The total greenhouse gas emissions of the People's Republic of China are the world's highest, accounting for 35% of the world's total according to the International Energy Agency. The country's per capita greenhouse gas emissions are the 34th highest of any country, as of 2023.
When measuring production-based emissions, China emitted over 12.6 gigatonnes (Gt) CO2eq of greenhouse gases in 2023, 35% of the world total. [3] [4] [5] When measuring in consumption-based terms, which adds emissions associated with imported goods and extracts those associated with exported goods, China accounted for 13 gigatonnes (Gt) or 25% of global emissions in 2019. [6]
Greenhouse gas emissions stem mainly from coal burning, including coal power, coal mining, [7] and blast furnaces producing iron and steel. [8] 79% of CO2 emissions are from the burning of coal. [9] According to the Carbon Majors Database, Chinese state coal production alone accounts for 14% of historical global emissions. [10] In 2024, China's total historical greenhouse gas emissions surpassed those of the European Union (EU), but trail those of the United States. [11]
As of 2019 [update] , the country's greenhouse gas emissions exceeded the combined emissions of the developed world. [6] [4] [12] China's per capita emissions correspond to over 10.1 tonnes CO2eq emitted per person each year, over the world average and the EU average but lower than the second largest emitter of greenhouse gases, the United States, with its 17.6 tonnes per person, according to a 2021 analysis by the Rhodium Group. [6] [ needs update ] Analysis by Our World in Data also puts China's per capita emissions at over the world and EU averages but less than averages in Australia, Canada, and the U.S. [13] Accounting for historic emissions, OECD countries produced four times more CO2 in cumulative emissions than China, due to developed countries' early start in industrialization. [4] [6] Overall, China is a net exporter of greenhouse emissions. [14]
The targets laid out in China's nationally determined contribution at the Paris Agreement in 2016 will likely be met, but are not enough to combat global warming. [15] [ needs update ] China has committed to peak emissions by 2030 and net zero by 2060. [16] China continues to build coal-fired power stations in 2020 and promised to "phase down" coal use from 2026. [17] According to various analysis, China is estimated to overachieve its renewable energy capacity and emission reduction goals early, but long-term plans are still required to combat the global climate change and meeting the Nationally Determined Contribution (NDC) targets. [18] [19] [20]
Since 2006, China has been the world's largest emitter of CO2 annually. As of 2023, it had the 34th highest greenhouse gas emissions per capita. [22] In 2023, China produced 35% of global CO2 emissions, according to the International Energy Agency. [3] According to estimates provided by the Netherlands Environmental Assessment Agency, China's carbon dioxide emissions in 2006 amounted to 6.2 billion tons, and the United States' co-production in the same year was 5.8 billion tons. In 2006, China's carbon dioxide emissions were 8 percent higher than America's, the agency said. [23]
In 2019, China is estimated to have emitted 27% of the world's greenhouse gases, followed by the US with 11%, then India with 6.6%. [12] By 2020, China produced 64% to 66% of global emissions for the two potent greenhouse gases of tetrafluoromethane and hexafluoroethane, according to a study by the Massachusetts Institute of Technology. [24]
A temporary slowdown in manufacturing, construction, transportation, and overall economic activity during the beginning of the 2019–20 coronavirus outbreak reduced China's greenhouse gas emissions by "about a quarter," as reported in February 2020. [25] [26] Nonetheless, for the year April 1, 2020 – March 31, 2021, China's CO2 emissions reached a record high: nearly 12 billion metric tons. Additionally, China's carbon emissions during the first quarter of 2021 were higher than in the first quarters of both 2019 and 2020. [27] Temporary reductions in carbon emissions due to lockdowns and initial economic relief efforts have limited long-term consequences, while the future direction of fiscal stimulus plays a more significant role in influencing long-term carbon emissions. [28]
