’s quite costly to make and you need quite a lot of equipment that doesn’t already exist, so we can’t just magic it out of the air, as it were, and using it for heating is not a particularly efficient use of hydrogen.”

The share of existing homes with low-carbon heating increases from 8% in 2023 to 68% in 2040 under the CCC’s balanced pathway, including the share of homes with a heat pump growing from sound 1% to 52% over the same time period.

This would mean 75% of low-carbon heating systems installed by 2040 are heat pumps, with 94% of these being air-source heat pumps, the advice suggests.

In the CCC’s pathway, the rate of heat pump installations grows from 60,000 in 2023 to nearly 450,000 in 2030, and then 1.5m by 2035. While this represents a rapid increase, it falls short of the government’s target of 600,000 installations a year by 2028.

Other forms of low-carbon heating systems expected to grow are: communal heat pumps (3% by 2040); low-carbon heat networks (9%); and direct electric heat (13%).

In addition to getting rid of their boilers, most homes would also receive small energy efficiency improvements and 17% would see big efficiency improvements installed by 2050.

Energy efficiency would be responsible for 10% of emissions reductions in 2040, according to the CCC.

The committee’s balanced pathway assumes all new homes would be built to be highly efficient and have low-carbon heating systems. These represent 14% of emissions reductions in 2040.

Sources of abatement under the CCC’s balanced pathway within the building heating sector.
Sources of abatement under the CCC’s balanced pathway within the building heating sector. Source: CCC.

There are substantial upfront capital-cost requirements for lowering emissions within the residential sector, but energy efficiency measures and low-carbon heating systems have additional social benefits beyond long-term savings. The CCC estimates the co-benefits of its pathways at £650m by 2040.

The transition represents an opportunity to reduce fuel poverty in the UK, it says, reducing the number of households in fuel poverty by 77% by 2050 compared to 2025.

To facilitate this transition, the CCC recommends electricity bills be made cheaper by removing levies and other policy costs, as well as decarbonising the electricity system. (See: Electricity below.)

Additionally, the government should confirm that there will be no role for hydrogen in home heating, reinstate regulations that all heating systems installed by 2035 are low carbon and provide long-term funding for energy efficiency, amongst other policy moves.

Electricity

Emissions from the electricity sector have fallen by 81% since 1990, to 38MtCO2e in 2023, according to the CCC.

The majority of this decrease has happened since 2012 due to the phase-out of coal – the UK’s last coal-fired power plant closed last year – and an increase in low-carbon generation.

Between 2010 and 2023, the share of generation from wind and solar rose from 3% to 34%, helping to displace coal and gas, the CCC notes. The remaining emissions in the electricity sector are largely from unabated gas, which accounted for 30% of UK generation in 2023.

Under the CCC’s balanced pathway, emissions from electricity supply fall by 88% to just 5MtCO2e in 2040. The committee notes that the sector can almost completely decarbonise by 2050.

Over the next 25 years, demand for electricity is expected to more than double, from 274 terawatt hours (TWh) in 2023 to 692TWh in 2050. This is due to the increase in electric vehicles, heat pumps and other electric technologies to decarbonise other sectors.

Renewable generation would make up 80% of generation in 2040. This would require the deployment of offshore wind – which would be the “backbone” of the system – to increase from around 1-2 gigawatts (GW) per year to 5.7GW per year out to 2030, before then maintaining a rate of 4GW per year, on average, out to the middle of the century.

Onshore wind would require an average deployment rate of 0.8GW per year, peaking at 1.9GW in 2030 – this is comparable to its historical peak of 1.8GW in 2017. Solar would need an average deployment rate of 3.4GW per year – below the historical peak seen in 2015 of 4.1GW.

The CCC says there are several potential barriers to deployment, including planning, grid connections and supply-chain bottlenecks.

The CCC expects “firm power” from nuclear and bioenergy with carbon capture and storage (BECCS) to make up 13% of generation in 2040. This would require an additional 5GW of nuclear capacity to be built, in addition to the Hinkley C new nuclear plant under construction in Somerset.

“Dispatchable” generation from gas with CCS or hydrogen-fired turbines would make up the final 7% of the mix, but with a large capacity of 38GW by 2050. The electricity network would also need to be expanded “at pace” to ensure that the growing demand for electricity is enabled.

The electricity system of the future would include much more grid storage, the CCC says, with 35GW of short-duration batteries by 2050, more than a ten-fold increase on 2023 levels. A range of medium-duration technologies are also expected to be rolled out, with 7GW on the grid by 2050.

Smart demand flexibility systems would need to be expanded and interconnectors to increase in capacity from around 10GW today to 28GW by 2050.

Together with storage, these would help manage grid security, with the CCC modelling a one-in-20 “adverse weather year” that includes wind droughts, to ensure the system would remain reliable.

The CCC states that these changes would allow the emissions intensity of electricity – its emissions per unit of generation – to fall by 95% by 2040 and 99% by 2050.

The growth of cheap renewable energy would displace unabated gas generation, resulting in operational savings, the CCC says, as shown in the chart below. In order for the effect of this to be felt by consumers, policy costs should be rebalanced away from electricity bills, the CCC adds.

Cost and cost savings in the electricity supply sector in the CCC’s balanced pathway.
Cost and cost savings in the electricity supply sector in the CCC’s balanced pathway. Source CCC.

Despite the “significant investment” required to decarbonise and expand the electricity system under the CCC’s pathway, the underlying costs of electricity supply fall compared to the baseline.

The shift provides a number of co-benefits as well, including industrial opportunities, increasing energy security by reducing reliance on volatile international prices and improving air quality.

To meet the requirements of the balanced pathway, the CCC calls on the government to ensure the funding and auction design for the next contracts-for-difference subsidy auctions are sufficient.

It also calls for reform processes and rules around planning and consenting of new projects, as well as clarity around electricity market arrangement, amongst other actions.

Industry

By 2040, the CCC’s balanced pathway sees emissions from industry falling by 78% from 52MtCO2e in 20223, with industrial output remaining largely unchanged.

