We handpick and explain the most important stories at the intersection of climate, land, food and nature over the past fortnight.
This is an online version of Carbon Brief’s fortnightly Cropped email newsletter. Subscribe for free here.
Key developments
Deforestation dropping, but not fast enough
LOSING FOREST: The world lost almost 11m hectares of forest each year over the past decade – an area almost the same size as Iceland, the UN Global Forest Resources Assessment found. The overall rate of deforestation slowed over 2015-25 – compared to annual losses of 13.6m hectares over 2000-15 and 17.6m hectares over 1990-2000. [Carbon Brief will publish an article later this week detailing more key findings.] Elsewhere, a different UN report found that annual spending on forests must more than triple to $300bn by 2030 to meet climate and nature goals.
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POOR PROGRESS: At the same time, a third report found that more than 8m hectares of forest was destroyed in 2024 – which is 63% above the trajectory needed to put an end to deforestation by 2030. The Forest Declaration Assessment report said that countries are off track to meet a pledge from more than 100 countries to halt and reverse global deforestation by 2030. It noted that agriculture caused 86% of global deforestation in the past decade. In its coverage of the report, Climate Home News noted that experts said the findings were a “wake-up call” ahead of COP30 in the Amazon.
FOREST FINANCE: An investigation from Global Witness found that banks and asset managers around the world generated $26bn from “financing deforesting companies” through investments, loans and other financial services between 2016 and 2024. US financial institutions earned the biggest gains, it said. Elsewhere, the EU “u-turn[ed]” on plans to delay its anti-deforestation law until 2026, instead suggesting tweaks to allow more time for compliance, according to Politico. Separately, an NGO report found that timber imports from companies operating in the EU “can be traced to logging on Indonesia’s Borneo island”, Agence France-Presse said.
Nature congress
EXTINCTION RISK: A new global assessment published by the International Union for Conservation of Nature (IUCN) found that more than 60% of the world’s bird species are in decline, the Guardian reported. In 2016, the equivalent figure was 44%. The outlet underscored that deforestation, largely bolstered by the expansion of agriculture and human development, is the main cause of falling populations. The Washington Post added that Arctic mammals, such as seals, whales and polar bears, are also “increasingly threatened by extinction” due to pressures from climate change.
SIGNIFICANT IMPROVEMENT: The IUCN report also showed some “bright spot[s]”, as is the case with green sea turtles, which “have recovered substantially thanks to decades of conservation efforts”, explained the Washington Post. A scientist leading the sea turtle assessment told the New York Times that the rebound “comes down to reducing threats”. As another example of species recovery, the outlet pointed to the island of Rodrigues in the Indian Ocean, where two bird species on the brink of extinction are now listed as species of least concern, thanks to restoration work carried out by conservationists.
BIODIVERSITY CONGRESS: The report was published against the backdrop of this year’s IUCN congress on biodiversity conservation, which saw members adopt a 20-year strategic vision that boosts human rights and social justice alongside conservation, according to the IUCN. EFE Verde reported on the congress, where there was a call to action for countries to speed up the implementation of the Kunming-Montreal Global Biodiversity Framework and to ensure that 30% of the planet is protected by 2030. However, new analysis from Carbon Brief showed that just 28% of countries have submitted their plans for biodiversity conservation to the UN a year after the deadline.
News and views
WILDFIRE WATCH: The annual “state of wildfires” report found that extreme wildfires released more than 8bn tonnes of CO2 during the March 2024-February 2025 global fire season. The report, published by an international team of scientists and covered by Carbon Brief, showed that wildfires covered at least 3.7m square kilometres – an area larger than India – and exposed more than 100 million people around the world to these extremes.
BIOFUEL BOOST: At COP30, Brazil is expected to ask countries to quadruple their use of “sustainable fuels” over the next decade, including biofuels, biogas and hydrogen, as reported by the Guardian. A leaked document seen by the outlet revealed that Brazil argues biofuels will displace fossil fuels. However, biofuels – which are fuels derived from organic matter – are considered controversial by environmental experts, due to their potential to increase deforestation and promote monocultures, the outlet added. Separately, a new Carbon Brief Q&A explored how countries are using biofuels to meet their climate targets.
AGRIBUSINESS MOVE: Brazil’s agribusiness – the largest emitting-sector in the country and a major driver of deforestation – plans to present the country as a leader in sustainable agriculture at the upcoming COP30, Bloomberg reported. The farm lobby faces international pressure from policies such as the EU law that requires Brazil to ensure that its crop exports are free from deforestation, the outlet said.