China experienced the largest increase in emissions at approximately 565 million tonnes in 2023, exacerbated by a historic decrease in hydropower, pushing its per capita emissions 15% higher than those in advanced economies, according to the International Energy Agency. [29]
In 2024, China recorded a 3% decrease in greenhouse gas emissions compared to the previous year. This development suggests that emissions might have peaked sooner than the 2030 target initially set. The reduction was largely attributed to an expansion in wind and solar power capacities, which largely covered the increased demand for electricity, coupled with a downturn in the property sector that resulted in lower emissions from industries like steel and cement manufacturing. However, several challenges remain, including the technical difficulties of integrating solar energy into the existing power grid and a continued dependence on coal, which experienced a 2% increase in use in 2023. [30]
According to the Carbon Majors Database, Chinese state coal production accounts for 14% of historic global emissions, more than double the proportion of the former Soviet Union. [10]
Power is estimated as the largest emitter, with 27% of greenhouse gases produced in 2020 generated by the power sector. [5] Most electricity in China comes from coal, which accounted for 65% of the electricity generation mix in 2019. Electricity generation by renewables has been increasing, with the construction of wind and solar plants doubling from 2019 to 2020. [31]
According to Natural Resources Defense Council, the Chinese power sector is estimated to hit the carbon emission peak around 2029. [32]
Electricity and heat producers | Industry | Transport | Residential | Commercial and public services | Agriculture | Unspecified Final Consumption | Other energy industries | |
2000 | 1426.85 | 904.045 | 248.48 | 216.849 | 57.268 | 47.992 | 47.512 | 148.356 |
2001 | 1506.574 | 958.838 | 254.25 | 216.959 | 60.767 | 51.397 | 50.102 | 154.574 |
2002 | 1686.007 | 996.753 | 276.444 | 220.345 | 63.26 | 56.62 | 55.03 | 154.476 |
2003 | 1996.101 | 1136.149 | 313.144 | 237.802 | 70.678 | 64.753 | 64.277 | 182.587 |
2004 | 2203.919 | 1497.944 | 371.136 | 265.471 | 87.1 | 73.844 | 67.972 | 172.197 |
2005 | 2373.239 | 1935.745 | 397.312 | 273.592 | 91.868 | 83.689 | 72.48 | 179.468 |
2006 | 2686.187 | 2083.31 | 434.811 | 285.571 | 98.547 | 87.65 | 73.249 | 212.467 |
2007 | 2930.614 | 2274.395 | 468.576 | 291.352 | 106.923 | 84.966 | 75.95 | 240.48 |
2008 | 2961.79 | 2409.719 | 507.067 | 278.806 | 104.442 | 81.955 | 78.504 | 246.683 |
2009 | 3143.741 | 2601.242 | 517.074 | 281.312 | 110.345 | 84.198 | 81.099 | 311.912 |
2010 | 3477.506 | 2844.073 | 568.779 | 297.63 | 118.769 | 88.047 | 81.307 | 354.473 |
2011 | 3954.71 | 3004.769 | 621.89 | 309.302 | 131.414 | 92.084 | 85.456 | 369.403 |
2012 | 4076.159 | 3042.033 | 686.126 | 316.37 | 140.844 | 95.651 | 90.286 | 374.573 |
2013 | 4347.397 | 3068.123 | 741.094 | 329.858 | 146.711 | 103.245 | 95.234 | 395.549 |
2014 | 4389.763 | 3094.686 | 770.35 | 344.191 | 142.556 | 104.955 | 92.268 | 299.69 |
2015 | 4266.271 | 2995.88 | 828.462 | 364.732 | 150.115 | 108.81 | 93.217 | 327.493 |
2016 | 4410.465 | 2859.402 | 845.356 | 374.069 | 149.073 | 111.932 | 89.865 | 287.538 |
2017 | 4705.733 | 2696.33 | 877.815 | 384.552 | 145.497 | 114.409 | 78.904 | 329.597 |
2018 | 5071.184 | 2790.824 | 950.956 | 360.327 | 133.548 | 105.085 | 66.921 | 309.918 |
2019 | 5238.13 | 2795.073 | 944.372 | 332.787 | 127.773 | 101.416 | 57.667 | 352.331 |
2020 | 5376.577 | 2852.616 | 901.961 | 338.289 | 116.773 | 102.119 | 56.31 | 308.675 |
2021 | 5943.08 | 2832.322 | 969.447 | 332.81 | 112.121 | 99.358 | 46.885 | 312.513 |
According to the 2016 Chinese Statistical Yearbook published by China's National Bureau of Statistics, China's energy consumption was 430,000 (10,000 tons of Standard Coal Equivalent), including 64% coal, 18.1% crude oil, 5.9% natural gas, 12.0% primary electricity, and other energy. Since 2011, the percentage of coal has decreased, and the percentage of crude oil, natural gas, primary electricity, and other energy have increased. [34]