It says that industry could almost completely decarbonise by 2050, with a large part of these reductions coming via electrification.

Emissions from industry have fallen by 63% since 1990, due predominantly to a steep decline in UK production of emissions-intensive materials.

A “structural shift” has seen lower-carbon, but higher-value industry outputs increase, such as pharmaceuticals and aerospace, allowing “gross value added” from the sector to grow by 26%, while energy consumption for each unit of output has fallen by 45% between 1998 and 2022.

At the same time, however, steel production has fallen from 18Mt in 1990 to 6Mt in 2023 and cement from 15Mt to 8Mt.

The closure of one of the UK’s last remaining blast furnaces, along with the expected closure of a second site, are expected to reduce emissions in the sector by at least another 8MtCO2e in 2024, the CCC says. It adds that the owners are planning to build electric arc furnaces at both sites, to maintain steel production with lower emissions.

Going forward, the largest share of emissions reduction for industry under the CCC’s balanced pathway is expected to come from electrification, representing 57% of savings in 2040.

Sources of abatement within industry, under the CCC’s balanced pathway.
Sources of abatement within industry, under the CCC’s balanced pathway. Source: CCC.

The committee notes that there are already electrical alternatives to most types of fossil-fuelled heating used in industry, with many bringing “important advantages”, such as greater efficiency.

In cases where electrification is not possible, the CCC envisages fuel switching to hydrogen, as well as a limited amount of bioenergy and carbon capture and storage (BECCS) being used to compensate for industrial process emissions that cannot be avoided.

CCS is expected to account for 17% of industrial emissions cuts 2040, helping to tackle those from industrial subsectors with a high level of process emissions or where switching away from fossil fuels is not practical. As such, it is only deployed in two industrial subsectors within the balanced pathway: chemicals, and cement and lime.

The CCC has assumed that the capture rate of CCS technologies will be 90% until 2040, and 95% beyond that.

Hydrogen is expected to represent 7% of emissions reductions in 2040. In particular, it would play a “meaningful role” in decarbonising chemicals, glass and other minerals, iron and steel, as well as non-road mobile machinery.

Bioenergy is expected to reduce emissions by 5% by 2040. While many processes could, in theory, run on bioenergy, the CCC notes that it should be prioritised for subsectors that use CCS, particularly cement.

Combining bioenergy and CCS is expected to deliver 0.8 MtCO2e of CO2 removals by 2050.

Resource efficiency and energy efficiency are expected to represent 7% and 6% of emissions reductions in 2040, respectively.

The CCC’s pathway between 2025 and 2050 increases sector costs compared to a baseline. But there are potential additional benefits, for example, electrification offers an opportunity for manufacturers to provide more demand management services to the national grid.

It also notes that there is a potential competitive advantage for UK industry in decarbonising early, with low-carbon production expected to buck the wider trend of high-carbon goods demand falling.

To support the decarbonisation of industry, the CCC recommends that the government make electricity cheaper relative to gas, speed up the grid connection process, maintain support for CCS and hydrogen, plus strengthen the UK Emissions Trading Scheme, amongst other measures.

Agriculture and land use

Agriculture accounted for 11% of emissions in 2022 (47.7MtCO2e), while net emissions from land use, land-use change and forests were 0.8MtCO2e.

The CCC expects agricultural emissions to fall by 39% by 2040. Agricultural emissions will make up 27% of the UK’s emissions by 2040, making it the second-highest emitting sector at the time.

By 2050, the CCC’s pathway shows agricultural emissions falling to 26.4MtCO2e.

Emissions in the sector start lower in the seventh carbon budget’s modelling than in the previous iteration and fall further by around 10Mt. This is due to several factors, including changes to the inventory and emerging trends within meat consumption.

Speaking to Carbon Brief, the CCC’s director of analysis Dr James Richardson says:

“There is a trend in which red meat is losing ground within meat overall. And so we’ve reflected that trend in our assumptions that for any given amount of meat, less red meat within that reduces emissions. So that’s helping to bring down those agriculture numbers.”

Reducing livestock numbers is expected to reduce 32% of sectoral emissions by 2040 and release 68% of agricultural land by 2040. The government should support this shift, including helping to reduce average meat consumption by 25% by 2040 and 35% by 2050 compared to 2019 levels, according to the CCC.

Soils and livestock measures are expected to reduce emissions by 14% in 2040 and decarbonising machinery by 21%, as shown in the chart below. Other land-release measures are expected to reduce emissions by 2% and release 32% of land out of agriculture in 2040.

Sources of abatement within the agriculture and land use sectors, under the CCC’s balanced pathway.
Sources of abatement within the agriculture and land use sectors, under the CCC’s balanced pathway. Source: CCC.

Land-use emissions are now 10MtCO2e lower than 1990 levels and are expected to become a small carbon sink of 1.9MtCO2e in 2040.

The CCC pathway sees peatland restoration and management reducing emissions by 17% in 2040. Woodland creation and management also reduce emissions by 4%, rising to 15% by 2050.

This follows the UK missing its tree-planting targets, failing to plant an area of forest nearly equivalent to the size of Birmingham, according to Carbon Brief analysis published last year.

Energy crops account for 7% of emissions reductions, with 0.7m hectares or almost 3% of UK land area allocated to three perennial crops – miscanthus, short-rotation coppice and short-rotation forestry by 2050. Agroforestry and hedgerows account for a 2% emissions reduction in 2040.

Aviation

Aviation emissions drop by 17% to 29.5MtCO2e in 2040 in the CCC’s balanced pathway. By which point, aviation would have risen from sixth position to be the highest-emitting sector, due to its slow pace of decarbonisation.

As aviation has “no credible way to completely decarbonise”, roughly 60% of the engineered CO2 removals by 2050 may need to balance out its emissions, according to the CCC. (These removals primarily come from bioenergy with carbon capture and storage.)

