[1] CI Zhijia,ZHANG Xiaoshan,WANG Zhangwei. Enhancing atmospheric mercury research in China to improve the current understanding of the global mercury cycle:the need for urgent and closely coordinated efforts[J]. Environmental Science and Technology,2012,46(11):5636-5642.
[2] 盘思伟,胡将军,唐念,等.燃煤电厂烟气汞的排放及控制研究[J].环境科学与管理,2014,39(4):100-103. PAN Siwei,HU Jiangjun,TANG Nian,et al. Study on mercury emission and control in flue gas from coal-fired power plant[J]. Environmental Science and Management,2014,39(4):100-103.
[3] WANG Shuxiao,ZHANG Lei,WANG Long,et al. A review of atmospheric mercury emissions,pollution and control in China[J]. Frontiers of Environmental Science and Engineering,2014,8(5):631-649.
[4] FU Xuewu,FENG Xinbin,SOMMAR J,et al. A review of studies on atmospheric mercury in China[J]. Science of the Total Environment,2012,421/422:73-81.
[5] Hall B,Schager P,Lindqvist O. Chemical reactions of mercury in combustion flue gases[J]. Water Air and Soil Pollution,1991,56:3-14.
[6] Sliger R N,Kramlich J C. Towards the development of a chemical kinetic model of the homogeneous oxidation of mercury by chlorine species[J]. Fuel Processing Technology,2000,65/66:423-438.
[7] 殷立宝,余亮英,徐齐胜,等.氯、氟离子对烟气中汞形态和分布的影响[J].热力发电,2014,43(10):16-19. YIN Libao,YU Liangying,XU Qisheng,et al. Effects of chlorine and fluorine elements on mercury species and its distribution in flue gas[J]. Thermal Power Generation,2014,43(10):16-19.
[8] 王运军,段钰锋,杨立国,等.600 MW燃煤电站烟气汞形态转化影响因素分析[J].热能动力工程,2008,23(4):399-403. WANG Yunjun,DUAN Yufeng,YANG Liguo,et al. Analysis of the factors exercising an influence on the morphological transformation of mercury in the flue gas of 600 MW coal-fired power plant[J]. Journal of Engineering for Thermal Energy and Power,2008,23(4):399-403.
[9] 周劲松,骆仲泱,任建莉,等.煤裂解或燃烧条件下汞的析出规律研究[J].燃烧科学与技术,2002,8(2):103-108. ZHOU Jinsong,LUO Zhongyang,REN Jianli,et al. Mercury transformation during coal combustion and pyrolysis[J]. Journal of Combustion Science and Technology,2002,8(2):103-108.
[10] 任建莉,周劲松,骆仲泱,等.燃煤过程中汞的析出规律试验研究[J].浙江大学学报(工学版),2002,36(4):397-403. REN Jianli,ZHOU Jinsong,LUO Zhongyang,et al. Study of mercury emission during coal combustion[J]. Journal of Zhejiang University (Engineering Science),2002,36(4):397-403.
[11] 杨爱勇,严智操,惠润堂,等.中国煤中汞的含量、分布与赋存状态研究[J].科学技术与工程,2015,15(32):93-99. YANG Aiyong,YAN Zhicao,HUI Runtang,et al. The abundance,distribution,and modes of occurrence of Hg in Chinese coals[J]. Science Technology and Engineering,2015,15(32):93-99.
[12] 白旸,张景龙.煤样的缩制、送检与采样方案[J].黑龙江科学,2016,7(15):40-42. BAI Yang,ZHANG Jinglong. Reduction,inspection and sampling program of coal sample[J]. Heilongjiang Science,2016,7(15):40-42.
[13] ASTM. Standard test method for mercury coal-fired stationary sources(Ontario Hydro Method):USYASTM D6784-16[S]. American Society for Testing and Material.
[14] EPA U.S. method 26A-determination of hydrogen halide and halogen emissions from stationary sources[S]. EPAU.S.
[15] TANG Hongjian,DUAN Yufeng,ZHU Chun,et al. A novel carbon trap sampling system for coal-fired flue gas mercury measurement[J]. Journal of Southeast University:English Edition,2015,31(2):244-248.