China experienced an increase in electricity demand and usage in 2017 as the economy accelerated. [35] According to the Climate Data Explorer published by World Resources Institute, China, the European Union, and the U.S. contributed to more than 50% of global greenhouse gas emissions. [36] In 2016, China's greenhouse gas emissions accounted for 26% of total global emissions. [37] The energy industry has been the biggest contributor to greenhouse gas emissions since the last decade. [36]
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In terms of industrial production, China creates 1.26 Gt of greenhouse gases in 2020 and, judging by Climate Watch's chart, there is no downward trend at all. Industrial production accounts for 22.76% of all China's GHG emissions in the latest Climate TRACE data for 2022. [5]
Cement is estimated to be 15% of emissions but only a tenth of companies are reporting data as of 2021. [38]
Steel is estimated at 15% to 20% of emissions and consolidation of the industry may help. [39]
Transport was estimated in 2021 to be less than 10% of the country's emissions but growing. [40]
Agriculture accounts for 7.65% of China's greenhouse gas emissions in 2022. [5]
China also produces large amounts of greenhouse gases such as methane (CH4), carbon dioxide (CO2) and nitrous oxide (N2O) in the process of treating waste. In the 2022 Climate Trace statistics, waste treatment accounts for 7.06% of China's total greenhouse gas emissions. Waste disposal is the fourth largest source of GHG emissions in China, and landfills and incineration still dominate municipal waste disposal in China. As a result of the Chinese government's policy of mandatory waste separation in 11 prefectural-level cities, the GHG emissions from waste disposal are decreasing at an efficiency of 0.1% per year, which is effective, but the implementation of waste separation needs to be strengthened. [5] Most municipal solid waste is sent to landfill. [41]
China is by far the largest emitter of methane from coal mines. [7] China produces over 14% of global methane emissions. [42]
China is implementing some policies to mitigate climate change, most of which aim to constrain coal consumption. The Nationally Determined Contribution (NDC) of China set goals and committed to peak CO2 emissions by 2030 in the latest, and increase the use of non-fossil fuel energy carriers, taking up 20% of the total primary energy supply. [46] If China successfully reached NDC's targets, the GHG emissions level would be 12.8–14.3 GtCO2e in 2030, reducing 64% to 70% of emission intensity below 2005 levels. China has surpassed solar deployment and wind energy deployment targets for 2020. [47] [48]
A 2011 Lawrence Berkeley National Laboratory report predicted that Chinese CO2 emissions will peak around 2030. This is because in many areas such as infrastructure, housing, commercial building, appliances per household, fertilizers, and cement production a maximum intensity will be reached and replacement will take the place of new demand. The 2030 emissions peak also became China's pledge at the Paris COP21 summit. Carbon emission intensity may decrease as policies become strengthened and more effectively implemented, including by more effective financial incentives, and as less carbon intensive energy supplies are deployed. In a "baseline" computer model CO2 emissions were predicted to peak in 2033; in an "Accelerated Improvement Scenario" they were predicted to peak in 2027. [49] China also established 10 binding environmental targets in its Thirteenth Five-Year Plan (2016–2020). These include an aim to reduce carbon intensity by 18% by 2020, as well as a binding target for renewable energy at 15% of total energy, raised from under 12% in the Twelfth Five-Year Plan. According to BloombergNEF the levelized cost of electricity from new large-scale solar power has been below existing coal-fired power stations since 2021. [50]
