Despite a rebound in coal generation this year, clean energy from wind and solar is gaining ground on the fossil fuels that have powered decades of industry growth
Chinese industry is beginning to shift from fossil fuels to clean electricity, with wind, solar and batteries progressively displacing coal, oil and gas across the industrial sectors that made the country the world’s factory and largest carbon emitter, a new analysis shows.
Clean electricity met all of China’s demand growth in 2025 and coal generation fell for the first time in a decade, even as electricity demand rose by 5%, the report found.
Despite a rebound in coal power generation in the first half of 2026, theanalysis by global energy think-tank Ember found the growth in clean electricity illustrates a longer-term shift: a massive build-out of wind, solar energy and battery storage and deepening electrification of the economy arestarting to make a dent in the fossil-fuel energy system supporting China’s industrial base.
Chinese industry is beginning to shift from fossil fuels to clean electricity, with wind, solar and batteries progressively displacing coal, oil and gas across the industrial sectors that made the country the world’s factory and largest carbon emitter, a new analysis shows.
Clean electricity met all of China’s demand growth in 2025 and coal generation fell for the first time in a decade, even as electricity demand rose by 5%, the report found.
Despite a rebound in coal power generation in the first half of 2026, theanalysis by global energy think-tank Ember found the growth in clean electricity illustrates a longer-term shift: a massive build-out of wind, solar energy and battery storage and deepening electrification of the economy arestarting to make a dent in the fossil-fuel energy system supporting China’s industrial base.
The research identifies early signs that a structural transformation of China’s industrial economy from coal, oil and gas to clean electricityis underway,even if changes on the ground are not yet reflected in national data.
“The energy foundation of the Chinese industrial economy is shifting,” Muyi Yang, a senior energy analyst at Ember and the report’s lead author, told Climate Home News.
“Fossil fuels are progressively being replaced in the many functions they have historically assumed. Because of that, fossil fuel peaking is increasingly coming into view,” he said.
Electrifying industry
Coal generation has stopped growing in 17 of the 26 provinces and regions analysed by Emberbetween 2021 and 2025. This includes industrial centres such as Hunan in southern China and Shandong - home to energy-intensive industries like cement production. Together, these regions are home to more than half of China’s thermal power capacity.
A greater share of the Chinese economy is now running on electricity than in other major economies,accounting for 29% of final energy consumption in 2024, compared with about 23% in Europe and 21% in the US. Less than half of China’s electricity was generated from coal in the first half of the year.
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The economic powerhouse burned more coal and gas in the first quarter of 2026, despite record wind and solar build-out
Meanwhile, fossil fuel use has fallen in eight of 11 tracked industrial sectors, declining between 26% and 71% from peak consumption levels across fossil fuel extraction, manufacturing industries such as textiles, machinery and food and beverages, transport equipment and chemical materials.
Earlier this year, German company BASF, the world's largest chemical producer, opened a new facility in southern China, which is fully supplied byrenewable energy. The company said emissions from the site could be 50% lower than conventional petrochemical facilities.
In easier-to-electrify sectors such as machinery, electronics and textiles, electricity now supplies about three-quarters of final energy consumption, Ember found.
Fossil fuel use is also showing signs of flattening in the metals smelting and processing sector – one of the most fossil-intensive parts of the economy – offering “encouraging signs” that the transformation is starting to take hold in harder-to-abate sectors, said Yang.
“If that is happening in more and more provinces, and more and more economic sectors that means that fossil fuels are progressively being squeezed out of the energy system," he said.
“Growing by greening”
China’s vast cleantech manufacturing power has become an engine for growth in its own right, spurring investment, creating jobs and generating export revenues.
Yang described this “growing-by-greening” dynamic as “turning each step of the transition into a source of strength for the next”.
For Li Shuo, director of China Climate Hub at the Asia Society Policy Institute, this is part of what makes China’s lead in manufacturing clean energy equipment “irreversible”, comparing its growth with that of a rainforest, where different parts of the ecosystem thrive by reinforcing one another.
The early success of deploying wind and solar helped drive down electricity costs, which created favourable conditions for the rapid adoption of electric vehicles (EVs) and in turn boosted demand for batteries that are now critical to balance the grid.
An oversupply of renewable energy incentivised industrial players to benefit from cheap and readily available clean power generation, encouraging innovative solutions to electrify other parts of the economy. In the transport sector, for example, electrification is moving from passenger vehicles to harder-to-electrify trucks.
This abundance of cheap green energy is also making China competitive in what has long been seen as the anchor of Western competitiveness, Li said.
Stalling fossil fuel use
At the same time, China’s huge legacy fossil fuel generation capacity is still expanding, even as coal power plants are being used less intensively.
China brought 30 GW of new coal power capacity into operation in the first six months of the year and coal-fired generation rose 3%over the same periodafter local governments fast-tracked coal projects to prevent a repeat of severe power shortages in 2021.
A further 274 GW of coal capacity is either under construction or has permits to be built while vast amounts of solar and wind power that could not be absorbed by the grid have gone to waste in the first half of the year.
“This doesn’t mean that the transition is losing steam,” said Yang, arguing that China is now grappling with some of the more complex aspects of the transition.
A recent analysis by the Centre for Research on Energy and Clean Air (CREA) for Carbon Brief found that China’s CO2 emissions from fossil fuels and cement have plateaued for more than two years following a peak in March 2024. Ember found that on a 12-month moving average, coal generation has been stalling since then, following years of continuous expansion.