[16] 罗光前.燃煤汞形态识别及其脱除的研究[D]. 武汉:华中科技大学,2009. LUO Guangqian. Study of species identification and removal of mercury in coal and during coal combustion[D].Wuhan:Huazhong University of Science and Technology,2009.
[17] BROWN T,SMITH D,HARGIS R,et al. Mercury measurement and its control:what we know,have learned,and need to further investigate[J]. Journal of the Air and Waste Management Association,1999,49(6):1-97.
[18] LOPEZ-ANTON M A,YUAN Y,PERRY R,et al. Analysis of mercury species present during coal combustion by thermal desorption[J]. Fuel,2010,89(3):629-634.
[19] MEI J R. The fate of mercury in coal fired power plants and the influence of wet flue gas desulphurization[J]. Water Air and Soil Pollution,1991,56:21-33.
[20] 杨建平,赵永椿,张军营,等.燃煤电站飞灰对汞的氧化和捕获的研究进展[J].动力工程学报,2014,34(5):337-345. YANG Jianping,ZHAO Yongchun,ZHANG Junying,et al. Research process on mercury oxidation and capture with fly ash of coal-fired power plant[J].Journal of Chinese Society of Power Engineering,2014,34(5):337-345.
[21] SENIOR C L,SAROFIM A F,ZENG T,et al. Gas-phase transformations of mercury in coal-fired power plants[J]. Fuel Processing Technology,2000,63(2):197-213.
[22] CARPI A. Mercury from combustion sources:a review of the chemical species emitted and their transport in the atmosphere[J]. Water Air and Soil Pollution,1997,98:241-254.
[23] 王泉海,邱建荣,吴昊.硫元素对烟气中汞的形态和分布的影响[J].燃烧科学与技术,2003,9(2):135-138. WANG Quanhai,QIU Jianrong,WU Hao. Effect of sulfur on the speciation of mercury in flue gases[J].Journal of Combustion Science and Technology,2003,9(2):135-138.
[24] 陶叶,禚玉群,张亮,等. HCl与NO对汞氧化反应影响的实验研究[J]. 工程热物理学报,2010,31(2):355-359. TAO Ye,ZHOU Yuqun,ZHANG Liang,et al. Experimental investigation on the role of HCl and NO during mercury oxidation process[J]. Journal of Engineering Thermophysics,2010,31(2):355-359.
[25] WANG Yunjun,DUAN Yufeng,YANG Liguo,et al. Experimental study on mercury transformation and removal in coal-fired boiler flue gases[J]. Fuel Processing Technology,2009,90:643-651.
[26] WILCOX J,RUPP E,YING S C,et al. Mercury adsorption and oxidation in coal combustion and gasification processes[J]. International Journal of Coal Geology,2012,90/91:4-20.
[27] WIDMER N C,WEST J. Thermochemical study of mercury oxidation in utility boiler fuel gases[C]//Salt Lake City:Air and Waste Management Association,2000.
[28] MURAKAMI A,UDDIN M A,OCHIAI R,et al. Study of the mercury sorption mechanism on activated carbon in coal combustion flue gas by the temperature-programmed decomposition desorption technique[J]. Energy and Fuels,2010,24:4241-4249.
[29] ZHOU J,LUO Z. Factors impacting gaseous mercury speciation in postcombustion[J]. Energy Fuels,2006,21(2):491-495.
[30] 王波,池涌,严建华,等. CO在H2/Cl2/O2/N2混合气体中氧化的动力学模拟[J]. 浙江大学学报(工学版),2010,44(3):612-618. WANG Bo,CHI Yong,YAN Jianhua,et al. Kinetic modeling of CO oxidation in H2/Cl2/O2/N2 mixture[J]. Journal of Zhejiang University (Engineering Science),2010,44(3):612-618.
[31] XU Minghou,QIAO Yu,ZHENG Chuguang,et al. Modeling of homogeneous mercury speciation using detailed chemical kinetics[J]. Combustion and Flame,2003,132:208-218. |