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1000 MW高效超超临界煤电机组CO_(2)减排技术分析

CO_(2) Emission Reduction Technology of 1000 MW Advanced Ultra-supercritical Coal-fired Power Unit
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摘要 在“双碳”背景下,为减少电力行业CO_(2)排放,研究了采用1000 MW高效超超临界煤电机组CO_(2)减排技术的直接效益。在此基础上,还提出了具有一定技术基础的短期CO_(2)减排技术,即生物质耦合技术和多能互补技术,并指出了这两项技术进一步增加CO_(2)减排量的研究方向,同时,提出了电力行业中长期的研究方向则是发展低成本CO_(2)捕集、利用与封存技术。 In the context of"Double Carbon",in order to reduce CO_(2)emission in power industry,this paper studied the direct benefits of CO_(2)emission reduction by adopting 1000 MW advanced ultra-supercritical coal-fired power unit technology.On this basis,this paper also proposed some short-term CO_(2)emission reduction technologies with certain technical basis:biomass coupling technology and multi energy complementarity technology,and pointed out the research direction of these two technologies to continue to increase CO_(2)emission reduction.At the same time,it is proposed that the medium and long-term research direction of power industry is to develop low-cost CO_(2)capture,utilization and storage technology.
作者 赵四方 张文杰 朱洋 鲁佳易 邓启刚 任燕丽 ZHAO Sifang;ZHANG Wenjie;ZHU Yang;LU Jiayi;DENG Qigang;REN Yanli(Southwest Electric Power Design Institute Co.,Ltd.,China Power Engineering Consulting Group,Chengdu 610021,Sichuan,China;Clean Combustion and Flue Gas Purification Key Laboratory of Sichuan Province,Chengdu 611731,Sichuan,China;Dongfang Boiler Co.,Ltd.,Dongfang Electric Corporation,Zigong 643001,Sichuan,China)
出处 《能源与节能》 2022年第7期88-90,共3页 Energy and Energy Conservation
关键词 CO_(2)减排 1000 MW高效超超临界机组 生物质耦合 多能互补 CO_(2)捕集利用与封存 CO_(2)emission reduction 1000 MW advanced ultra-supercritical unit biomass coupling multi energy complementarity CO_(2)capture,utilization and storage
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