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In the second quarter of the year, CO2 emissions fell by 1% after China’s oil consumption plummeted 9% as theUS-Iran war prevented the transport of oil cargoes from the Gulf through the Strait of Hormuz.
The electrification of the transport sector, particularly electric trucks, was the biggest driver in displacing oil demand as the conflict in the Middle East accelerated the transition.
A lesson in sequencing
China’s bumpy transition offers a useful lesson for other countries at an earlier stage of their transition, said Xunpeng Shi, president of the Sydney-based International Society of Energy Transition Studies (ISETS), a global network of professionals that shares research and fosters collaborations.
“Build quickly enough so that clean electricity can start taking over and prepare for the pressure on the fossil system before it arrives, because that is the part nobody has done easily,” he said.
For countries that are heavily reliant on revenue from fossil fuel exports, a peak in Chinese fossil fuel use weakens the assumption of rising demand on which investments have long been made.
“For them, the time to plan for that is now, while the revenues are still there,” he said.
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Facts Only
* Clean electricity met all of China’s demand growth in 2025.
* Coal generation fell for the first time in a decade, despite a 5% rise in electricity demand.
* Growth in clean electricity illustrates a longer-term shift involving wind, solar, and battery storage displacing coal, oil, and gas across industrial sectors.
* Coal generation rebounded in the first half of 2026.
* Fossil fuel use has fallen in eight of 11 tracked industrial sectors by between 26% and 71% from peak consumption levels across fossil fuel extraction, manufacturing, transport equipment, and chemical materials.
* Electricity accounted for 29% of final energy consumption in 2024 in China, compared to about 23% in Europe and 21% in the US.
* Less than half of China’s electricity was generated from coal in the first half of the year.
* Coal generation stopped growing in 17 of the 26 provinces and regions analyzed between 2021 and 2025.
* The economy burned more coal and gas in the first quarter of 2026 despite record wind and solar build-out.
* A German chemical producer opened a new facility in southern China supplied fully by renewable energy.
* Fossil fuel use showed signs of flattening in the metals smelting and processing sector.
Executive Summary
Chinese industry is shifting from fossil fuels to clean electricity, driven by the growth of wind, solar energy, and battery storage across industrial sectors that historically relied on coal, oil, and gas. Clean electricity met China's demand growth in 2025, and coal generation fell for the first time in a decade despite a 5% rise in overall electricity demand. Analysis indicates a long-term shift where the build-out of clean energy is beginning to affect the fossil fuel energy system supporting China’s industrial base. Despite a rebound in coal power generation in the first half of 2026, the growth in clean electricity demonstrates an underlying transition.
The research points to a structural transformation underway from coal, oil, and gas to clean electricity. This shift is seen across various sectors; fossil fuel use has fallen in eight of eleven tracked industrial sectors. Electrification is occurring in sectors like machinery, electronics, and textiles, where electricity now supplies significant energy consumption. Furthermore, the transformation is beginning in more difficult-to-abate areas like metals smelting and processing, showing signs of flattening fossil fuel use.
The dynamic is also characterized by a "growing-by-greening" effect, where cleantech manufacturing has spurred growth, investment, and job creation. This abundance of cheap renewable energy has incentivized innovation in electrifying other parts of the economy, including transport electrification and battery demand. However, this transition coexists with continued expansion of legacy fossil fuel capacity, indicating a complex, evolving energy landscape rather than a simple replacement.
Full Take
The narrative highlights a critical tension between tangible operational changes on the ground and the underlying structural transformation of the economy. The core implication is that inertia exists: legacy infrastructure and investment patterns resist immediate change, even as new technologies provide powerful economic incentives for transition. The "growing-by-greening" dynamic suggests that success in one area (cleantech manufacturing) creates positive feedback loops that accelerate progress, which is a force multiplier for systemic change rather than just incremental substitution.
The fact that fossil fuel capacity is still expanding while clean energy grows indicates a phase of managed transition where security concerns and existing infrastructure dictate pace, not purely environmental necessity. The observation that some sectors are showing signs of flattening fossil fuel use suggests that decoupling emission growth from economic output is achievable, but this outcome is spatially and sectorally uneven. The lesson for other nations lies in the sequencing: building the necessary clean infrastructure rapidly enough to make fossil fuels economically unviable before peak demand forces a disruptive, costly shift. This requires addressing the investment logic embedded in energy security policies, as relying on peak fossil fuel revenue can delay necessary structural reforms.
The risk is that rebounding coal generation, driven by energy security concerns, could set back broader climate ambitions and increase stranded asset risks if the transition is not prioritized over short-term stability. The challenge for global actors is leveraging China's technological momentum while ensuring that national plans account for the financial reality of phasing out established energy systems, rather than allowing inertia to sustain old economic paradigms.
Bridge Questions: If the structural shift is underway, what specific policy levers are required to ensure this transformation overcomes short-term security impulses? How can regions heavily reliant on fossil fuel exports utilize the observed slowing in Chinese usage as a strategic window for realignment? What mechanisms are needed to ensure that the "growing by greening" dynamic benefits the most vulnerable economies during this transition?
Sentinel — Human
The article appears to be a professionally synthesized analysis drawing from multiple energy reports, exhibiting a structured approach rather than purely generative output.
