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首页» 过刊浏览» 2023» Vol.8» Issue(4) 445-460     DOI : 10.3969/j.issn.2096-1693.2023.04.034
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炼化工业碳减排路径与电化工/ 电供能技术发展综述
蒲田, 胡建清, 周红军, 徐春明
1 中国石油大学( 北京) 重质油全国重点实验室,北京 102249 2 中国石油大学( 北京) 新能源与材料学院,北京 102249 3 重质油全国重点实验室碳中和联合研究院,北京 102249 4 山东石油化工学院,东营 257061
Low-carbon pathways and electrochemical/electrification technologies development in the refining-chemical industry: A review
PU Tian, HU Jianqing, ZHOU Hongjun, XU Chunming
1 State Key Laboratory of Heavy Oil Processing, China University of Petroleum-Beijing, Beijing 102249, China 2 College of New Energy and Materials, China University of Petroleum-Beijing, Beijing 102249, China 3 Union Institute for Carbon Neutrality (State Key Laboratory of Heavy Oil Processing), Beijing 102249, China 4 Shandong Institute of Petroleum and Chemical Technology, Dongying 257061, China

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摘要  炼化工业生产大量的化学品和能源产品,促进经济社会的发展,属于国家支柱性产业,但面临复杂严峻的节能降碳形势。本文围绕炼化工业碳减排路径与电化工/电供能(电气化或再电气化,Electrification)的技术发展进行探讨分析。综述国内炼化工业的行业特征、加工技术路线及能源消费情况,点明炼化工业节能降碳的困境,归纳已基本形成共识的炼化工业绿色低碳转型方向。阐述绿电和绿氢新能源产业发展带来的机遇,分析储能和绿电制绿氢技术的地位作用,重点研析电化工/电供能前沿技术的发展现状。明晰零碳能源耦合是首要前提,能量流集成电供能是优先选择,物质流集成电化工是关键核心,减碳负碳技术是最终保障的炼化工业绿色低碳转型思路,提出炼化工业及相关产业未来技术发展的建议,为国内炼化工业绿色低碳转型指引参考。
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关键词 : 炼化工业,电化工,电供能,绿电,绿氢,低碳
Abstract

The refining-chemical industry is a key sector to support social development by providing chemical and energy products. However, it is facing a complex and challenging situation in terms of energy conservation and carbon reduction. In this paper, the carbon reduction pathways in the refining-chemical industry and the technological development of electrification in the chemical and power supply sectors were explored and analyzed. The results reviewed the industry characteristics, processing technology routes, and energy consumption in the domestic refining-chemical industry, highlighted the challenges in energy conservation and carbon reduction, and summarized the transformation and upgrading directions that have achieved consensus. The opportunities brought by the development of the new green electricity and green hydrogen energy industries were discussed, the role of energy storage technology and green electricity-to-hydrogen production technology were analyzed, and the current development status of electrification technology in the chemical and power supply sectors were emphasized. It was confirmed that process improvement is the key core, zero-carbon energy coupling is the primary prerequisite, electrification is the connecting hub, and decarbonization technologies are the ultimate guarantee for the green and low-carbon transformation of the refining-chemical industry. The article also provides recommendations for the future technological development of the refining-chemical industry and related sectors, serving as a reference for guiding the green and low-carbon transformation of the domestic refining-chemical industry.

Key words: reduce resource consumption; electrochemical; electrification; green electricity; green hydrogen; low-carbon
收稿日期: 2023-08-30     
PACS:    
基金资助:国家自然科学基金(22021004) 资助
通讯作者: xcm@cup.edu.cn
引用本文:   
蒲田, 胡建清, 周红军, 徐春明. 炼化工业碳减排路径与电化工/电供能技术发展综述. 石油科学通报, 2023, 04: 445-460 PU Tian, HU Jianqing, ZHOU Hongjun, XU Chunming. Low-carbon pathways and electrochemical/electrification technologies development in the refining-chemical industry: A review. Petroleum Science Bulletin, 2023, 04: 445-460.
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