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·1418 工程科学学报,第42卷,第11期 术及应用.热力发电,2017,46(11)片103) (中国人民共和国国务院.中华人民共和国环境保护税法实施 [9]Zhao Y.Han L P.Synergistic removal of mercury by low-low 条例[EB/OL1.中国政府网(2017-12-30)2020-03-051.http∥ temperature ESP for ultra-low emission coal-fired power plants.J www.gov.cn/zhengce/content/2017-12/30/content 5251797.htm) Chin Soc Power Eng,2019,39(4):319 [19]United States Environmental Protection Agency.RIN 2060-AU70 (赵毅,韩立鹏.超低排放燃煤电厂低低温电除尘器协同脱汞研 Mercury and Air Toxics Standards for Power Plants Electronic 究.动力工程学报,2019,39(4):319) Reporting Revisions.Research Triangle Park:United States [10]Li J,Lu R T,Wang C.Experimental study on dry desulphurization Environmental Protection Agency,2020 of sodium bicarbonate.JBeijing Univ Technol,020,46(4):353 [20]Zhang P.Pan W G,Guo R T,et al.Advances in pollutants (李坚,吕瑞形,王川.碳酸氢钠干法脱硫的实验研究.北京工业 collaborative control technologies from coal-fired flue gas.App 大学学报,2020,46(4):353) Chem Ind,2017,46(12):2447 [11]Liang Q M,Liang WJ,Fan X,et al.Effects of different factors on (张萍,潘卫国,郭瑞堂,等.燃煤烟气污染物协同控制技术的研 low-temperature NO conversion of VO-WO:-TiO,catalysts.J 究进展.应用化工,2017,46(12):2447) Beijing Univ Technol,2019,45(7):699 [21]Shu X,Shen Z Y,Sun Z Q,et al.Research and analysis of trace (梁全明,梁文俊,樊星,等.不同因素对V,O-WO-TiO催化剂 element migration and transformation in coal combustion / 低温NO转化率的影响.北京工业大学学报,2019,45(7):699) Seminar on Clean Combustion and Comprehensive Pollutants [12]Sun D M.Upgrading and Operating Performance of Ultra-Low Treatment for Coal-fired Power Generation.China Power Emission System for Coal-fired Power Plants Flue Gas Engineering Society Environmental Protection Technology and [Dissertation].Shijiazhuang:Hebei University of Science and Equipment Special Committee Annual Meeting in 2016.Shanghai, Technology,2018 2016:251 (孙冬梅.燃煤电厂烟气超低排放升级改造及运行性能[学位论 (舒喜,申智勇,孙尊强,等.燃煤中痕量元素迁移转化研究分 文].石家庄:河北科技大学,2018) 析∥2016年然煤发电清洁燃烧与污染物综合治理技术研讨会、 [13]Chen J,Zheng Z M,Xu L,et al.Technical application analysis of 中国动力工程学会环保技术与装备专委会年会论文集,上海, ultra-low emission standard of flue gas.Appl Energy Technol, 2016:251) 2019(5):39 [22]Xu H,Zhang C.Yuan C L,et al.Study on arsenic adsorption (陈坚,郑庄明,徐林,等.实现烟气超低排放标准的技术应用分 characteristics by mineral elements in simulated flue gas 析.应用能源技术,2019(5):39) atmosphere.J Fuel Chem Technol,2019,47(7):876 [14]Wang L Suudy on the Partitioning Characteristics of Hg.As.Se (许豪,张成,袁昌乐,等.模拟烟气气氛下矿物元素组分对砷的 and Other Hazardous Elements in Ultra-Low Emission Coal Fired 吸附特性研究.燃料化学学报,2019,47(7):876) Power Plants [Dissertation].Hangzhou:Zhejiang University,2018 [23]Zhang L.Research on Mercury Emission Measurement and (王丽.超低排放机组中汞、砷和硒等重金属的迁移特性研究 Estimate from Combustion Resources [Dissertation].Hangzhou: [学位论文].杭州:浙江大学,2018) Zhejiang University,2007 [15]Li Y,Zhang Y P.Study on the health risk assessment of pollutants (张乐,燃煤过程汞排放测试及汞排放量估算研究[学位论文] from coal burning in Taiyuan.J Environ Occupational Med,2005 杭州:浙江大学,2007) 22(6):506 [24]Yang H.Effects of calcium-based desulfurizing adsorbents on the (李岩,张燕萍.