A core message within the CCC’s report is that the aviation sector should “pay for [its] share” of removals, as well as the broader costs of decarbonising and addressing the non-CO2 effects of flights on global warming. These costs would be “reflected in the price of flying”.

This, in turn, would help to discourage growth in the sector, which would also help to curb emissions, the CCC says. Overall, limiting the number of flights accounts for more than half of the emissions savings out to 2040.

However, this is compared to a baseline scenario in which per-capita distance flown grows 53% above 2025 levels by 2040. In the CCC’s pathway, demand remains fairly steady for the next decade, then increases 16% from 2025 levels by 2040

The advice comes in the wake of the government recently supporting the expansion of Heathrow and, potentially, other airports.

The CCC’s latest pathway allows for greater growth in passenger numbers than previous advice – 402 million by 2050, rather than 365 million. It has also dropped a previous recommendation that there should be “no net increase” in airport capacity.

However, it stresses that government and industry “may need to take additional demand management measures”, if technologies do not expand sufficiently to reduce emissions.

Sustainable” aviation fuels (SAFs) account for 33% of emissions cuts by 2040 in the CCC’s pathway. This involves SAFs rising from meeting 1% of total demand today to 17%.

(The government and industry have emphasised their focus on SAFs, but many experts have doubts about how much they can be relied on to curb emissions.)

A further 13% of emissions savings in the CCC’s pathway come from efficiency improvements and, to a much lesser extent, the use of hybrid and zero-emission aircraft. The overall breakdown of emissions reductions is laid out in the chart below.

Sources of abatement in the “balanced pathway” for aviation.
Sources of abatement in the “balanced pathway” for aviation. Source: CCC.

However, the CCC says that, with SAFs and CO2 removal still in the early stages of development, there remains great uncertainty around how aviation will decarbonise.

This means the final breakdown between these technologies and demand reduction could be very different. Therefore, it stresses that “all must be pursued” to ensure the UK meets its goals.

Finally, the CCC advises that the government should commit to monitoring and tackling the non-CO2 warming effects of aviation, as well as working with other countries to “go further” than the UN International Civil Aviation Organization (ICAO) to curb emissions from international flights.

Other sectors

The CCC’s balanced pathway also covers sectors that contribute smaller shares of UK emissions.

The largest of these is fuel supply – primarily, oil and gas production, as well as hydrogen and bioenergy – which accounts for 7% of UK emissions.

Even smaller shares come from waste and shipping, as well as fluorinated gases (F-gases), which are used in refrigeration, air conditioning, heat pumps and medical inhalers.

Here, Carbon Brief rounds up some of the key points and recommendations for these sectors:

  • Fossil-fuel supply emissions are expected to decline even without any new policies, as North Sea production dwindles and demand falls due to electrification. Oil and gas production would fall 68% by 2040 and 85% by 2050 under the balanced pathway.
  • The CCC says the government should provide incentives to encourage the electrification of oil and gas platforms and CCS use in refineries. It suggests “proactive transition plans” to help oil and gas workers find new employment.
  • “Low-regret” hydrogen infrastructure, such as networks and storage, should be “fast-tracked” so it is available from the 2030s, the committee says.
  • Bioenergy has an “important, but limited role in enabling decarbonisation”, met by increasing domestic supply of energy crops and fewer imports from overseas.
  • Shipping emissions drop by 62% by 2040 and – unlike aviation – the sector could almost completely decarbonise by 2050 through improved efficiencies and a switch to low-carbon fuels and electricity, according to the CCC.
  • Waste is one of the few sectors that is expected to continue emitting in 2050, due to hard-to-abate processes in wastewater, landfill methane emissions and uncaptured CO2 from energy from waste.
  • The CCC says the UK will need to introduce regulations to replace F-gases with less harmful alternatives. It says 2024 EU regulations provide a useful model for what needs to be achieved.

What does the CCC say about imported emissions?

The CCC notes that a significant share of the UK’s overall carbon footprint is associated with goods and services imported from overseas.

Specifically, it says that imported emissions – at 381MtCO2e in 2021 – are of a similar scale to those that take place within the UK’s borders, which were 423MtCO2e that year.

Contrary to widespread perception, however, the committee notes that these imported emissions have barely changed over the past four decades.

In other words, emissions cuts within the UK’s borders have not been wiped out by increasingly “offshored” emissions embedded in imports.

Moreover, the report shows that nearly a third of these imported emissions – some 29% – relate to trade with the EU, whereas only 12% come from China. Similarly, the largest sectors are food and forestry imports (21%), rather than manufactured goods.

Many commentators have tried to argue that the UK should set climate goals based on its overall emissions footprint, on a so-called consumption basis rather than a territorial one.

However, the CCC explains that emissions taking place overseas are not under the jurisdiction of the UK government. It adds that attempting to regulate emissions imported into the UK “could undermine the accountability of other countries for their territorial emissions…[given] ultimate responsibility for reducing emissions lies with the producer”.

In addition, it notes that statistics on consumption-based emissions are “inherently uncertain”, which would make them “problematic” as a basis for legally binding carbon targets.

Instead, the CCC proposes a non-legally binding “benchmark” on imported emissions, which would set out the government’s expectations for how emissions from imports should decline over time.

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Factcheck: No, Europe’s heatwaves are not being ‘caused’ by declining air pollution

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This summer has seen Europe suffer through a series of record-breaking heatwaves.

Amid widespread media coverage of the number of deaths and the influence of climate change, the UK’s Daily Telegraph reported on new research with the incorrect headline: “Heatwaves caused by fall in pollution.”

The article was shared on social media by Richard Tice – deputy leader of the hard-right, climate-sceptic Reform UK party – along with a number of prominent rightwing commentators.

Tice claimed that “net stupid zero is contributing to rising temperatures, not helping”, adding that “we have been gaslit and lied to”.

GB News followed up with its own article, incorrectly headlined: “Britain’s scorching heatwaves caused by falling pollution levels, researchers find.”

Scientists tell Carbon Brief that the framing of heatwaves being “caused” by declining air pollution is “wrong”.

