[1] 史亚微,白中华,姜军清. 中国烟气脱汞技术现状及发展趋势 [J]. 洁净煤技术,2014,20(2):104-108. SHI Yawei, BAI Zhonghua, JIANG Junqing. Research status and prospect of mercury removal technology from gas in China [J]. Clean Coal Technology, 2014, 20(2): 104-108. [2] 蒋丛进,刘秋生,陈创社. 国华三河电厂飞灰基改性吸附剂脱汞技术研究 [J]. 中国电力,2015,48(4):54-57. JIANG Congjin, LIU Qiusheng, CHEN Chuangshe. Study on mercury removal technique using modified fly ash based sorbents in Guohua Sanhe Power Plant [J]. Electric Power, 2015, 48(4): 54-57. [3] 赵毅,郝润龙,齐萌,等. 同时脱硫脱硝脱汞技术研究概述[J].中国电力,2013,46(10):155-160. ZHAO Yi, HAO Runlong, QI Meng, et al . Overview of simultaneous desulfurization, denitrification and demercuration technologies [J]. Electric Power, 2013, 46(10):155-160. [4] 刘玉坤,禚玉群,陈昌和,等. 燃煤电站脱硫系统的脱汞性能[J]. 中国电力,2011,44(12):68-72. LIU Yukun, ZHUO Yuqun, CHEN Changhe, et al . Mercury removal performance of desulfurization systems in coal-fired power plants [J]. Electric Power, 2011, 44(12): 68-72. [5] 何石鱼,赵会民,刘长东,等. 燃煤汞污染控制研究进展[J]. 中国电力,2016,49(2):170-175. HE Shiyu, ZHAO Huimin, LIU Changdong, et al . Overview of mercury removal from coal-fired flue gas[J]. Electric Power, 2016, 49(2): 170-175. [6] 史晓宏,张翼,赵瑞,等. 燃煤电厂烟气汞减排技术研究与实践[J]. 中国电力,2016,49(8):135-139. SHI Xiaohong, ZHANG Yi, ZHAO Rui, et al . Research and practice of flue gas mercury reduction technology in coal-fired power plants [J]. Electric Power, 2016, 49(8): 135-139. [7] 赵毅,陈周燕,汪黎东,等. 湿式烟气脱硫系统同时脱汞研究[J]. 环境工程学报,2008,2(1):64-69. ZHAO Yi, CHEN Zhouyan, WANG Lidong, et al . Study on simultaneous removal of SO 2 and Hg in wet flue gas desulfurization [J]. Chinese Journal of Environmental Engineering, 2008, 2(1): 64-69. [8] 鲍静静,印华斌,杨林军,等. 湿法烟气脱硫系统的脱汞性能研究[J]. 动力工程,2009,29(7):664-670. BAO Jingjing, YIN Huabin, YANG Linjun, et al . Demercuration performance of wet gas desulfurization systems [J]. Journal of Power Engineering, 2009, 29(7):664-670. [9] 刘杰,陈敏敏. 燃煤电厂烟气中汞形态及含量的采样分析方法 [J]. 煤气与热力,2014,34(12):11-14. LIU Jie, CHEN Minmin. Sampling analysis methods for mercury morphology and content in flue gas from coal-fired power plants [J]. Gas & Heat, 2014, 34(12): 11-14. |