[1] 欧阳丽华, 庄烨, 刘科伟, 等. 燃煤电厂湿烟囱降雨成因分析[J]. 环境科学, 2015, 36(6):1975-1982 OUYANG Lihua, ZHUANG Ye, LIU Kewei, et al. Analysis on mechanism of rainout carried by wet stack of thermal power plant[J]. Environmental Science, 2015, 36(6):1975-1982 [2] 周洪光. 如何正确认识火电厂湿烟气排放及白雾现象[J]. 环境工程, 2015, 33(增刊1):433-437. ZHOU Hongguang. A correct understanding of the wet flue gas emission and white spray phenomenon in coal-fired power plants[J]. Environmental Engineering, 2015, 33(S1):433-437. [3] 叶毅科, 惠润堂, 杨爱勇, 等. 燃煤电厂湿烟羽治理技术研究[J]. 电力科技与环保, 2017, 33(4):32-35 YE Yike, HUI Runtang, YANG Aiyong, et al. Technical research of wet plume control in coal-fired power plant[J]. Electric Power Technology and Environmental Protection, 2017, 33(4):32-35 [4] 刘志坦, 惠润堂, 杨爱勇, 等. 燃煤电厂湿烟羽成因及对策研究[J]. 环境与发展, 2017, 29(10):43-46 LIU Zhitan, HUI Runtang, YANG Aiyong, et al. Research on causes and countermeasures of the wet plume in coal-fired power plant[J]. Environment and Development, 2017, 29(10):43-46 [5] 李森, 余娟丽, 惠世恩, 等. 湿法脱硫系统中烟气排放问题的探讨[J]. 热力发电, 2003(11):2-5, 97 LI Sen, YU Juanli, HUI Shien, et al. An approach to the gas discharge problem of wet FGD system[J]. Thermal Power Generation, 2003(11):2-5, 97 [6] 马修元, 惠润堂, 杨爱勇. 湿烟羽消散技术对污染物扩散特性的影响[J]. 环境工程技术学报, 2017, 7(5):533-538 MA Xiuyuan, HUI Runtang, YANG Aiyong. Effects of wet plume elimination technology on pollutants diffusion[J]. Journal of Environmental Engineering Technology, 2017, 7(5):533-538 [7] 朱法华, 李军状, 马修元, 等. 清洁煤电烟气中非常规污染物的排放与控制[J]. 电力科技与环保, 2018, 34(1):23-26 ZHU Fahua, LI Junzhuang, MA Xiuyuan, et al. Emission and control of unconventional pollutants in the clean coal power flue gas[J]. Electric Power Technology and Environmental Protection, 2018, 34(1):23-26 [8] SHI J W, DENG H, BAI Z P, et al. Emission and profile characteristic of volatile organic compounds emitted from coke production, iron smelt, heating station and power plant in Liaoning Province, China[J]. Science of the Total Environment, 2015, 515/516:101-108. [9] PUDASAINEE D, KIM J H, LEE S H, et al. Hazardous air pollutants emission from coal and oil-fired power plants[J]. Asia-Pacific Journal of Chemical Engineering, 2010, 5(2):299-303. [10] GARCIA J P, BEYNE-MASCLET S, MOUVIER G, et al. Emissions of volatile organic compounds by coal-fired power stations[J]. Atmospheric Environment Part A General Topics, 1992, 26(9):1589-1597. [11] FERNÁNDEZ-MARTÍNEZ G, LÓPEZ-VILARIÑO J M, LÓPEZ-MAHÍA P, et al. Determination of volatile organic compounds in emissions by coal-fired power stations from Spain[J]. Environmental Technology, 2001, 22(5):567-575. [12] MOREIRA DOS SANTOS C Y, DE ALMEIDA AZEVEDO D, DE AQUINO NETO F R. Atmospheric distribution of organic compounds from urban areas near a coal-fired power station[J]. Atmospheric Environment, 2004, 38(9):1247-1257. [13] 翟尚鹏, 黄丽娜, 曾艳. 湿法脱硫净烟气再热技术的应用[J]. 环境工程, 2015, 33(8):52-55 ZHAI Shangpeng, HUANG Lina, ZENG Yan. Application of clean flue gas reheat technology in the wet desulfurization[J]. Environmental Engineering, 2015, 33(8):52-55 [14] LI S, MORADI A, VICKERS B, et al. Cooling tower plume abatement using a coaxial plume structure[J]. International Journal of Heat and Mass Transfer, 2018, 120:178-193. [15] CIZEK J, GEMPERLE J, STROB M, et al. Cooling tower plume-model and experiment[C]//EPJ Web of Conferences. EDP Sciences, 2017, 143:02015. [16] TAKATA K, MICHIOKA T, KUROSE R. Prediction of a visible plume from a dry and wet combined cooling tower and its mechanism of abatement[J]. Atmosphere, 2016, 7(4):59. [17] WANG S W, TYAGI S K, SHARMA A, et al. Application of solar collectors to control the visible plume from wet cooling towers of a commercial building in Hong Kong:A case study[J]. Applied Thermal Engineering, 2007, 27(8/9):1394-1404. [18] CÁRDENAS B, GARVEY S D, KANTHARAJ B, et al. Gas-to-gas heat exchanger design for high performance thermal energy storage[J]. Journal of Energy Storage, 2017, 14:311-321. [19] 舒喜, 杨爱勇, 叶毅科, 等. 冷凝再热复合技术应用于燃煤电厂湿烟羽治理的可行性分析[J]. 环境工程, 2017, 35(12):82-85, 91 SHU Xi, YANG Aiyong, YE Yike, et al. Feasibility analysis of the condensation and reheating composite technology applied to the wet plume control in coal fired power plant[J]. Environmental Engineering, 2017, 35(12):82-85, 91 [20] 王丰吉, 尤良洲, 朱跃, 等. 冷凝式除雾器在脱硫系统中的应用及性能评价[J]. 中国电力, 2018, 51(4):143-148 WANG Fengji, YOU Liangzhou, ZHU Yue, et al. Application and performance evaluation of condensed mist eliminator in desulphurization system[J]. Electric Power, 2018, 51(4):143-148 [21] 谭厚章, 熊英莹, 王毅斌, 等. 湿式相变凝聚器协同多污染物脱除研究[J]. 中国电力, 2017, 50(2):128-134 TAN Houzhang, XIONG Yingying, WANG Yibin, et al. Study on synergistic removal of multi-pollutants by WPTA[J]. Electric Power, 2017, 50(2):128-134
|