While a drop in pollution has reduced the cooling impact it has had in the past, the scientists say, Europe’s summer heatwaves are primarily becoming more extreme “as a result of greenhouse-gas-induced warming”.

Another scientist adds that “any attempt” to link this research to net-zero policies is “simply wrong”.

Fast warming

The extensive reporting around Europe’s heatwaves in recent months has often mentioned that Europe is the world’s fastest-warming continent.

Europe has warmed rapidly since the 1980s

The new study in question aims to unpack why Europe’s summer temperatures are rising more quickly than other regions of the northern hemisphere’s mid and high latitudes.

The research – published in Geophysical Research Letters – explores the role of air pollution and, specifically, how it affects circulation patterns in the atmosphere.

(The study focuses on long-term trends in European summers and does not include the very recent heatwaves.)

Human-caused emissions of aerosols – tiny, light‑scattering particles produced mainly by burning fossil fuels – have long acted to “mask” global warming. This is largely because they absorb or reflect incoming sunlight and influence the formation and brightness of clouds.

To understand how the climate of Europe – or any region – is changing, scientists need to take into account a whole range of factors, says Prof Bjørn Samset, a research professor at Norway’s Center for International Climate Research (CICERO), who was not involved in the work.

This includes “greenhouse gases, aerosols, land-use change, natural variability and how they all interact”, he says, adding:

“The effects of air pollution on circulation, which is the topic here, has long been difficult to pin down.”

As European countries improved their air quality through the second half of the 20th century, the cooling effect of aerosols has gradually been removed.

This can boost heatwaves in two ways – directly, by letting more sunlight reach the land surface and, indirectly, by influencing the jet stream.

Using hundreds of simulations from nine climate models, the new study finds that a decline in aerosols is resulting in more frequent “quasi-stationary Rossby waves”.

Rossby waves are huge meanders in the jet stream. Occasionally, they become slow-moving – or “quasi-stationary” – which allows weather systems to get stuck over one region, leading to prolonged heatwaves.

These circulation changes have contributed to Europe’s rapidly warming summers.

However, while Europe’s heatwaves are being influenced by declining aerosols, it is “wrong” to say they are being “caused” by them, says Prof Erich Fischer, a climate scientist at ETH Zurich.

Headline in the Daily Telegraph, 22 July 2026.
Headline in the Daily Telegraph, 22 July 2026.

Fischer, who was not involved in the study, tells Carbon Brief:

“Heatwaves are caused by high-pressure systems and are now much more frequent and intense because they are happening in a climate that is much warmer than 100 years ago as a result of greenhouse-gas-induced warming.

“The paper shows that the greenhouse-gas-induced summer warming had been temporarily masked by air-polluting aerosols. The full extent for European summers only becomes visible now as the air-polluting aerosols have declined.”

Samset adds:

“Air pollution never causes or removes global warming, it only temporarily moderates it.”

Study lead author Dr Pedro Roldán‐Gómez, an associate researcher at the Barcelona Supercomputer Centre, is quoted in the Daily Telegraph saying that “most” of the “excess warming” in Europe, beyond that of comparable regions in the northern hemisphere, can be linked to declining aerosols.

But, earlier in the article, the newspaper interprets this as, simply, “most of the extra heat experienced in Britain and Europe” is down to air pollution.

GB News uses a similar phrasing, reporting that “much of the additional warming across Britain and western Europe since the 1980s is linked to the sharp decline in airborne particles known as aerosols”.

This is “misleading”, says Fischer, while Roldan-Gomez tells Carbon Brief that this is a “tricky point”, which “could lead to wrong interpretations if not properly explained”. He adds:

“The contribution of greenhouse gases is, in any case, the most important factor.”

Headline on GB News, 23 July 2026.
Headline on GB News, 23 July 2026.

Cleaner air

The Daily Telegraph’s article was seized upon by Reform’s Richard Tice to claim that “cleaner air” was causing higher temperatures, rather than CO2.

This continued his position – refuted by long-established climate science – that CO2 does not drive global warming.

Richard Tice on X on 23 July 2026

Tice also claimed in his post that net-zero policies are “contributing to rising temperatures”. Tice appears to be linking declining air pollution to a shift from fossil fuels to renewable energy.

Samset points out that net-zero became a goal “decades later” than the cumulative efforts to reduce air pollution since the 1980s and that it is “simply wrong” to link it to the study.

“The scientific community will keep working to understand how greenhouse gas warming and air pollution interact,” he says, but “nothing we do will change the fact that the consequences of global warming are due to human-induced CO2 emissions”.

Fischer adds:

“Let us not forget that cleaning up air-polluting aerosols is highly desirable. According to the World Health Organisation, 7 million people still die prematurely every year due to air pollution.”

Clean air legislation

Finally, the Daily Telegraph article and the study itself both attribute Europe’s declining air pollution from the 1980s onwards to the Montreal Protocol.

This is a “glaring error”, Samset says, and it is “surprising that it wasn’t picked up” in the peer-review process for the study. He explains:

“The Montreal Protocol did not deal with air pollution. It dealt with ozone-depleting gases and has been an extremely successful multi-national effort against environmental damage. “

Clean air legislation was already in place in many European countries by the time the Montreal Protocol was signed in 1987, says Samset.

In response, Roldán‐Gómez says that while the protocol did not target aerosols specifically, it “boosted the clean air policies”.

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Access to finance ‘strengthens climate resilience’ among sub-Saharan women

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Empowering women through greater access to finance could “strengthen” households’ resilience to “climate shocks”, according to a new study.

Published in Climate Risk Management, it analyses the impact of financial access on “women-headed households” in sub-Saharan Africa.

The study finds that where women had formal financial access – such as through owning a bank account – households were more able to withstand short-term shocks.

It adds that “climate shocks”, such as extreme weather events and the impacts of climate change, can cause economic crises, which destabilise communities and households.

