[1]抚顺石油化工研究院,中国环境科学研究院.石油炼制工业污染物排放标准:GB 31570—2015 [S].北京:中国环境科学出版社,2015.
[2]胡敏.催化裂化烟气三氧化硫排放问题分析与对策[J].炼油技术与工程,2016,46(9):1-7.
[3] KIKUCHI R. Environmental management of sulfur trioxide emission: impact of SO3 on human health[J].Environmental management,2001,27(6):837-844.
[4] 齐文义.FCC再生烟气中SO3的生成及应对措施[J].炼油技术与工程,2011, 41(1):6-9.
[5] 纪培栋.SCR催化剂SO2氧化机理及调控机制研究[D].杭州:浙江大学,2016.
[6] 龚望欣.催化裂化烟气脱硫除尘脱硝技术问答[M].北京:中国石化出版社, 2015.
[7] LI J,QI Z,LI M, et al. Physical and chemical characteristics of condensable particulate matter from an ultralow-emission coal-fired power plant[J].Energy fuels,2017,31(2):1778-1785.
[8] 张杨.燃煤电厂环保装备对SO3排放的影响及控制策略研究[D].杭州:浙江大学,2020.
[9] 苏欣.湿式烟气细颗粒物与SOx协同脱除机理研究[D].保定:华北电力大学, 2017.
[10] CHANG J,DONG Y,WANG Z, et al. Removal of sulfuric acid aerosol in a wet electrostatic precipitator with single terylene or polypropylene collection electrodes[J].Journal of aerosol science,2011,42(8):544-554.
[11] 徐绍平,陈雨帆,吴贤豪,等.应用碱性吸收剂喷射技术脱除烟气中SO3的中试试验研究[J].浙江电力,2020,39(3):94-99.
[12] XIE D,WANG H,TAO J, et al. Sulfur trioxide removal performance of alkaline sorbents injection in the temperature range 400~705°C: a pilot-scale study[J].Journal of chemical technology & biotechnology,2019,94(7):2382-2388.
[13] HU W,GAO X,DENG Y, et al. Deactivation Mechanism of arsenic and resistance effect of SO42- on commercial catalysts for selective catalytic reduction of NOx with NH3[J].Chemical engineering journal,2016,293:118-128.
[14] 杨江毅.选择性脱除三氧化硫技术研究[D].北京:华北电力大学(北京),2019.
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