太原市燃煤污染物对人体健康的危险度评价 emission of arsenic during coal combustion.J Wuhan Univ 环境与职业医学,2005,22(6):506) Technol,.2011,33(3):126 [16]Kang Y.Environmental Biogeochemistry of Arsenic in Coal (杨华.钙基固硫剂控制燃煤砷排放的实验研究.武汉理工大学 Mining Area [Dissertation].Hefei:University of Science and 学报,2011,33(3):126) Technology of China,2014 [25]Gu T X.Study on the Migration and Transformation of the Coal- (康彧.煤矿区中砷的环境生物地球化学研究学位论文1.合肥: Fired Pollutant in the Vadose Zone [Dissertation].Changchun: 中国科学技术大学,2014) Jilin University,2018 [17]Lin M.The Research on Environmental Impact Assessment in (谷天雪.燃煤电厂污染物组分在包气带中迁移转化规律研究 Coal-burning Power Plants [Dissertation].Baoding:North China [学位论文].长春:吉林大学,2018) Electric Power University,2008 [26]Guo S L.Research on the Characteristics of Movement and (林明.燃煤电厂环境影响评价研究学位论文],保定:华北电力 Transformation and Pollution Control of Heavy Metals in Coal 大学,2008) Combustion [Dissertation].Chongqing:Chongqing University, [18]The State Council of the People's Republic of China.Imple- 2014 mentation Regulations of the People 's Republic of China on (郭胜利.燃煤重金属迁移转化特征及其污染控制研究学位论 Environmental Protection Tax Law [EB/OL].English.gov.cn 文1重庆:重庆大学,2014) (2017-12-30)[2020-03-05].http://www.gov.cn/zhengce/content/ [27]He S.Experimental and Mechanism Study on Mercury Catalytic 2017-12/30/content5251797.htm Oxidation in Coal-fired Flue Gas [Dissertation].Hangzhou:术及应用. 热力发电, 2017, 46(11):103) Zhao  Y,  Han  L  P.  Synergistic  removal  of  mercury  by  low-low temperature ESP for ultra-low emission coal-fired power plants. J Chin Soc Power Eng, 2019, 39(4): 319 (赵毅, 韩立鹏. 超低排放燃煤电厂低低温电除尘器协同脱汞研 究. 动力工程学报, 2019, 39(4):319) [9] Li J, Lü R T, Wang C. Experimental study on dry desulphurization of sodium bicarbonate. J Beijing Univ Technol, 2020, 46(4): 353 (李坚, 吕瑞彤, 王川. 碳酸氢钠干法脱硫的实验研究. 北京工业 大学学报, 2020, 46(4):353) [10] Liang Q M, Liang W J, Fan X, et al. Effects of different factors on low-temperature  NO  conversion  of  V2O5−WO3−TiO2 catalysts. J Beijing Univ Technol, 2019, 45(7): 699 (梁全明, 梁文俊, 樊星, 等. 不同因素对V2O5−WO3−TiO2催化剂 低温NO转化率的影响. 北京工业大学学报, 2019, 45(7):699) [11] Sun  D  M. Upgrading and Operating Performance of Ultra-Low Emission System for Coal-fired Power Plants Flue Gas [Dissertation].  Shijiazhuang:  Hebei  University  of  Science  and Technology, 2018 (孙冬梅. 燃煤电厂烟气超低排放升级改造及运行性能[学位论 文]. 石家庄: 河北科技大学, 2018) [12] Chen J, Zheng Z M, Xu L, et al. Technical application analysis of ultra-low  emission  standard  of  flue  gas. Appl Energy Technol, 2019(5): 39 (陈坚, 郑庄明, 徐林, 等. 实现烟气超低排放标准的技术应用分 析. 应用能源技术, 2019(5):39) [13] Wang  L. Study on the Partitioning Characteristics of Hg, As, Se and Other Hazardous Elements in Ultra-Low Emission Coal Fired Power Plants [Dissertation]. Hangzhou: Zhejiang University, 2018 (王丽. 超低排放机组中汞、砷和硒等重金属的迁移特性研究 [学位论文]. 杭州: 浙江大学, 2018) [14] Li Y, Zhang Y P. Study on the health risk assessment of pollutants from coal burning in Taiyuan. J Environ Occupational Med, 2005, 22(6): 506 (李岩, 张燕萍. 太原市燃煤污染物对人体健康的危险度评价. 环境与职业医学, 2005, 22(6):506) [15] Kang  Y. Environmental Biogeochemistry of Arsenic in Coal Mining Area [Dissertation].  