At one of Europe’s biggest climate events, ChangeNOW 2025, France made a major move toward building a stronger, more credible carbon market. On April 24, 2025, French Minister for Ecological Transition, Biodiversity, Forests, the Sea, and Fisheries, Agnès Pannier-Runacher, unveiled a new Charter for Paris-aligned and High-Integrity Use of Carbon Credits.
This launch marks an important step to further push the progress happening since the launch of the 2015 Paris Agreement.
The session also brought together some of the most influential voices in climate action like Simon Stiell, Executive Secretary of the UNFCCC; and Dr. Osama Faqeeha, Saudi Arabia’s Deputy Minister of Environment and President of COP16 under the UN Convention to Combat Desertification.
They stressed that urgent, real-world action like credible climate solutions is needed to move closer to global net-zero goals.
France’s Emissions Drop but Natural Carbon Sinks Also Shrink
France accounted for 12.4% of the EU’s total greenhouse gas (GHG) emissions. Overall, France’s total emissions dropped by 31.2% between 2005 and 2023. However, not all trends were positive. During the same period, France’s carbon sink, comprising mainly forests and land that absorb CO2, shrank by more than half.
While emissions from sectors covered by the EU’s Emissions Trading System (ETS) fell by an impressive 52.3%, emissions from sectors outside ETS (under effort-sharing rules) dropped by only 24.1%.
France now needs to reduce its emissions by around 5% every year from 2022 to 2030 to meet the EU’s new climate target of a 55% net emissions cut. And more significantly it must also rebuild its carbon sink.
France has set an ambitious goal of cutting its GHG emissions by 50% compared to 1990 levels by 2030. In 2005, France’s emissions stood at about 566 million tonnes of CO2 equivalent (MtCO2e). By 2023, these emissions were 24.1% lower than in 2005.
- In 2023, per capita emissions were 5.7 tonnes of CO2 equivalent — a 37% decrease from 2005.
- The carbon intensity of France’s economy also improved, dropping by 43% between 2005 and 2023.

- READ MORE: EU’s Green Bonds to Slash 55 MTS of CO₂ Annually. Can it Hit Europe’s 2050 Net Zero Target?
How the Carbon Credit Charter Supports Real Net Zero Progress
The new Carbon-Credit Charter calls on companies to use carbon credits responsibly, focusing on transparency and real climate action. Seventeen international companies, including Schneider Electric, have already signed the pledge.
At its core, the Charter commits businesses to three main principles:
- Prioritize Their Own Emission Reductions: Companies must first work on cutting their own emissions across all three scopes (Scope 1, 2, and 3) and publish a time-bound climate transition plan.
- Use Carbon Credits Only as a Complement: Carbon credits should never replace efforts to reduce emissions. Instead, they can help address any remaining emissions on the way to achieving net-zero goals.
- Clear and Separate Reporting: Companies must clearly report their gross emissions and disclose separately any use of carbon credits.
These principles closely follow the Voluntary Carbon Markets Integrity Initiative (VCMI)’s international best practice guidelines, including their Claims Code of Practice and the upcoming Scope 3 Action Code of Practice.
Building Momentum from COP29
The Charter’s launch comes at a time of rising international momentum. In November 2024, during the COP29 UN Climate Conference, a global consensus was reached on the long-awaited standards for carbon credits under Article 6.4 of the Paris Agreement.
These standards introduced clear rules for validating, verifying, and issuing high-quality carbon credits, setting a stronger foundation for international carbon markets.
Importantly, the new French Charter requires companies to align their carbon credit purchases with:
- The Article 6.4 Mechanism Standards
- The Integrity Council for the Voluntary Carbon Market’s (ICVCM) Core Carbon Principles
This dual focus ensures both supply-side (quality of carbon credits) and demand-side (how companies use credits) integrity.
Why This Matters Now
Commenting on the launch, Lydia Sheldrake, VCMI’s Director of Policy and Partnerships, praised France’s leadership. She said,
“The French government has shown international leadership by convening a group of high-ambition businesses to commit to using carbon credits with confidence and credibility.”
Sheldrake stressed that high-integrity carbon markets can drive immediate progress toward global climate goals. However, she also emphasized that real change will need strong mandates and clear market demand signals—areas where the French government is stepping up.
VCMI helps companies invest in voluntary carbon markets confidently and responsibly. According to Sheldrake, today’s announcement proves that VCMI’s guidance is now central to helping governments and businesses engage with carbon markets properly.
France Gives a Clear Signal to Global Carbon Markets
By introducing this Charter, France is sending a clear message: carbon credits are not a free pass. Companies must first reduce their actual emissions and only use carbon credits for the unavoidable emissions on their net-zero journey.
Furthermore, the signatories have pledged to ensure their credits come from reliable sources, either through the Article 6.4 mechanism or ICVCM-approved standards. This will help remove low-quality or questionable credits from the system, strengthening the credibility of the entire carbon market.
To summarize, the pledge offers:
- A clear blueprint for businesses and governments worldwide on how to participate in carbon markets without undermining climate goals.
- A hope that voluntary carbon markets will become an even more powerful force in the fight against climate change.