However, the authors say that in order to protect households from long-term climate vulnerabilities – including “droughts, floods and sea-level rise” – financial access would need to be paired with wider efforts to tackle gender inequality.

They add that the findings could have important implications for policy in sub-Saharan Africa, where many countries and households are vulnerable to climate disasters.

Financial inclusion

The study highlights that entrenched gender disparities mean many women still have unequal access to financial services in sub-Saharan Africa

For example, women are still less likely to have their own bank accounts and instead are often dependent on male relatives for access to finance.

The number of women with access to an account in the region had risen to 52% as of 2024, according to data from World Bank Group.

However, as shown in the chart below, the gap between men and women has also increased, rising from just under 5 percentage points in 2011 to 12 in 2024.

Chart showing that more sub-Saharan women now have bank accounts, but the gap to men has widened from 2011-2024
Share of population with bank accounts by gender over 2011-2024, %. Source: Global Findex Database, World Bank Group

Using survey data from Afrobarometer, the new study analyses 25,511 women-headed households across 37 sub-Saharan countries.

The authors use the Organisation for Economic Co-operation and Development’s (OECD) framework to measure “financial inclusion”. This looks at factors such as having a bank account, owning a mobile phone and having internet access.

Francis Anaisie, a co-author on the study, tells Carbon Brief the researchers were motivated by the UN’s sustainable development goals (SDGs). Anaisie, an economist at the University of Cape Coast, Ghana, says the study specifically looked at SDGs five and 13, on gender equality and addressing climate issues. He adds:

“Financial inclusion is one of the key policy tools for empowering women or for empowerment. But as to whether this actually translates into better climate outcomes for women is not known or is limited; this study seeks to address that gap.”

The study finds households with higher levels of financial access for women had higher levels of women’s empowerment, when this is defined as the ability to make choices and have control over economic and social outcomes.

This was checked by cross-comparing financial access against different measures of women’s empowerment, such as financial security, voting rights and connection to communities.

In particular, the study found that “financially included” women had greater political and economic empowerment, such as financial security and voting rights. On some measures of social empowerment, however, the link was weaker – financial access alone was not enough to erase cultural and social barriers to gender equality.

Women and climate change

It has been well documented that women are more vulnerable to the impacts of climate change than men.

Environmental shocks affect women disproportionately due to a range of factors. These include income disparities, higher rates of displacement and unequal access to land.

Financial inequality and barriers to economic resources, such as needing internet access to make digital payments, play a key role in climate vulnerability, says Tracy Kajumba. She is director for the Least Developed Countries initiative for Effective Adaptation and Resilience (LIFE-AR) interim secretariat at the International Institute for Environment and Development (IIED).

Kajumba, who was not involved in the study, explains to Carbon Brief:

“Women are on the front line doing farming, planting, harvesting and these things that are all impacted [by climate change]. If they don’t have the income to invest either in drought-resistant crops or water-saving technologies, it becomes difficult for households to adapt.”

Calculating climate resilience

The new study measures the impact of financial inclusion on women’s empowerment and, in turn, on climate resilience.

It evaluates a household’s ability to withstand and recover from “shocks and stressors” by using a UN Food and Agriculture Organization metric for “resilience index measurement and analysis” (RIMA).

For example, questionnaires are used to gather information about households in certain areas. The data is then used, together with key indicators, to quantify a household’s resilience to food insecurity, climate variability and economic crisis, amongst other risks.

The 25,511 households surveyed across sub-Saharan Africa were found to be relatively resilient overall and had a high capacity to bounce back from climate shocks. However, they had much lower ability to adapt, in order to build protective capacity in advance of extreme events.

In addition, the study finds that women’s financial empowerment had a positive impact on a household’s ability to “absorb” a climate shock, suggesting that financial access is critical for responding to climate change.

Community garden and climate adaption project, focusing on women's empowerment, Niger.
Community garden and climate adaption project, focusing on women’s empowerment, Niger. Credit: Joerg Boethling / Alamy Stock Photo

Increased empowerment through financial access enables women to make decisions about planting crops, to access credit in emergencies and to buy or sell food at a better price, the study notes.

For example, it says increased financial access and women’s empowerment help households to deal with the immediate consequences of an extreme weather event, such as a drought. This could be through building community mutual-support networks and by enabling access to savings, to keep the household running.

Anaisie says the study shows women’s empowerment has a significant impact on climate resilience. He tells Carbon Brief:

“If we include women in the financial system, in the case of any climate issue they can save, they can be independent, they can rely on investment to absorb these shocks. This empowerment will help them to be more resilient to climate shocks…We can make progress because SDG goals are all about inclusiveness. It’s all about inclusive growth.”

However, the study notes that financial access does not necessarily create long-term change, which would make the household less vulnerable to extreme weather in the first place.

The authors suggest that lasting structural and cultural change is important for bringing about long-term resilience. They say that policies to address gender inequalities would help bring this about.

They say such policies could include gender-sensitive agricultural credit schemes, subsidised climate insurance for women farmers in drought-prone regions, joint land-titling programmes and quotas for women in local climate-adaptation committees.

Such policies would have helped women impacted by recent severe floods in Ghana to protect their savings, Anaisie explains. He tells Carbon Brief: 

“Women are engaged in economic activities, especially informal activities. They have resources and money, but when the flood came in, many women lost that. If they had access to insurance, this flood wouldn’t have cost them that much.

“So, if the government comes out with financial initiatives, training, civic education and gender-focused initiatives, leadership training, women will be empowered and this will translate into their resilience with regards to climate change.”

Addressing climate vulnerability in sub-Saharan Africa

The study could have policy implications for sub-Saharan Africa, a region particularly vulnerable to the effects of climate change. The region faces increasingly extreme weather, heatwaves, droughts, wildfires and floods, as well as food scarcity and threats to crops.

The study suggests that policies to address structural and cultural barriers to women’s financial autonomy could be a key way to build climate resilience across the region.

However, it recognises that even where financial access is expanded, gender norms and cultural constraints continue to shape women’s social empowerment. This, in turn, affects their ability to adapt to climate change in the long term.