LONG LIVE THE WHALES: A “historic lawsuit” to protect whales in the Gulf of California has been accepted for a hearing by two district courts in Mexico, Animal Político reported. The suit aims to declare the area a “critical habitat” and rule that previously granted permits for shipping liquefied natural gas through the gulf are unconstitutional. El País also covered the news and added that a coalition of civil-society organisations is advocating for the recognition of whales as “subjects of rights”.
LARGE EMISSIONS: In 2023, 45 major meat and dairy companies emitted more than 1bn tonnes of greenhouse gases, comparable to the emissions of top fossil-fuel producers, according to a new report by civil society organisations. The report found that the top five highest-emitting firms – JBS, Marfrig, Tyson, Minerva and Cargill – were responsible for 480m tonnes of CO2-equivalent emissions. The 45 firms’ methane emissions exceeded those from the EU and UK, it added. Elsewhere, Nestle withdrew from a global alliance of dairy producers for reducing methane emissions, without providing a reason, Reuters reported.
PRICE HIKE: Over the past year, extreme weather has driven up prices by 16% for five products – butter, beef, milk, coffee and chocolate – together responsible for 40% of food inflation over that time, according to research covered by the Daily Mail. The outlet said that “alternating periods of drought, extreme heat and heavy rainfall are affecting farmers” globally. The Financial Times also covered the report, writing that its “findings challenge the narrative promoted by industry groups that have linked high grocery bills to domestic policies”.
Spotlight
Researching climate impacts on Thai tree seeds
This week, Carbon Brief details how Kew Gardens researchers are studying the effects of extreme heat and drought on trees in Thailand.
Forests in Thailand, as in many other parts of the world, are feeling the effects of climate change – from the country’s mountain peaks in the north to its mangroves on the southern coast.
Scientists at Kew Gardens are assessing how certain tree species react to high temperatures and drought to help inform efforts in re-planting degraded forests across the country.
The is one of several projects from Kew’s Millennium Seed Bank, which this week marks its 25th anniversary. It is the world’s largest collection of wild plant seeds, holding almost 2.5bn seeds from 40,000 different species.
Incubating seeds
For the Thailand project, researchers collected 60,000 seeds from three tree species growing across the country. They focused on tree types which benefit local people, such as the Sapindus rarak, whose seed can be used as a washing detergent.

The scientists sought seeds from areas with “different climates and altitudes” – ranging from the country’s highest mountain, Doi Inthanon, to its lowlands – to try to find out which areas yield resilient seeds, Dr Jan Sala, a researcher at the seed bank, told Carbon Brief.
The Kew team is collaborating on the project with the Forest Reforestation Research Unit (Forru), a research team at Chiang Mai University in Thailand that restores degraded forests.
The researchers are still analysing their data and hope to publish the findings next year, but Sala said initial observations show some “interesting” differences in how the thousands of tree seeds respond to warming and drought. He told Carbon Brief:
“We cannot say this for sure because we have not finished the analysis, but hopefully we identify a couple of populations…that are resilient to climate change.”
To study this, they put each of the thousands of seeds into incubators and subjected them to temperatures ranging from 5C to 50C across different periods of time. They wanted to see how the seeds germinate under various conditions and identify “whether a population or species reacts differently to temperature rising”, Sala says.
Building resilient forests
Dr Inna Birchenko, a research associate at the Millennium Seed Bank who was also involved in the project, told Carbon Brief that the Thailand study findings can help to ensure that restored forest plots have the “best chance for long-term survival”.
She noted that resilient forests “contribute to decarbonisation by locking carbon in the trunks, as opposed to just being a wasteland or being an agricultural land”.
Sala said the researchers hope to not only help Forru decide which seeds to use in different restoration projects, but also provide more information to “all practitioners across Thailand”.
Birchenko noted that while temperate trees are generally well-researched, tropical species are “so understudied”. She told Carbon Brief:
“Every day, I’m trying to find extra information about the genetics of this or that species, and there is absolutely nothing…So we are hoping that this potentially snowballs into more effort into this area.”
Watch, read, listen
FLYING HIGH: A Guardian article visualised how bird migration around the world is being reshaped by “new threats”, including climate change.
ON THE MOVE: Yale Environment 360 explored how US border-wall construction is “creating a roadblock” to the return of jaguars in the country’s south-west as Mexico’s populations recover.
OVERFISHING ISSUES: An article in Vox looked at how nature conservation projects in Madagascar could be reshaped to prevent them “mak[ing] it harder for desperately poor people to make a living”.