Hefei:  University  of  Science  and Technology of China, 2014 (康彧. 煤矿区中砷的环境生物地球化学研究[学位论文]. 合肥: 中国科学技术大学, 2014) [16] Lin  M. The Research on Environmental Impact Assessment in Coal-burning Power Plants [Dissertation]. Baoding: North China Electric Power University, 2008 (林明. 燃煤电厂环境影响评价研究[学位论文]. 保定: 华北电力 大学, 2008) [17] The  State  Council  of  the  People ’s  Republic  of  China.  Imple￾mentation  Regulations  of  the  People ’s  Republic  of  China  on Environmental  Protection  Tax  Law  [EB/OL]. English.gov.cn (2017-12-30)  [2020-03-05]. http://www.gov.cn/zhengce/content/ 2017-12/30/content_5251797.htm [18] (中国人民共和国国务院. 中华人民共和国环境保护税法实施 条例 [EB/OL]. 中国政府网 (2017-12-30)  [2020-03-05]. http:// www.gov.cn/zhengce/content/2017-12/30/content_5251797.htm) United States Environmental Protection Agency. RIN 2060-AU70 Mercury and Air Toxics Standards for Power Plants Electronic Reporting Revisions.  Research  Triangle  Park:  United  States Environmental Protection Agency, 2020 [19] Zhang  P,  Pan  W  G,  Guo  R  T,  et  al.  Advances  in  pollutants collaborative  control  technologies  from  coal-fired  flue  gas. Appl Chem Ind, 2017, 46(12): 2447 (张萍, 潘卫国, 郭瑞堂, 等. 燃煤烟气污染物协同控制技术的研 究进展. 应用化工, 2017, 46(12):2447) [20] Shu X, Shen Z Y, Sun Z Q, et al. Research and analysis of trace element  migration  and  transformation  in  coal  combustion  // Seminar on Clean Combustion and Comprehensive Pollutants Treatment for Coal-fired Power Generation, China Power Engineering Society Environmental Protection Technology and Equipment Special Committee Annual Meeting in 2016. Shanghai, 2016: 251 (舒喜, 申智勇, 孙尊强, 等. 燃煤中痕量元素迁移转化研究分 析 // 2016年燃煤发电清洁燃烧与污染物综合治理技术研讨会、 中国动力工程学会环保技术与装备专委会年会论文集. 上海, 2016: 251) [21] Xu  H,  Zhang  C,  Yuan  C  L,  et  al.  Study  on  arsenic  adsorption characteristics  by  mineral  elements  in  simulated  flue  gas atmosphere. J Fuel Chem Technol, 2019, 47(7): 876 (许豪, 张成, 袁昌乐, 等. 模拟烟气气氛下矿物元素组分对砷的 吸附特性研究. 燃料化学学报, 2019, 47(7):876) [22] Zhang  L. Research on Mercury Emission Measurement and Estimate from Combustion Resources [Dissertation].  Hangzhou: Zhejiang University, 2007 (张乐. 燃煤过程汞排放测试及汞排放量估算研究[学位论文]. 杭州: 浙江大学, 2007) [23] Yang H. Effects of calcium-based desulfurizing adsorbents on the emission  of  arsenic  during  coal  combustion. J Wuhan Univ Technol, 2011, 33(3): 126 (杨华. 钙基固硫剂控制燃煤砷排放的实验研究. 武汉理工大学 学报, 2011, 33(3):126) [24] Gu T X. Study on the Migration and Transformation of the Coal￾Fired Pollutant in the Vadose Zone [Dissertation].  Changchun: Jilin University, 2018 (谷天雪. 燃煤电厂污染物组分在包气带中迁移转化规律研究 [学位论文]. 长春: 吉林大学, 2018) [25] Guo  S  L. Research on the Characteristics of Movement and Transformation and Pollution Control of Heavy Metals in Coal Combustion [Dissertation].  Chongqing:  Chongqing  University, 2014 (郭胜利. 燃煤重金属迁移转化特征及其污染控制研究[学位论 文]. 重庆: 重庆大学, 2014) [26] He  S. Experimental and Mechanism Study on Mercury Catalytic Oxidation in Coal-fired Flue Gas [Dissertation].  Hangzhou: [27] · 1418 · 工程科学学报,第 42 卷,第 11 期
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