Ultimately, addressing structural inequalities is needed to minimise climate vulnerability, says Kajumba. She adds that supporting adaptation with financial access can allow households to absorb shocks without falling into poverty – and to rebuild after climate impacts.

Kajumba says that supporting adaptation with women’s financial access can allow households to absorb shocks without falling into poverty – and to rebuild after climate impacts. She adds:

“When they are supported [with] microloans, savings and all that, you will see change in income, change in households, change in health and education for the children as well.”

However, Kajumba notes that structural inequalities still “amplify” women’s vulnerability to climate impacts and make it harder for them to exercise agency and leadership. She adds:

“The tools that are being used are not always favourable for women…When we look at women in leadership and participation, you cannot lead or you cannot participate unless you have some level of income.”

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State of the climate: Rapidly developing El Niño raises chance of record-warm 2026

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As 2026 passes its halfway point, the world is watching one of the most rapidly intensifying El Niño events in the modern record take shape in the tropical Pacific.

The developing El Niño is boosting expectations for global temperatures, both this year and next.

El Niño is the warm phase of a recurring climate pattern in the tropical Pacific that releases heat from the ocean into the atmosphere, temporarily raising global temperatures and reshaping rainfall and extreme weather around the world.

Carbon Brief’s “state of the climate” report in April gave 2026 a 19% chance of setting a new global temperature record.

That chance now stands at 35% – a near-doubling in four months – with virtually all of the change driven by ever-stronger El Niño forecasts.

The key findings from the first half of 2026 include:

  • The first six months of 2026 were the third-warmest start to a year on record – around 1.4C above pre-industrial levels – behind only 2024 and 2025. 
  • While the first few months of the year came in as the fourth or fifth warmest, both May and June were the second-warmest ever recorded as El Niño conditions took hold.
  • El Niño conditions arrived in April and reached the threshold for a “strong” event by June, when the Niño3.4 index reached 1.6C. Of the 667 model runs Carbon Brief examined, 91% project a peak later this year that is above the strongest El Niño in history.
  • The chance that 2026 beats 2024 as the warmest year on record has risen to 35%. Carbon Brief’s central estimate remains that 2026 will be the second-warmest year, at around 1.51C above pre-industrial levels.
  • Whether 2026 sets a record will depend on the dataset: the odds range from around two-in-three in NASA and Berkeley Earth data to around two-in-10 in ERA5 and one-in-10 in the JRA-3Q reanalyses.
  • June 2026 was western Europe’s hottest June on record, amid a heatwave that set hundreds of individual records. Nearly 9% of the world’s surface saw record June warmth.
  • The developing El Niño will have its largest impact on 2027, which Carbon Brief projects to be around 1.7C above pre-industrial levels – this would comfortably set a new record for the warmest year.
  • Arctic sea ice has spent 39 days of 2026 so far at, or below, record daily lows following its joint-lowest winter maximum in the satellite era.

Third-warmest start to a year

Carbon Brief analyses records from six different groups that report global surface temperatures: NASA GISTEMP, NOAA GlobalTemp, Hadley/UEA HadCRUT5, Berkeley Earth, Copernicus/ECMWF ERA5 and the JMA JRA-3Q reanalysis.

The first half of 2026 was the third warmest on record in every one of the six datasets, behind only 2024 and 2025. The figure below shows annual temperatures since 1970, along with the 2026 year-to-date average (January-June) for each group.

Chart showing that the first half of 2026 was the third warmest on record
Annual global average surface temperatures from the six groups (lines), along with 2026 temperatures so far (January-June, coloured dots). Note that HadCRUT5 and ERA5 dots reflect January-May, as their June values were not yet published. Chart by Carbon Brief.

January 2026 was only the fourth- or fifth-warmest January on record, as lingering weak La Niña conditions suppressed temperatures. Since then, each month has climbed the rankings.

La Niña is the cool phase of the El Niño-Southern Oscillation (ENSO). It typically brings wetter conditions to Australia, Indonesia and equatorial South America and drier conditions to the southern US.

March was second-to-fourth warmest across datasets, April the third and both May and June were the second warmest ever recorded, behind only the corresponding months of 2024.

The chart below shows how June 2026 (thick red line) came in around 0.08C below the June record set in 2024 in the average of the six datasets.

Meanwhile, Copernicus reported that global sea surface temperatures over the ice-free oceans set a new June record.

Chart showing that 2026 saw the second-warmest June on record
Average global surface temperatures for each month from 1940 to June 2028 from six forecasting groups, with lines coloured by decade. Chart by Carbon Brief.

A record-breaking El Niño

ENSO is the largest source of year-to-year variability in global temperatures.

The most common way to assess the strength of an El Niño or La Niña event is by looking at the sea surface temperature anomaly in the “Niño3.4” region of the tropical Pacific.

El Niño and its sister La Niña occur when temperatures in the tropical Pacific are more than 0.5C (El Niño) or less than 0.5C (La Niña) below normal, where normal is defined by removing the effects of long-term climate change.

The thresholds for defining the strength of an El Niño or La Niña are above/below 1C for “moderate” events, 1.5C for “strong” events and 2C for “very strong” (or “super”) events.

After two years dominated by La Niña conditions, the tropical Pacific flipped decisively in April when the Niño3.4 index crossed the 0.5C El Niño threshold. It subsequently reached 1C in May and hit 1.6C in June, marking one of the fastest onsets in the observational record.

In the first few weeks of July, the index shot above 2C, significantly outpacing the speed at which any prior El Niño events developed.

Forecast models expect even more to come.

An analysis by Carbon Brief of the median of 667 model runs from 14 different modelling groups suggests that sea surface temperatures in theNiño3.4 region could peak at 3.59C between July and December.

More than 91% of runs predict the strongest El Niño event in the modern record. The previous record was set during the event of 2015-16, when temperatures peaked around 2.75C.