China ratified the Kyoto Protocol as a non-Annex B party without binding targets, and ratified the Paris Agreement to fight climate change. [51] In 2020, China's fourteenth five-year plan contained key climate- and energy-related ideas for energy transition and global efforts to tackle climate change. [52]
The aim of this law was to conserve and rationally exploit forest resources. It accelerated territorial afforestation and cultivation while also ensuring forest product management, production, and supply in order to meet socialist construction requirements. [53]
The aim of this law was to strengthen energy conservation, especially for key energy-using institutions, as well as to encourage energy efficiency and energy-saving technology. The legislation allowed the government to promote and facilitate the use of renewable energy in a variety of applications. [54]
This Act outlines the responsibilities of the government, businesses, and other users in the production and use of renewable energy. It includes policies and targets relating to mandatory grid connectivity, market control legislation, differentiated pricing, special funds, and tax reliefs, as well as a target of 15 percent renewable energy by 2020. [55]
The 12th Five-Year Plan sought to make domestic consumption and development more economically equitable and environmentally friendly. It also shifted the economy's focus away from heavy industry and resource-intensive manufacturing and into a more consumer-driven, resource-efficient economy. [56]
The strategy established clear guidelines and principles for adapting to and mitigating climate change. It includes interventions such as early-warning identification and information-sharing systems at the national and regional levels, an ocean disaster monitoring system, and coastal restoration to protect water supplies, reduce soil erosion, and improve disaster prevention. [57]
The National Plan For Tackling Climate Change is a national law that includes prevention, adaptation, scientific study, and public awareness. By 2020, China plans to reduce carbon emissions per unit of GDP by 40-45 percent compared to 2005 levels, raise the share of non-fossil fuels in primary energy consumption to 15%, and increase forest area and stock volume by 40 million hectares and 1.3 million m3, respectively, compared to 2005 levels. [58]
This plan aimed to reduce China's high energy consumption per unit of GDP through a series of steps and mandatory goals, encouraging more productive, self-sufficient, renewable, and creative energy production and consumption. [59]
The aim of this law is to preserve and improve the environment, prevent and regulate air pollution, protect public health, advance ecological civilization, and promote economic and social growth that is sustainable. It demands that robust emission control initiatives be implemented against the pollution caused by the burning of coal, industrial production, motor vehicles and vessels, dust as well as agricultural activities. [60]
The 13th Five Year Plan published the strategy and pathway for China's development during 2016-2020 and set specific environmental and productivity goals. Peak goals for carbon emissions, energy use, and water use were established in the 13th Five Year Plan. It also stated objectives for increasing industry productivity, removing obsolete or overcapacity production facilities, increasing renewable energy production, and improving green infrastructure. [61]
The Chinese Ministry of Finance originally proposed a carbon tax in 2010, to come into effect in 2012 or 2013. [62] [63] The tax was never passed; in February 2021 the government instead set up a carbon trading scheme. [64] [65] [66]
The Chinese national carbon trading scheme is an intensity-based trading system for carbon dioxide emissions by China, which started operating in 2021. [67] [68] This emission trading scheme (ETS) creates a carbon market where emitters can buy and sell emission credits. The scheme will allow carbon emitters to reduce emissions or purchase emission allowances from other emitters. Through this scheme, China will limit emissions while allowing economic freedom for emitters.