Still, success depends on wide adoption. Other countries and more companies must follow this example, committing to credible carbon credit use and putting real effort into emission cuts. All this all, this latest annoucement from France shows that real, practical steps are being taken to strengthen climate action.
The post France Launches High-Integrity Carbon Credit Charter to Boost its Net Zero Progress appeared first on Carbon Credits.
Carbon Footprint
Climate Impact Partners Unveils High-Quality Carbon Credits from Sabah Rainforest in Malaysia
The voluntary carbon market is changing. Buyers are no longer focused only on large volumes of cheap credits. Instead, they want projects with strong science, long-term monitoring, and clear proof that carbon has truly been removed from the atmosphere. That shift is drawing more attention to high-integrity, nature-based projects.
One project now gaining that spotlight is the Sabah INFAPRO rainforest rehabilitation project in Malaysia. Climate Impact Partners announced that the project is now issuing verified carbon removal credits, opening access to one of the highest-quality nature-based removals currently available in the global market.
Restoring One of the World’s Richest Rainforest Ecosystems
The project is located in Sabah, Malaysia, on the island of Borneo. This region is home to tropical dipterocarp rainforest, one of the richest forest ecosystems on Earth. These forests store huge amounts of carbon and support extraordinary biodiversity. Some dipterocarp trees can grow up to 70 meters tall, creating habitat for orangutans, pygmy elephants, gibbons, sun bears, and the critically endangered Sumatran rhino.
However, the forest within the INFAPRO project area was not intact. In the 1980s, selective logging removed many of the most valuable tree species, especially large dipterocarps. That caused serious ecological damage. Once the key mother trees were gone, natural regeneration became much harder. Young seedlings also had to compete with dense vines and shrubs, which slowed the forest’s recovery.
To repair that damage, the INFAPRO project was launched in the Ulu-Segama forestry management unit in eastern Sabah.
- The project has restored more than 25,000 hectares of logged-over rainforest.
- It was developed by Face the Future in cooperation with Yayasan Sabah, while Climate Impact Partners has supported the project and helped bring its credits to market.
Why Sabah’s Carbon Removals are Attracting Attention
What makes Sabah INFAPRO different is not only the size of the restoration effort. It is also the way the project measured carbon gains.