This is shown in the chart below, which features a histogram of the likelihood of different possible 2026 El Niño peaks across all the models on the top. The forest plot beneath shows the best estimate and range of outcomes predicted by each individual model.

Chart showing that El Niño is on track to set a new record in 2026
Top panel: Model-weighted distribution of each member’s peak Jul-Dec 2026 Niño3.4 anomaly (red bars), with the dotted yellow line indicating the weighted median (+3.6C) and the dotted blue line the prior record peak (2015-16, 2.75C). Bottom panel: median and 10th-90th percentile peak for each modelling group, with its typical peak month. The figure includes 667 model runs from 14 different modelling groups (from the CFS, NMME, C3S, CanSIPS and SINTEX-F systems). Chart by Carbon Brief.

The median forecast in every one of the 14 models suggests a peak that exceeds the 2C “super” El Niño threshold, with most models peaking in November or December.

Some caution here is warranted, however. Raw model Niño3.4 anomalies are measured against a fixed climatology. Because the entire tropical ocean has warmed due to human-caused greenhouse gas emissions, the models tend to overstate event strength relative to the historical record.

A cleaner comparison uses the relative Niño3.4 index (RONI), which subtracts the average tropical ocean warming.

This relative measure suggests the median forecast peak for El Niño in the latter half of 2026 is 3.1C. The prior record stands at a lower 2.69C, set in 1982-83.

Nevertheless, 77% of model runs still show a new record event occurring. This is shown in the chart below.

Chart showing that El Niño is on track to set a new record in 2026, even once warming is fully accounted for
Top panel: Model-weighted distribution of each member’s peak Jul-Dec 2026 RONI (red bars), with the dotted yellow line indicating the weighted median (+3.1C) and the dotted blue line the prior record peak (1982-83, 2.69C). Bottom panel: median and 10th-90th percentile peak for each modelling group, with its typical peak month. The figure includes 667 model runs from 14 different modelling groups (from the CFS, NMME, C3S, CanSIPS and SINTEX-F systems). Chart by Carbon Brief.

In summary, on both indexes, the central expectation is now for the strongest El Niño in the observational record.

Model forecasts made in the spring and early summer have historically shown some bias toward overpredicting event strength. However, forecasts made after the spring are considerably more reliable.

Widespread record warmth and a massive European heatwave

The map below shows the temperature anomaly for the first half of 2026 in the ERA5 dataset, relative to a 1981-2010 baseline period.

Global map showing global mean surface temperatures for January-June 2026 compared to a 1981-2010 baseline, using data from ERA5.
Global mean surface temperatures for January-June 2026 compared to a 1981-2010 baseline, using data from ERA5.

It shows how the largest warm anomalies were found across the Arctic – particularly north of Scandinavia and Svalbard – as well as western Europe, the western US, northern Mexico, central Asia, western China, eastern Russia and the Antarctic Peninsula region.

The developing El Niño is clearly visible as a tongue of warm anomalies stretching along the equatorial eastern Pacific. Only a few regions – central Canada, Alaska and parts of the Southern Ocean – saw temperatures below the 1981-2010 average.

Where 2026 ranks against history is even more striking. The map below shows where the period of January-June 2026 ranked among all 87 years in the ERA5 record, which stretches from 1940 to 2026. Grid cells marked in red saw temperatures in the first half of the year that were in the top-five warmest years.

Global map showing January-June 2026 per-gridcell ranks in ERA5.
January-June 2026 per-gridcell ranks in ERA5. 30% of the global surface saw a top-five warmest first half of the year; 7.1% saw record warmth. No areas (0.0%) saw top-five cold.

More than 30% of the global surface had a top-five warmest start to the year and 7.1% saw its warmest on record, including much of western Europe, the eastern equatorial Pacific and the seas around Japan.

Not a single grid cell had a top-five coolest start to the year. In June alone, 8.9% of the world’s surface saw record warmth for the month. This is illustrated in the map below, where grid cells marked in red saw temperatures that were in the top-five warmest years and grid cells in blue in the top-five coolest.

Global map showing June 2026 per-gridcell ranks in ERA5.
June 2026 per-gridcell ranks in ERA5.

The standout regional temperature event was a heatwave that struck Europe in late June.

Western Europe had its hottest June on record, recording an average temperature of 3.05C above the 1991-2020 average and beating the record set only a year earlier, according to Copernicus. A heat dome over 22-30 June broke 10 all-time national heat records and around 400 long-record station records.

France set a new June national record of 44.3C, while the UK broke its June record on three consecutive days, reaching 37.3C. The humid heat drove a death toll estimated in the thousands.

A separate heat dome also brought record June temperatures to parts of North America in late June.

On track to be second warmest, but a real chance at first

Carbon Brief’s updated projection for 2026 as a whole combines the observed January-June temperatures with the latest El Niño forecast. It uses a statistical model trained on the historical relationship between the first half of the year, ENSO conditions and annual temperatures observed over 1950-2025, excluding major volcanic eruption years.

Carbon Brief estimates that 2026 will be around 1.51C above pre-industrial levels, with a 90% range of 1.45C to 1.57C, shown by the yellow dot in the chart below.

This is up from 1.47C in the projection set out in April – and is notably more certain now that half the year has passed.

This central estimate would make 2026 the second-warmest year on record, just below 2024 (1.52C) and ahead of 2023 (1.43C) and 2025 (1.41C).

Chart showing that 2026 is on track to be the warmest or second-warmest year
Annual composite temperatures over 1970-2025, the 2026 year-to-date value (January-June, red dot), and Carbon Brief’s 2026 annual estimate (yellow dot with the 5th to 95th percentile range). Chart by Carbon Brief.

Carbon Brief’s modelling puts the chance that 2026 beats 2024 as the warmest year on record at 35%, using the average of the six different surface temperature records assessed. It puts the chance that 2026 comes in above 1.5C at around 63%.

If it does, 2026 would be the second calendar year – after 2024 – where warming averaged above 1.5C, in a further sign that the world is rapidly approaching the Paris Agreement’s 1.5C limit.