China is the largest emitter of greenhouse gases (GHG) and many major Chinese cities had severe air pollution through the 2010s, [69] with the situation improving in the 2020s. [70] The scheme is run by the Ministry of Ecology and Environment, [67] which eventually plans to limit emissions from six of China's top carbon dioxide emitting industries. [71] In 2021 it started with its power plants, and covers 40% of China's emissions, which is 15% of world emissions. [72] China was able to gain experience in drafting and implementation of an ETS plan from the United Nations Framework Convention on Climate Change (UNFCCC), where China was part of the Clean Development Mechanism (CDM). [69] China's national ETS is the largest of its kind, [72] and will help China achieve its Nationally Determined Contribution (NDC) to the Paris Agreement. [69] In July 2021, permits were being handed out for free rather than auctioned, and the market price per tonne of CO2e was around RMB 50, roughly half of the EU ETS and the UK ETS but better compared to the US, which has no formal cap-and-trade program. [72]China also has a policy of forestry carbon credits. [73] Forestry carbon credits are based on the measurement of forest growth, which is converted into carbon emission reduction measurements by government ecological and forestry offices. [73] Owners of forests (who are typically rural families or rural villages) receive carbon tickets (碳票; tan piao) which are tradeable securities. [73]
Vehicles account for around 8% of the heat-trapping gases released annually in China. [74]
The Chinese government has strategically promoted Eco-Cities in China as a policy measure for addressing rising greenhouse gas emissions resulting from China's rapid urbanization and industrialization. [75] These projects seek to blend green technologies and sustainable infrastructure to build large, environmentally friendly cities nationwide. [76] The government has launched three programs to incentivize cities to undertake eco-city construction, [77] encouraging hundreds of cities to announce plans for eco-city developments. [78]
Energy efficiency improvements have somewhat offset increases in energy output as China continues to develop. Since 2006, the Chinese government has increased export taxes on energy-inefficient industries, reduced import tariffs on certain non-renewable energy resources, and closed down a number of inefficient power and industrial plants. In 2009, for example, for every two new plants (in terms of energy generation capacity) built, one inefficient plant was closed. China is unique in its closing of so many inefficient plants. [79]
China is the world's leading investor in wind turbines and other renewable energy technologies [80] and produces more wind turbines and solar panels each year than any other country. [81]
China is the world leader in renewable energy deployment, with more than twice the ability of any other nation. China accounted for 43% of global renewable energy capacity additions in 2018. [82] For decades, hydropower has been a major source of energy in China. In the last ten years, wind and solar power have risen significantly. Renewables accounted for approximately a quarter of China's electricity generation in 2018, with 18% coming from hydropower, 5% from wind, and 3% from solar. [82]
Nuclear power is planned to be rapidly expanded. [83]
China has also dictated energy standards for lighting and gas kilometrage for cars. [84]
The targets laid out in China's Intended Nationally Determined Contribution (INDC) in 2016 will likely be met, but are not enough to properly combat global warming. [15] China also established 10 binding environmental targets in its Thirteenth Five-Year Plan (2016–2020). These include an aim to reduce carbon intensity by 18% by 2020, as well as a binding target for renewable energy at 15% of total energy, raised from under 12% in the Twelfth Five-Year Plan. The Thirteenth Five-Year Plan also set, for the first time, a cap on total energy use from all sources: no more than 5 billion tons of coal through 2020. [85]
Energy policies are the government's strategies and decisions regarding the production, distribution, and consumption of energy within a specific jurisdiction. Energy is essential for the functioning of modern economies because they require energy for many sectors, such as industry, transport, agriculture, housing. The main components of energy policy include legislation, international treaties, energy subsidies and other public policy techniques.
An emission intensity is the emission rate of a given pollutant relative to the intensity of a specific activity, or an industrial production process; for example grams of carbon dioxide released per megajoule of energy produced, or the ratio of greenhouse gas emissions produced to gross domestic product (GDP). Emission intensities are used to derive estimates of air pollutant or greenhouse gas emissions based on the amount of fuel combusted, the number of animals in animal husbandry, on industrial production levels, distances traveled or similar activity data. Emission intensities may also be used to compare the environmental impact of different fuels or activities. In some case the related terms emission factor and carbon intensity are used interchangeably. The jargon used can be different, for different fields/industrial sectors; normally the term "carbon" excludes other pollutants, such as particulate emissions. One commonly used figure is carbon intensity per kilowatt-hour (CIPK), which is used to compare emissions from different sources of electrical power.
