The Current Status and Future Prospects of Carbon Capture, Carbon Transportation, And Carbon Utilization Technologies in Chinese Coal-Fired Power Plants Within the Context of Dual Carbon Goals

Authors

  • Yao Fu
  • Yibo Wang
  • Tongyang Zheng

DOI:

https://doi.org/10.54097/rs28cm11

Keywords:

CCUS technology; thermal power plant; carbon capture; carbon economy.

Abstract

Carbon dioxide capture, utilization, and storage (CCUS) constitute vital measures for achieving net emissions reduction in China. Against the backdrop of the “dual carbon” initiative in China, this paper meticulously examines and analyzes the key technological principles, merits and demerits, and bottlenecks associated with CCUS carbon capture in the country’s thermal power plants at the current stage. It combines the prevailing industrial application status and the future development trajectory of pertinent technologies with considerations of industrial economic benefits and business models. Building upon this analysis, the paper summarizes the application status of CCUS technology in China’s thermal power plant industry and presents future prospects. On the technological front, the three capture methods grapple with the challenge of high costs. Therefore, there is a need to intensify efforts in developing low-cost and efficient carbon capture materials, as well as researching and practically applying low-cost oxygen generation technology. Economically, CCUS technology currently faces high costs, low returns, and certain commercial barriers, placing China in a demonstrative business model stage. To overcome these challenges and realize the economic benefits of CCUS technology, government incentives and technological innovation are imperative. These measures aim to reduce the overall cost of CCUS technology, stimulate the scale development, and foster commercialization, ultimately contributing to the achievement of China’s carbon emission reduction targets.

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References

Sun Youyuan, Zheng Zhang, Qin Yaqi, et al. Study on carbon emission characteristics and suggestions on carbon emission management of coal-fired power plant. Electric Power, 2018, 51(3): 144-149, 169.

Wang Can. The path of low-carbon transformation under the vision of carbon neutrality. Chinese Journal of Environmental Management, 2021, 13(1): 13-15.

Li Yang, Wang Rui, Zhao Qingmin, et al. Status and prospects for CO2 capture, utilization and storage technology in China. Petroleum Science Bulletin, 2023, 8(4): 391-397.

Yuan Xin, Liu Jun, Chen Heng, et al. Analysis of CCUS technology route in the thermal power industry under the background of “carbon peak and carbon neutrality”. Energy Science and Technology, 2023, 21(4): 46-50.

Tang Qiang, Li Jinhui, Zou Jianwei, et al. Review on research status and development of carbon dioxide capture technology. World Sci-Tech R&D, 2023, 45(5): 567-580.

Zhou Hui, Zhou Yaolai, Li Yunpeng. Oxygen-enriched combustion and its influence on environment. East China Electric Power, 2008, 36(9): 111-113.

Zhang Feng, Fu Angyi, Liu Kaiyi. Research progress of carbon capture, storage and utilization technology. Leather Manufacture and Environmental Technology, 2022, 3(1): 173-175, 178.

Rashidi N A, Yusup S. An overview of activated carbons utilization for the post-combustion carbon dioxide capture. Journal of CO2 Utilization, 2016, 13: 1-16.

Shen Tupeilan. Research progress of carbon dioxide membrane separation materials. Energy Chemical Industry, 2021, 42(5): 27-32.

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Published

05-05-2024

How to Cite

Fu, Y., Wang, Y., & Zheng, T. (2024). The Current Status and Future Prospects of Carbon Capture, Carbon Transportation, And Carbon Utilization Technologies in Chinese Coal-Fired Power Plants Within the Context of Dual Carbon Goals. Highlights in Science, Engineering and Technology, 96, 116-125. https://doi.org/10.54097/rs28cm11