A single year above 1.5C does not by itself constitute a breach of the goal, which refers to the longer term average temperature of the planet. This is defined as the midpoint of a 20-year period by the Intergovernmental Panel on Climate Change (IPCC).

These likelihood of a record have been climbing rapidly throughout 2026.

Global temperatures so far throughout the year have run well below the record-setting levels of 2024 – around 0.13C cooler over the first six months.

On their own, temperatures observed so far in 2026 would make a new annual record unlikely.

However, rerunning the projection using only the data available at the end of each month since March – including both the year-to-date observations and the El Niño forecast issued that month – shows a shifting picture.

Using March data, 2026 had just a 7% chance of setting a new record. That rose to 16% in April, 24% in May, 27% in June and 35% using the latest data in mid-July.

This is shown in the chart below.

Chart showing that the chances of a record-warm 2026 have risen five-fold since March
Columns show the probability that 2026 exceeds 2024 as the warmest year on record, based on data available at the end of each month; the line shows the corresponding forecast of July-December ENSO conditions (relative Niño3.4 index). Chart by Carbon Brief.

Notably, this rise has little to do with observed temperatures. The year-to-date anomaly has actually drifted slightly down, from 1.41C after March to 1.39C after June.

Observed temperatures and fewer remaining months of the year contributed only around four percentage points of the 28-point rise in the likelihood; the remaining ~84% of the change comes from successive upward revisions to the El Niño forecast for late 2026.

However, whether 2026 ends up becoming the warmest year on record may end up depending on which dataset is used.

Running the same projection gives odds of a 2026 record of around two-in-three for Berkeley Earth (66%) and NASA GISTEMP (65%), but only 35% for HadCRUT5, 24% for NOAA and just 13% and 9% for the ERA5 and JRA-3Q reanalyses, respectively.

This is shown below.

Six charts showing observed annual temperatures for 2026 and the projections for each dataset
Observed annual temperatures since 1990, with each dataset’s own 2024 record (dashed line) and the 2026 projection (median, 25-75% bar and 5-95% whisker), with the per-dataset chance of a 2026 record in each panel’s title. Chart by Carbon Brief.

The divergence between projections mostly reflects how exceptional each dataset’s 2024 was.

The reanalysis approaches recorded a particularly warm 2024, leaving 2026 more ground to make up. GISTEMP and Berkeley, on the other hand, project 2026 modestly above their 2024 values.

A repeat of the situation in 2015 where different groups disagreed on record rankings is a real possibility. Headlines in January 2027 may hinge on choices of dataset.

2027 likely to be the warmest year in human history

The biggest climate story of the developing super El Niño may not be 2026 at all.

Global temperatures typically lag in the tropical Pacific by around three months. So, an El Niño event peaking in November and December 2026 will have its largest warming influence on 2027.

We saw this same pattern occur in 1997-98, 2015-16 and 2023-24 – where the year in which the El Niño developed was warm, but the following year was record-smashing.

Carbon Brief has extended its projection into 2027 by using the historical relationship between year-over-year temperature changes and ENSO conditions in the preceding autumn.

This yields a best estimate for 2027 of around 1.71C above pre-industrial levels, with a 90% range of 1.49C to 1.93C. This is shown by a yellow square on the chart below.

Chart showing that 2027 is likely to set a new global temperature record
Observed annual composite temperatures 1970-2025 and Carbon Brief’s projections for 2026 and 2027 (medians and 5th to 95th percentile ranges). Chart by Carbon Brief.

That would give 2027 a 92% chance of setting a new global temperature record and a 94% chance of exceeding 1.5C.

Taking 2026 and 2027 together, there is a 93% chance that at least one of the two years sets a new record.

The 2027 estimate is more uncertain than the 2026 one. As with 2026, there are uncertainties in the projection due to unknowns around exactly how strong the El Niño peak proves to be and how quickly it decays.

However, even the low end of the 2027 range would put it among the warmest years on record and the central estimate of 1.71C would exceed 2024 by nearly 0.2C.

If these projections bear out, the 2020s will have delivered new global temperature records in 2023, 2024 and 2027 – and potentially 2026 too – with a number of individual years well above the 1.5C threshold.

The long-term warming trend, driven by human emissions of carbon dioxide and other greenhouse gases, has increased from around 0.18C per decade in the early 2000s to around 0.27C per decade today. El Niño and La Niña play a big role in determining which years along that rising path stand out as records.

Arctic sea ice at record lows

Arctic sea ice has spent much of 2026 in record-low territory.

Following the joint-lowest winter maximum in the satellite record in mid-March, daily extent has set or tied record lows for the date on 39 days so far this year, including extended spells in mid-to-late March and in early-to-mid June.

The most recent record-low days were in early July.

The chart below shows how Arctic sea ice in 2026 (dark red line) has been below the historical range (shaded red).

It also shows how Antarctic sea ice (dark blue), meanwhile, has remained below the 1979-2010 range for almost all of 2026 to date.

Chart showing that Arctic sea ice has been at a record low for most of 2026
Daily 2026 sea ice extent (bold lines) compared to the 1979-2010 historical range (shaded) and the record daily low from any prior year (dotted). Chart by Carbon Brief using data from NSIDC

As of mid-July, Arctic extent is a bit below the 1979-2010 historical range for the date, though it remains around 0.6m square kilometres (km2) larger than the record low for the date set during 2020’s exceptional summer melt season.

The trajectory over the coming two months will determine whether 2026 challenges 2012’s record September minimum. Early-summer conditions are a poor predictor of the September minimum, which depends heavily on summer weather.

Antarctic sea ice, meanwhile, is currently around 300,000km2 below the historical envelope, but has stayed well clear of the record lows set in 2023 and has not set any new daily records yet this year.

The post State of the climate: Rapidly developing El Niño raises chance of record-warm 2026 appeared first on Carbon Brief.

State of the climate: Rapidly developing El Niño raises chance of record-warm 2026

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