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Towards carbon neutrality with Chinese characteristics: From an integrated perspective of economic growth-equity-environment

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  • Chen, Hao
  • Qi, Shaozhou
  • Zhang, Jihong

Abstract

With the increasing climate warming, reducing carbon emissions has gradually become a consensus around the world. However, the process of carbon emission reduction will inevitably lead to the transformation of economic structure, industrial structure and energy structure, which will bring huge changes in economic output, employment and other aspects, thus affecting the overall social welfare and equity. Therefore, it is particularly important for each country to determine a scientific and effective carbon emission pathway which take into account both social development and climate targets. As the largest carbon emitter, China has put forward the targets of carbon peak and carbon neutrality. In this regard, the corresponding carbon emission reduction scenarios are designed according to the new situation of China’s emission reduction in this paper, firstly. Furthermore, under the premise of maximizing social welfare, an optimization model which integrating economic growth-equity-environment is developed to determine China’s emission pathways under different scenarios from 2020 to 2050. Besides quantitatively showing the future total amount and peak value of carbon emissions under different scenarios, the results can also identify its evolution pathway over time. Therein, the peak under most scenarios will concentrate in 2025–2030, which is about 10.7 to 11.8 billion tons. With the increasingly stringent constraints on carbon emission reduction, the cost of emission reduction will increase correspondingly, but the overall social welfare will increase slightly. Finally, our findings provide practical guidance on achieving carbon emission reduction and enlightenments on policymaking.

Suggested Citation

  • Chen, Hao & Qi, Shaozhou & Zhang, Jihong, 2022. "Towards carbon neutrality with Chinese characteristics: From an integrated perspective of economic growth-equity-environment," Applied Energy, Elsevier, vol. 324(C).
  • Handle: RePEc:eee:appene:v:324:y:2022:i:c:s0306261922010108
    DOI: 10.1016/j.apenergy.2022.119719
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    as
    1. Fang, Kai & Tang, Yiqi & Zhang, Qifeng & Song, Junnian & Wen, Qi & Sun, Huaping & Ji, Chenyang & Xu, Anqi, 2019. "Will China peak its energy-related carbon emissions by 2030? Lessons from 30 Chinese provinces," Applied Energy, Elsevier, vol. 255(C).
    2. Zili Yang, 2008. "Strategic Bargaining and Cooperation in Greenhouse Gas Mitigations: An Integrated Assessment Modeling Approach," MIT Press Books, The MIT Press, edition 1, volume 1, number 0262240548, April.
    3. Joeri Rogelj & Daniel Huppmann & Volker Krey & Keywan Riahi & Leon Clarke & Matthew Gidden & Zebedee Nicholls & Malte Meinshausen, 2019. "A new scenario logic for the Paris Agreement long-term temperature goal," Nature, Nature, vol. 573(7774), pages 357-363, September.
    4. Pan, Xunzhang & Elzen, Michel den & Höhne, Niklas & Teng, Fei & Wang, Lining, 2017. "Exploring fair and ambitious mitigation contributions under the Paris Agreement goals," Environmental Science & Policy, Elsevier, vol. 74(C), pages 49-56.
    5. Chandra Setiawan, Indra & Indarto, & Deendarlianto,, 2021. "Quantitative analysis of automobile sector in Indonesian automotive roadmap for achieving national oil and CO2 emission reduction targets by 2030," Energy Policy, Elsevier, vol. 150(C).
    6. Yann Robiou du Pont & M. Louise Jeffery & Johannes Gütschow & Joeri Rogelj & Peter Christoff & Malte Meinshausen, 2017. "Correction: Corrigendum: Equitable mitigation to achieve the Paris Agreement goals," Nature Climate Change, Nature, vol. 7(2), pages 153-153, February.
    7. David Wachsmuth & Daniel Aldana Cohen & Hillary Angelo, 2016. "Expand the frontiers of urban sustainability," Nature, Nature, vol. 536(7617), pages 391-393, August.
    8. William Brock & M. Taylor, 2010. "The Green Solow model," Journal of Economic Growth, Springer, vol. 15(2), pages 127-153, June.
    9. Yann Robiou du Pont & Malte Meinshausen, 2018. "Warming assessment of the bottom-up Paris Agreement emissions pledges," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
    10. William Nordhaus, 2019. "Climate Change: The Ultimate Challenge for Economics," American Economic Review, American Economic Association, vol. 109(6), pages 1991-2014, June.
    11. Johannes Emmerling & Ulrike Kornek & Valentina Bosetti & Kai Lessmann, 2021. "Climate thresholds and heterogeneous regions: Implications for coalition formation," The Review of International Organizations, Springer, vol. 16(2), pages 293-316, April.
    12. Qin, Quande & Liu, Yuan & Huang, Jia-Ping, 2020. "A cooperative game analysis for the allocation of carbon emissions reduction responsibility in China's power industry," Energy Economics, Elsevier, vol. 92(C).
    13. Joeri Rogelj & Gunnar Luderer & Robert C. Pietzcker & Elmar Kriegler & Michiel Schaeffer & Volker Krey & Keywan Riahi, 2015. "Energy system transformations for limiting end-of-century warming to below 1.5 °C," Nature Climate Change, Nature, vol. 5(6), pages 519-527, June.
    14. Yuan, Jiahai & Xu, Yan & Hu, Zheng & Zhao, Changhong & Xiong, Minpeng & Guo, Jingsheng, 2014. "Peak energy consumption and CO2 emissions in China," Energy Policy, Elsevier, vol. 68(C), pages 508-523.
    15. Xu, Lei & Chen, Nengcheng & Chen, Zeqiang, 2017. "Will China make a difference in its carbon intensity reduction targets by 2020 and 2030?," Applied Energy, Elsevier, vol. 203(C), pages 874-882.
    16. Joeri Rogelj & Michel den Elzen & Niklas Höhne & Taryn Fransen & Hanna Fekete & Harald Winkler & Roberto Schaeffer & Fu Sha & Keywan Riahi & Malte Meinshausen, 2016. "Paris Agreement climate proposals need a boost to keep warming well below 2 °C," Nature, Nature, vol. 534(7609), pages 631-639, June.
    17. Jeffery B. Greenblatt & Max Wei, 2016. "Assessment of the climate commitments and additional mitigation policies of the United States," Nature Climate Change, Nature, vol. 6(12), pages 1090-1093, December.
    18. Yi-Ming Wei & Rong Han & Ce Wang & Biying Yu & Qiao-Mei Liang & Xiao-Chen Yuan & Junjie Chang & Qingyu Zhao & Hua Liao & Baojun Tang & Jinyue Yan & Lijing Cheng & Zili Yang, 2020. "Self-preservation strategy for approaching global warming targets in the post-Paris Agreement era," Nature Communications, Nature, vol. 11(1), pages 1-13, December.
    19. Yann Robiou du Pont & M. Louise Jeffery & Johannes Gütschow & Joeri Rogelj & Peter Christoff & Malte Meinshausen, 2017. "Equitable mitigation to achieve the Paris Agreement goals," Nature Climate Change, Nature, vol. 7(1), pages 38-43, January.
    20. William D. Nordhaus, 2007. "A Review of the Stern Review on the Economics of Climate Change," Journal of Economic Literature, American Economic Association, vol. 45(3), pages 686-702, September.
    21. Nicholas Stern, 2008. "The Economics of Climate Change," American Economic Review, American Economic Association, vol. 98(2), pages 1-37, May.
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