Climate change mitigation (or decarbonisation) is action to limit the greenhouse gases in the atmosphere that cause climate change. Climate change mitigation actions include conserving energy and replacing fossil fuels with clean energy sources. Secondary mitigation strategies include changes to land use and removing carbon dioxide (CO2) from the atmosphere. Current climate change mitigation policies are insufficient as they would still result in global warming of about 2.7 °C by 2100, significantly above the 2015 Paris Agreement's goal of limiting global warming to below 2 °C.
Coal pollution mitigation is a series of systems and technologies that seek to mitigate health and environmental impact of burning coal for energy. Burning coal releases harmful substances that contribute to air pollution, acid rain, and greenhouse gas emissions. Mitigation includes precombustion approaches, such as cleaning coal, and post combustion approaches, include flue-gas desulfurization, selective catalytic reduction, electrostatic precipitators, and fly ash reduction. These measures aim to reduce coal's impact on human health and the environment.
A low-carbon economy (LCE) is an economy which absorbs as much greenhouse gas as it emits. Greenhouse gas (GHG) emissions due to human activity are the dominant cause of observed climate change since the mid-20th century. There are many proven approaches for moving to a low-carbon economy, such as encouraging renewable energy transition, energy conservation, and electrification of transportation. An example are zero-carbon cities.
Greenhouse gas (GHG) emissions from human activities intensify the greenhouse effect. This contributes to climate change. Carbon dioxide, from burning fossil fuels such as coal, oil, and natural gas, is the main cause of climate change. The largest annual emissions are from China followed by the United States. The United States has higher emissions per capita. The main producers fueling the emissions globally are large oil and gas companies. Emissions from human activities have increased atmospheric carbon dioxide by about 50% over pre-industrial levels. The growing levels of emissions have varied, but have been consistent among all greenhouse gases. Emissions in the 2010s averaged 56 billion tons a year, higher than any decade before. Total cumulative emissions from 1870 to 2022 were 703 GtC, of which 484±20 GtC from fossil fuels and industry, and 219±60 GtC from land use change. Land-use change, such as deforestation, caused about 31% of cumulative emissions over 1870–2022, coal 32%, oil 24%, and gas 10%.
The United States produced 5.2 billion metric tons of carbon dioxide equivalent greenhouse gas (GHG) emissions in 2020, the second largest in the world after greenhouse gas emissions by China and among the countries with the highest greenhouse gas emissions per person. In 2019 China is estimated to have emitted 27% of world GHG, followed by the United States with 11%, then India with 6.6%. In total the United States has emitted a quarter of world GHG, more than any other country. Annual emissions are over 15 tons per person and, amongst the top eight emitters, is the highest country by greenhouse gas emissions per person.
China is both the world's largest energy consumer and the largest industrial country, and ensuring adequate energy supply to sustain economic growth has been a core concern of the Chinese Government since the founding of the People's Republic of China in 1949. Since the country's industrialization in the 1960s, China is currently the world's largest emitter of greenhouse gases, and coal in China is a major cause of global warming. China is also the world's largest renewable energy producer, and the largest producer of hydroelectricity, solar power and wind power in the world. The energy policy of China is connected to its industrial policy, where the goals of China's industrial production dictate its energy demand managements.
Low-carbon electricity or low-carbon power is electricity produced with substantially lower greenhouse gas emissions over the entire lifecycle than power generation using fossil fuels. The energy transition to low-carbon power is one of the most important actions required to limit climate change.