VALUABLE VOCABULARY: An Atmos video addressed a study on how the English language is losing nature-related words, undermining people’s connection to nature.
New science
- China’s demand for Brazilian soya beans – used as animal feed – is driving agricultural expansion and deforestation in Brazil, with nearly 18m hectares of land in the South American country used to grow soya for export to China | Nature Food
- A review of climate adaptation practices among vegetable farmers in Africa found that most solutions focused on addressing drought, flooding and rainfall, primarily through technological solutions | Communications Earth and Environment
- Aboveground vegetation in Australian humid tropical forests has become a carbon source due to extreme temperatures and other climate anomalies, leading to higher rates of tree mortality and losses in biomass | Nature
In the diary
- 20-30 October: UN Convention on Biological Diversity subsidiary body meetings | Panama City
- 22-25 October: 43rd session of the European Forestry Commission | Istanbul, Turkey
- 26 October:Argentina legislative election
Cropped is researched and written by Dr Giuliana Viglione, Aruna Chandrasekhar, Daisy Dunne, Orla Dwyer and Yanine Quiroz. Please send tips and feedback to cropped@carbonbrief.org
The post Cropped 22 October 2025: Global forest loss dips; Bird species in peril; Climate impact on Thai trees appeared first on Carbon Brief.
Climate Change
Pawa in Palau
This week our powerful Pacific team is in Palau for the Pacific Islands Forum Leaders Meeting. This is a major moment in our campaigns for Pacific climate justice and to stop deep sea mining. So what’s it all about, what can we expect over the coming days, and why is this year’s meeting in particular so important? Read on to find out!
*Pawa is Melanesian word meaning collective power.
Meet Moemoana Schwenke, our Pacific Climate Campaigner
“When you love something deeply, you do everything you can to protect it.”
What is the Pacific Islands Forum (PIF)?
The Pacific Islands Forum, or ‘PIF’, is our region’s most important political organisation. It is where countries of the Pacific — including Australia and New Zealand — come together to collaborate on shared challenges and to set collective goals.
The PIF Leaders Meeting is an annual weeklong event that includes a dedicated meeting of the Pacific’s small island developing states (PSIDS), many special side events organised by Pacific civil society, the leaders’ meeting itself, and more. At the end of the week, leaders issue a Forum Communiqué, capturing what they have agreed on, their shared priorities and the actions they will take together.
This year’s meeting is being held in the beautiful northern Pacific nation of Palau, the same place our Pacific team gathered back in January to plan for the year.

What’s at stake this year?
Climate change has dominated the PIF for decades. Pacific leaders have been crystal clear it is their number one priority, and the annual gathering is the moment they can exert maximum pressure on Australia over its fossil fuel record.
The voyage to COP31
This year’s meeting comes less than three months before COP31, where Australia will take on the role of President of Negotiations — a role it has committed to undertaking in partnership with the Pacific — and less than a month before the ‘Pacific Pre-COP’, to be held in Fiji and Tuvalu.
Following a fraught round of mid-year negotiations in Bonn, PIF leaders will need to set out a clear vision and priorities for COP31. These include accelerating a just global transition away from fossil fuels, defending science as the foundation of international climate cooperation, and increasing the availability and accessibility of finance for renewable energy and climate adaptation.

Accountability for Australian fossil fuel exports
Since the last PIF Leaders Meeting, Australia has signed the Belém Declaration on the Transition Away from Fossil Fuels. The declaration reaffirmed the legally binding commitment to help limit global warming to 1.5°C and recognised that this is incompatible with new fossil fuel production. Yet, Australia has continued to approve new coal and gas projects, including at least five since the last PIF Leaders Meeting.

What is Greenpeace doing?
We’re going big this year, taking six members of our team to Palau to support Pacific leaders to hold the line, hold Australia accountable, and show the world what’s at stake. We’ll lobby leaders, hold press conferences, share our messages with the world, and support our incredible local partners in Palau.

How can you get involved?
PIF is the first in a drumbeat of major moments where we’ll be carrying the voices of the Pacific to the world. Come October we’ll be voyaging to Fiji on our ship Oceania for the Pacific Pre-COP, and in November we’ll be off to Antalya for the world’s climate negotiations (COP31).
Learn more about the Pacific way to a fossil fuel free future by checking out our report and exhibition.
Follow our journey, and check back here for more ways to join the movement for climate justice. Together we have the pawa!