Many forest carbon projects issue credits in annual vintages based on year-by-year growth estimates. Sabah INFAPRO followed a different path. It used a landscape-scale monitoring system and waited until the forest moved through its strongest natural growth period before issuing removal credits.
- This approach gives the credits more weight. Rather than relying mainly on short-term annual estimates, the project measured carbon sequestration over a longer period. That helps show that the forest delivered real, sustained, and measurable carbon removal.
The scientific backing is also unusually strong. Since 2007, the project has maintained nearly 400 permanent monitoring plots. These plots have allowed researchers, independent auditors, and technical specialists to observe the full growth cycle of dipterocarp forest recovery. The result is a large body of field data that supports carbon calculations and strengthens confidence in the credits.
In simple terms, buyers are not just being asked to trust a model. They are being shown years of direct forest monitoring across the project landscape.
Strong Ratings Support Market Confidence
Independent assessment has also lifted the project’s profile. BeZero awarded Sabah INFAPRO an A.pre overall rating and an AA score for permanence. That places the project among the highest-rated Improved Forest Management, or IFM, projects in the world.
The rating reflects several important strengths. First, the project has very low exposure to reversal risk. Second, it has a long and stable operating history. Third, its measured carbon gains align well with peer-reviewed ecological research and independent analysis.
These points matter in today’s market. Buyers have become more cautious after years of debate over the quality of some forest carbon credits. As a result, they now look more closely at durability, transparency, and third-party validation. Sabah INFAPRO’s rating helps answer those concerns and makes the project more attractive to companies looking for credible carbon removal.
The project is also registered with Verra’s Verified Carbon Standard under the name INFAPRO Rehabilitation of Logged-over Dipterocarp Forest in Sabah, Malaysia. That adds another level of market recognition and verification.
A Wider Model for Rainforest Recovery
Sabah INFAPRO also shows why high-quality nature-based projects are about more than carbon alone. The restoration effort supports broader ecological recovery in one of the world’s most important rainforest regions.
Climate Impact Partners said it has worked with project partners to restore degraded areas, run local training programs, carry out monthly forest patrols, and distribute seedlings to support rainforest recovery beyond the project boundary. These efforts help strengthen the wider landscape and expand the project’s environmental impact.
That broader value is becoming more important for buyers. Companies increasingly want projects that support biodiversity, ecosystem health, and local engagement, along with carbon removal. Sabah INFAPRO offers that mix, making it a stronger fit for the market’s shift toward higher-integrity credits.

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Carbon Footprint
Bitcoin Falls as Energy Prices Rise: Why Crypto Is Now an Energy Market Story
Bitcoin’s recent drop below $70,000 reflects more than short-term market pressure. It signals a deeper shift. The world’s largest cryptocurrency is becoming increasingly tied to global energy markets.
For years, Bitcoin has moved mainly on investor sentiment, adoption trends, and regulation. Today, another force is shaping its direction: the cost of energy.
As oil prices rise and electricity markets tighten, Bitcoin is starting to behave less like a tech asset and more like an energy-dependent system. This shift is changing how investors, analysts, and policymakers understand crypto.
A Global Power Consumer: Inside Bitcoin’s Energy Use
Bitcoin depends on mining, a process that uses powerful computers to verify transactions. These machines run continuously and consume large amounts of electricity.
Data from the U.S. Energy Information Administration shows Bitcoin mining used between 67 and 240 terawatt-hours (TWh) of electricity in 2023, with a midpoint estimate of about 120 TWh.

Other estimates place consumption closer to 170 TWh per year in 2025. This accounts for roughly 0.5% of global electricity demand. Recently, as of February 2026, estimates see Bitcoin’s energy use reaching over 200 TWh per year.
That level of energy use is significant. Global electricity demand reached about 27,400 TWh in 2023. Bitcoin’s share may seem small, but it is comparable to the power use of mid-sized countries.
The network also requires steady power. Estimates suggest it draws around 10 gigawatts continuously, similar to several large power plants operating at full capacity. This constant demand makes energy costs central to Bitcoin’s economics.
When Oil Rises, Bitcoin Falls
Bitcoin mining is highly sensitive to electricity prices. Energy is the highest operating cost for miners. When power becomes more expensive, profit margins shrink.
Recent market movements show this link clearly. As oil prices rise and inflation concerns persist, energy costs have increased. At the same time, Bitcoin prices have weakened, falling below the $70,000 level.

