燃煤机组耦合生物质直燃发电技术研究Biomass Direct Combustion of Co-firing Technology Research in Coal-fired Power Plants
李少华;刘冰;彭红文;吕俊复;
摘要(Abstract):
在"30·60"碳达峰、碳中和目标下,燃煤机组碳减排势在必行。燃煤机组耦合生物质发电是碳减排的重要手段之一。文章依托某350 MW热电联产机组,对生物质散料送粉管道耦合和成型颗粒送粉管道耦合两种方案进行了系统设计和技术经济性分析:按照10%的掺烧比例,送粉管道耦合方案对主辅机影响很小,对污染物排放无不利影响;生物质掺烧将导致上网电价增加,建议通过电量补贴等方式进行鼓励。相较于纯燃生物质机组、烟气脱碳等碳减排方案,燃煤机组耦合生物质直燃发电技术在机组效率、投资运行成本等方面均优势明显,是目前较为合适的燃煤机组碳减排及生物质能利用方式。
关键词(KeyWords): 燃煤机组;生物质直燃耦合技术;系统设计;碳减排方案比较
基金项目(Foundation):
作者(Authors): 李少华;刘冰;彭红文;吕俊复;
DOI: 10.13500/j.dlkcsj.issn1671-9913.2021.06.006
参考文献(References):
- [1]水电水利规划设计总院.中国可再生能源发展报告.2019[M].北京:中国水利水电出版社,2020.
- [2]A.Williams,M.Pourkashanian,J.M.Jones,Combustion of pulverized coal and biomass[J].Progress in Energy and Combustion Science,2001(27):587-610.
- [3]S.De,M.Assadi,Impact of cofiring biomass with coal in power plants–A techno-economic assessment[J].Biomass and Bioenergy,2009,33:283-293.
- [4]Prabir Basua,James Butler b,Mathias A.Leon.A Biomass co-firing options on the emission reduction and electricity generation costs in coal-fired power plants[J].Renewable Energy,2011,36:282-288.
- [5]D.A.Tillman,Biomass cofiring:the technology,the experience,the combustion consequences[J].Biomass and Bioenergy,2000,19:365-384.
- [6]Fouad Al-Mansour,Jaroslaw Zuwala.An evaluation of biomass co-firing in Europe[J].Biomass and Bioenergy,2010,34:620-629.
- [7]李定凯.对芬兰和英国生物质—煤混燃发电情况的考察[J].电力技术,2010,19(2):2-8.
- [8]Ezinwa Agbor,Xiaolei Zhang,Amit Kumar N.A review of biomass co-firing in North America[J].Renewable and Sustainable Energy Reviews,2014,40:930-943.
- [9]谢方磊.十里泉发电厂140?MW机组秸秆发电技术应用研究[J].山东电力技术,2006,148(2):65-68.
- [10]王学斌,谭厚章,陈二强,等.300?MW燃煤机组混燃秸秆成型燃料的试验研究[J].中国电机工程学报,2010,30(14):1-6.
- [11]毛健雄.燃煤耦合生物质发电[J].分布式能源,2017,2(5):47-54.
- [12]井新经,陈运,张海龙,等.生物质耦合发电技术及电量计算方法[J].热力发电,2019,48(12):31-37.