Climate Change
From firefighting to future-proofing: Preventing wildfires must be the priority
Gill Einhorn is head of the Forest Future Alliance and Natalie Çilem is community lead of the Global Wildfire Leadership Network.
Wildfires have devastated communities across the world this summer, claiming lives, displacing thousands of people and leaving billions in economic damage in their wake. In Europe alone, wildfires have already caused an estimated €19 billion in losses this year.
They are an economic, financial and public health challenge that is growing faster than many governments and markets are prepared for – and exposing the real costs of poor land management.
A system built for recovery, not resilience
Far more money is currently spent responding to the disastrous effects of wildfires than preventing them in the first place. The United Nations Environment Programme estimates that more than half of wildfire-related spending goes towards response, while planning receives only around 0.2 percent. This problem is not limited to wildfires; over 95 percent of disaster aid between 2005 and 2017 was allocated to response, and less than 4 percent was directed towards prevention or preparedness.
Forests are critical, but without investment in how land is managed and protected, their value is neither stable nor guaranteed. Protecting forests requires investing not only in conservation, but in the conditions that keep forests standing.
Each dollar invested in wildfire-resistant construction could save around $210 in avoided future economic losses, according to a report by the World Economic Forum and Forest Future Alliance. Despite this evidence that prevention can significantly reduce future costs, wildfire resilience remains chronically underfunded.
This spending discrepancy is creating significant challenges for insurers, asset owners and financial institutions. Global insured losses from natural catastrophes reached $107 billion in 2025, with wildfires, floods and storms accounting for 92 percent of claims.
In this context, insurers are reassessing where and how they are willing to underwrite risk. Around 56 percent of global wildfire losses between 2000 and 2023 were uninsured. In some high-risk areas, insurers are scaling back coverage altogether, leaving homeowners, businesses and governments to shoulder a growing share of the costs – making it increasingly difficult to break even.
Proven solutions are already paying off
In many regions, wildfires are driven not by natural causes but by the deliberate clearing of land for agriculture. Degraded landscapes are becoming drier, more flammable and increasingly vulnerable to catastrophic loss, creating a vicious cycle of deforestation, economic damage and rising emissions.
The answer is not simply stronger firefighting capacity. Governments, investors and businesses must work together to shift capital upstream into prevention, resilience and long-term landscape stewardship of healthy forests. That means planting appropriately, investing in heat-resistant species, exploring approaches that minimise fire footprints through active management, and exploring the AI and technology solutions that are burgeoning.


Solutions to this already exist and are proven to have an impact. Following devastating wildfires year-on-year, Portugal shifted its approach to wildfire management, increasing prevention spending within its national rural fire management system from around 20 percent in 2017 to approximately 60 percent in 2022. While many countries remain locked in a reactive cycle of disaster response, public policy can shift investment upstream and make resilience a priority before fires occur.
Indigenous communities have long used proactive land stewardship to reduce wildfire risk while supporting healthy and productive landscapes. For example, the Cheslatta Carrier Nation in British Columbia traditionally managed fuels through cultural fire practices but now implements mechanised fuel removal methods under commercial agreements. By combining Indigenous stewardship with sustainable forest management, Cheslatta is generating community benefits while also boosting wildfire prevention.
Resilience can also be strengthened through finance and technology. FireSat, a partnership led by Earth Fire Alliance with Google.org, the Gordon and Betty Moore Foundation and Muon, is a satellite constellation designed for rapid wildfire detection. Scanning every 20 minutes, it can detect fires 400 times smaller than current systems and track them through smoke and darkness in almost real time. In California alone, FireSat could prevent up to 350,000 acres from burning each year. It has recently received significant new investments allowing it to expand towards a constellation of more than 50 satellites that will monitor every point on Earth every 20 minutes or less.
In Brazil’s Pantanal, the Embrace the Forest initiative uses AI-powered detection towers across 2.5 million hectares to support earlier intervention and faster response. During the severe 2024 fire season, the initiative contributed to a 40 percent reduction in burned area compared to 2020.


These examples illustrate what is possible when resilience is treated as an investment priority rather than a recovery cost. But we must ensure funding for these measures is scaled before disaster strikes. Initiatives like the Global Wildfire Leadership Network (GWLN) are key, bringing together corporate decision-makers, investors, insurers, governments and Indigenous leaders to direct investment towards prevention and align finance, technology and stewardship to protect nature, safeguard communities and strengthen future economic stability. With a goal of doing more together than the sum of our parts, the network focuses on Forest Future Alliance GWLN Solutions Labs – where partners sign up with the intent to collaborate.