This is not a coincidence. Studies show a direct relationship between Bitcoin prices, mining activity, and electricity use. When Bitcoin prices rise, more miners join the network, increasing energy demand. When energy costs rise, less efficient miners may shut down, reducing activity and adding selling pressure.
This creates a feedback loop between crypto and energy markets. Bitcoin is no longer driven only by demand and speculation. It is now influenced by the same forces that affect oil, gas, and power prices.
Cleaner Energy Use Is Growing, but Fossil Fuels Still Matter
Bitcoin’s environmental impact depends on its energy mix. This mix is improving, but it remains uneven.
A 2025 study from the Cambridge Centre for Alternative Finance found that 52.4% of Bitcoin mining now uses sustainable energy. This includes both renewable sources (42.6%) and nuclear power (9.8%). The share has risen significantly from about 37.6% in 2022.
Despite this progress, fossil fuels still account for a large portion of mining energy. Natural gas alone makes up about 38.2%, while coal continues to contribute a smaller share.

This reliance on fossil fuels keeps emissions high. Current estimates suggest Bitcoin produces more than 114 million tons of carbon dioxide each year. That puts it in line with emissions from some industrial sectors.
The shift toward cleaner energy is real, but it is not complete. The pace of change will play a key role in how Bitcoin fits into global climate goals.
Bitcoin’s Climate Debate Intensifies
Bitcoin’s growing energy demand has placed it at the center of ESG discussions. Its impact is often measured through three key areas:
- Total electricity use, which rivals that of entire countries.
- Carbon emissions are estimated at over 100 million tons of CO₂ annually.
- Energy intensity, with a single transaction using large amounts of power.

At the same time, the industry is evolving. Mining companies are adopting more efficient hardware and exploring new energy sources. Some operations use excess renewable power or capture waste energy, such as flare gas from oil fields.
These efforts show progress, but they do not fully address the concerns. The gap between Bitcoin’s energy use and its environmental impact remains a key issue for investors and regulators.
- MUST READ: Bitcoin Price Hits All-Time High Above $126K: ETFs, Market Drivers, and the Future of Digital Gold
Bitcoin Is Becoming Part of the Energy System
Bitcoin mining is now closely integrated with the broader energy system. Operators often choose locations based on access to cheap or excess electricity. This includes areas with strong renewable generation or underused energy resources.
This integration creates both opportunities and challenges. On one hand, mining can support energy systems by using power that might otherwise go to waste. It can also provide flexible demand that helps stabilize grids.
On the other hand, it can increase pressure on local electricity supplies and extend the use of fossil fuels if cleaner options are not available.
In the United States, Bitcoin mining could account for up to 2.3% of total electricity demand in certain scenarios. This highlights how quickly the sector is scaling and how closely it is tied to national energy systems.
Energy Markets Are Now Key to Bitcoin’s Future
Looking ahead, the connection between Bitcoin and energy is expected to grow stronger. The network’s computing power, or hash rate, continues to reach new highs, which typically leads to higher energy use.
Electricity will remain the main cost for miners. This means Bitcoin will continue to respond to changes in energy prices and supply conditions. At the same time, governments are starting to pay closer attention to crypto’s environmental impact, which could shape future regulations.

Some forecasts suggest Bitcoin’s energy use could rise sharply if adoption increases, potentially reaching up to 400 TWh in extreme scenarios. However, cleaner energy systems could reduce the carbon impact over time.
Bitcoin is no longer just a financial asset. It is also a large-scale energy consumer and a growing part of the global power system.
As a result, understanding Bitcoin now requires a broader view. Energy prices, electricity markets, and carbon trends are becoming just as important as market demand and investor sentiment.
The message is clear. As energy markets move, Bitcoin is likely to move with them.
The post Bitcoin Falls as Energy Prices Rise: Why Crypto Is Now an Energy Market Story appeared first on Carbon Credits.
Carbon Footprint
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