The climate policy of China has a massive impact on global climate change, as China is the largest emitter of greenhouse gases in the world. Chinese plans to abide by carbon emission reduction goals involves peaking greenhouse gas emissions before 2030, and achieving carbon neutrality before 2060. Due to the buildup of solar power and the burning of coal, Chinese energy policy is closely related to its climate policy. There is also policy to adapt to climate change. Ding Xuexiang represented China at the 2023 United Nations Climate Change Conference in 2023, and may be influential in setting climate policy.
Climate change is having major effects on the Chinese economy, society and the environment. China is the world's largest emitter of carbon dioxide, through an energy infrastructure heavily focused on coal. China's per capita emissions are greater than the world and European Union averages but less than Australia, Canada, and the U.S. China recorded its hottest year on record in 2023, with an average temperature of 10.7 °C. On the basis of cumulative CO2 emissions measured from 1751 through to 2017, China is responsible for 13% of global and about half of the United States' cumulative emissions.
Greenhouse gas emissions by Australia totalled 533 million tonnes CO2-equivalent based on greenhouse gas national inventory report data for 2019; representing per capita CO2e emissions of 21 tons, three times the global average. Coal was responsible for 30% of emissions. The national Greenhouse Gas Inventory estimates for the year to March 2021 were 494.2 million tonnes, which is 27.8 million tonnes, or 5.3%, lower than the previous year. It is 20.8% lower than in 2005. According to the government, the result reflects the decrease in transport emissions due to COVID-19 pandemic restrictions, reduced fugitive emissions, and reductions in emissions from electricity; however, there were increased greenhouse gas emissions from the land and agriculture sectors.
In 2021, net greenhouse gas (GHG) emissions in the United Kingdom (UK) were 427 million tonnes (Mt) carbon dioxide equivalent, 80% of which was carbon dioxide itself. Emissions increased by 5% in 2021 with the easing of COVID-19 restrictions, primarily due to the extra road transport. The UK has over time emitted about 3% of the world total human caused CO2, with a current rate under 1%, although the population is less than 1%.
Climate change has resulted in an increase in temperature of 2.3 °C (4.14 °F) (2022) in Europe compared to pre-industrial levels. Europe is the fastest warming continent in the world. Europe's climate is getting warmer due to anthropogenic activity. According to international climate experts, global temperature rise should not exceed 2 °C to prevent the most dangerous consequences of climate change; without reduction in greenhouse gas emissions, this could happen before 2050. Climate change has implications for all regions of Europe, with the extent and nature of impacts varying across the continent.
Coal, cars and lorries vent more than a third of Turkey's five hundred million tonnes of annual greenhouse gas emissions. They are mostly carbon dioxide and part of the cause of climate change in Turkey. A quarter of the emissions are from electricity generation.
The Afşin-Elbistan power stations are two coal-fired power stations in Turkey, a few kilometres apart in Afşin District in Kahramanmaraş Province. Both Afşin-Elbistan A, built in the 1980s, and the newer Afşin-Elbistan B burn lignite from the nearby Elbistan coalfield. As their mines are opencast and next to the power stations the coal is cheap. But as the existing units are the older subcritical type, and Turkish lignite is very low quality, they are not very efficient.
India was ranked seventh among the list of countries most affected by climate change in 2019. India emits about 3 gigatonnes (Gt) CO2eq of greenhouse gases each year; about two and a half tons per person, which is less than the world average. The country emits 7% of global emissions, despite having 17% of the world population. The climate change performance index of India ranks eighth among 63 countries which account for 92% of all GHG emissions in the year 2021.
Greenhouse gas emissionsbyRussia are mostly from fossil gas, oil and coal. Russia emits 2 or 3 billion tonnes CO2eq of greenhouse gases each year; about 4% of world emissions. Annual carbon dioxide emissions alone are about 12 tons per person, more than double the world average. Cutting greenhouse gas emissions, and therefore air pollution in Russia, would have health benefits greater than the cost. The country is the world's biggest methane emitter, and 4 billion dollars worth of methane was estimated to leak in 2019/20.
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