Rewarding prevention
Financial incentives must be created that reward prevention. This can be done by scaling public-private partnerships, supporting long-term landscape stewardship, investing in community capacity including Indigenous wisdom and technology. Ultimately, our terrestrial natural reserves are critical infrastructure that support resilient economies and thriving communities.
One in three people are dependent on forest services, goods and economic opportunities for survival, so it’s in all our interests to protect what we have. Forests support cooling, water and food security – and are a very cost-effective way of removing carbon dioxide from the atmosphere, where done appropriately.
UN chief warns climate crisis “in overdrive” as El Niño threatens to fuel the fire
No sector can solve this challenge alone. The benefits of wildfire resilience are shared across communities, governments, insurers, investors, utilities and businesses. A single intervention can protect homes and livelihoods, reduce insurance claims, secure water supplies and lower future public costs. Because the benefits are shared, the solutions must be too. Coalitions of actors can take proven approaches further than any one individual or organisation could alone.
As wildfires continue to burn at an unprecedented scale, the opportunity now is to roll out solutions, shift investment upstream and build a future where resilience, rather than recovery, becomes the foundation of thriving economies.
The post From firefighting to future-proofing: Preventing wildfires must be the priority appeared first on Climate Home News.
From firefighting to future-proofing: Preventing wildfires must be the priority
Climate Change
Guest post: Why tough methane cuts are crucial for keeping warming ‘well-below’ 2C
Methane is a powerful greenhouse gas and the second-largest contributor to global warming after carbon dioxide (CO2).
Methane traps heat in the atmosphere more efficiently than CO2, but has a significantly shorter lifespan, fading after just a few decades.
Therefore, reducing emissions of methane – a gas primarily produced by agriculture, fossil fuels and waste management – is a powerful option for limiting global warming in the near-term.
Yet climate strategies and models often only focus on CO2, or combine all greenhouse gases into one metric known as “CO2 equivalent”.
The latter approach makes reducing methane emissions dependent on modelling choices and assumptions about the “equivalence” of methane and CO2.
It hides the opportunities and challenges linked to methane’s high warming and short lifetime.
In a new study, published in Communications Earth & Environment, we offer a different perspective that “decouples” CO2 and methane reduction and takes global warming limits as a starting point for determining the required level of methane cuts.
We show that, even under the most ambitious existing national net-zero targets, an absence of methane reduction leads to peak warming that exceeds 1.85C above pre-industrial levels.
The study highlights that, to limit peak warming to well-below 2C, net-zero CO2 targets must be complemented by stringent methane emissions cuts.
CO2 equivalent
How much methane corresponds to one tonne of CO2?
The question is as difficult to answer as: ‘how much spaghetti equals a chicken?’ You could compare the two meals according to their calories, protein content or cost. Each metric can be convenient, but is only valid for that specific comparison – no amount of spaghetti is the same as a chicken.
The same is true for the conversion of emissions of methane and other gases to CO2-equivalent emissions. It can be convenient, as it allows different gases to be compared or combined into a single number. This is why the metric is used in climate targets or evaluating the effectiveness of different mitigation options.
But, because methane and CO2 have different atmospheric lifetimes and warming properties, any conversion is only valid for a chosen time horizon and a chosen baseline.
Depending on the assumptions baked into calculations, methane mitigation can either appear as an immediate priority or framed as almost unnecessary.
There are a number of metrics that scientists use to convert greenhouse gases – whether methane, hydrofluorocarbons or nitrous oxide – into CO2-equivalent emissions:
- “GWP20” measures how much heat a greenhouse gas traps in the atmosphere over a 20-year period, relative to CO2. It emphasises urgent methane mitigation but has been criticised for its implicit discounting of future damages.
- “GWP100” looks at a 100-year timeline. It gives more weight to long-term warming and is used in “integrated assessment models” (IAMs) used by scientists, national emission reporting to the UN and by the GHG Protocol used by companies.
- “GWP*” considers the rate of emissions, rather than warming over a fixed time horizon. Under GWP*, very limited methane reductions bring CO2-equivalent emissions to zero, meaning remaining methane emissions can be designated as causing “no additional warming”. (This interpretation remains controversial as it assumes the continuation of historical levels of warming.)
IAMs are the tools used to generate future emissions scenarios. Because they combine CO2 and methane emissions, the impact of methane emission cuts alone is difficult to isolate in existing emission scenarios.
IAM-generated scenarios also assume mitigation decisions driven by costs. Combinations of CO2 and methane emission pathways that are not purely cost-effective are, therefore, not represented, even though climate policy is messy and emission pathways are rarely cost-effective in the real world.
Only a few countries – including Japan, Mexico and South Korea – specify methane mitigation targets.
A different approach
In our study, we separate CO2 and methane emissions and treat them as independent.
Instead of choosing a conversion method, we suggest that states and organisations set a limit on peak global warming first, then, based on their existing net-zero targets, determine the minimum compatible methane reduction target.
Companies and countries around the world have set net-zero targets focused on CO2, as well as those that include all greenhouse gases. As a result, our research looks at the necessary methane reductions for both types of goal. We consider scenarios where companies or countries deliver linear – in other words, steady – emissions reductions to reach net-zero.
Using a simple climate model, we systematically combined methane and CO2 (or greenhouse gas) mitigation pathways starting in 2025 and calculated peak warming.
The figure below shows how peak warming depends on both the year of reaching net-zero CO2 and the level of methane cuts.
The blue arrows in the figure show that to limit warming to 1.7C under a 2050 net-zero CO2 scenario, methane emissions would need to fall by at least 69% by 2050, relative to 2020.
Our research also finds that, if an organisation or country’s 2050 net zero-target covers all greenhouse gases, its methane emissions would need to fall by 63% instead.
However, under current policies, methane emissions are expected to increase by around 20% by 2050, relative to 2020. We find that this pathway would result in peak warming above 2C by 2050 – even if global CO2 emissions were to reach net-zero by that date (see purple bar on the right-hand side of the figure above).
The figure also shows how, if methane emissions remained at 2020 levels and net-zero CO2 was delivered by 2040 or later, warming would exceed 1.85C. This level of warming is above what has been argued as consistent with the Paris Agreement’s “well-below” 2C limit.
Conversely, cutting methane emissions by around one-third – in line with the Global Methane Pledge target for 2030 – could reduce peak warming by 0.15C, of which 0.05C could be delivered by interventions that come at no net cost. These are shown by the orange and red bars, respectively, on the figure above.
The table below highlights the minimum compatible methane cuts for three different peak warming levels and net-zero CO2 or greenhouse-gas emission targets.
| Peak warming | Year of net-zero CO2 emissions | Year of net-zero greenhouse-gas emissions | ||||
| 2050 | 2060 | 2100 | 2050 | 2060 | 2100 | |
| 1.7C | -69% | – | – | -63% | – | – |
| 1.8C | -32% | -56% | – | -11% | -47% | – |
| 2C | +8% | -8% | -83% | >50% | +33% | -78% |
Minimum methane emission reductions between 2020 and the year of net-zero emissions, consistent with peak warming of 1.7C, 1.8C, and 2.0C at 50% likelihood, assuming linear emission trajectories. For some net-zero targets and peak warming levels, there are no compatible methane mitigation targets (indicated by “–”).
Remaining carbon budget
The global carbon budget refers to the amount of cumulative CO2 emissions allowable while still meeting a particular global warming threshold.
The 2021 climate science report from the Intergovernmental Panel on Climate Change (IPCC) and a 2023 Nature study estimated that, by 2025, the remaining carbon budget for holding warming to 2C would be around 1,000-1,150bn tonnes of CO2 (GtCO2).
We find that these estimates are founded on the assumption of methane reductions of 27-35% by 2050, relative to a 2020 baseline. (A 2024 Communications Earth & Environment study reached similar conclusions.)
Under the GWP* metric, where methane emissions are only cut to maintain “no additional warming”, the remaining carbon budget would be constrained. The best estimate of a 2C budget shrinks by around 30% to approximately 750GtCO2.
Finally, if methane emissions are not cut at all in the future, our findings suggest that the remaining carbon budget for 1.7C of global warming has, in effect, already been exhausted.
Our analysis shows how peak warming depends on both CO2 and methane reduction – and how methane-specific targets can help refine existing net-zero targets.
Crucially, we show that complementing net-zero CO2 targets with stringent methane cuts is necessary to limit peak warming to well-below 2C.
Weber, K. et al. (2026) Limiting warming by CO2 and methane mitigation in an expanded scenario space, Communications Earth & Environment, doi:10.1038/s43247-026-03832-1
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The post Guest post: Why tough methane cuts are crucial for keeping warming ‘well-below’ 2C appeared first on Carbon Brief.
Guest post: Why tough methane cuts are crucial for keeping warming ‘well-below’ 2C
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