[1] 王临清, 朱法华, 赵秀勇. 燃煤电厂超低排放的减排潜力及其PM2.5环境效益[J]. 中国电力, 2014, 47(11):150-154. WANG Linqing, ZHU Fahua, ZHAO Xiuyong. Potential capabilities of pollutant reduction and environmental benefits from ultra-low emissions of coal-fired power plants[J]. Electric Power, 2014, 47(11):150-154. [2] OH E K, JUNG G H, KIM S G, et al. Effect of initial droplet size distribution on sulfur removal efficiency in FGD/SDA[J]. Korean Journal of Chemical Engineering, 1999, 16(3):292-297. [3] 中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会. 燃煤烟气脱硫设备性能测试方法(附录D:烟气中浆液滴含量的测试):GB/T 21508-2008[S]. 2008. [4] 何仰朋, 陶明, 石振晶, 等. 喷淋脱硫塔内除雾器运行特性[J]. 中国电力, 2015, 48(7):124-128. HE Yangpeng, TAO Ming, SHI Zhenjing, et al. Operating characteristics of mist eliminator in desulfurization spray tower[J]. Electric Power, 2015, 48(7):124-128. [5] 蒯继玺. 脱硫塔高效除雾技术的研究[D]. 保定:华北电力大学, 2013. [6] 黄新长. 脱硫除雾器性能实验研究与优化设计[D]. 北京:华北电力大学, 2010. [7] 樊雄伟. 用烟尘测试法测定除雾器出口烟气中浆液滴含量[J]. 广西电力, 2009, 32(4):53-55. FAN Xiongwei. Measurement of droplet quantity in the outlet gas of demister based on smoke and dust measurement method[J]. Guangxi Electric Power, 2009, 32(4):53-55. [8] 张军梅. 提高电站湿法脱硫系统效率及可靠性的几点措施[J]. 中国电力, 2013, 46(5):13-17. ZHANG Junmei. Several measures of improving the efficiency and reliability of FGD system in power plant[J]. Electric Power, 2013, 46(5):13-17. [9] 郭彦鹏, 潘丹萍, 杨林军. 湿法烟气脱硫中石膏雨的形成及其控制措施[J]. 中国电力, 2014, 47(3):152-154. GUO Yanpeng, PAN Danping, YANG Linjun. Formation and control of gypsum rain in wet flue gas desulfurization[J]. Electric Power, 2014, 47(3):152-154. [10] 梁磊. 火电厂脱硫系统石膏脱水困难案例分析及对策[J]. 中国电力, 2013, 46(1):99-106. LIANG Lei. Case analysis and solutions of gypsum dewatering for FGD systems of power plants[J]. Electric Power, 2013, 46(1):99-106. [11] 贾西部, 金万元, 李兴华, 等. 石灰石-石膏湿法烟气脱硫系统浆液气泡原因分析[J]. 中国电力, 2015, 48(9):157-160. JIA Xibu, JIN Wanyuan, LI Xinghua, et al. Cause analysis on slurry foaming in wet limestone-gypsum flue gas desulfurization system[J]. Electric Power, 2015, 48(9):157-160. [12] 魏宏鸽, 叶伟平, 柴磊, 等. 湿法脱硫系统除尘效果分析与提效措施[J]. 中国电力, 2015, 48(8):33-36. WEI Hongge, YE Weiping, CHAI Lei, et al. Analysis of dust removal effect in wet-FGD system and its efficiency-enhancement techniques[J]. Electric Power, 2015, 48(8):33-36. [13] 查钰明, 钟文琦, 杜双伟, 等. 用镁离子法测定烟气脱硫系统除雾器出口雾滴质量浓度的实践[J]. 发电设备, 2013, 27(6):440-442. ZHA Yuming, ZHONG Wenqi, DU Shuangwei, et al. Measurement of moisture concentration at mist eliminator outlet of FGD system based on magnesium ion testing[J]. Power Equipment, 2013, 27(6):440-442. [14] 李朋, 丁立萍, 李睿, 等. 湿法脱硫工艺对电厂烟气颗粒物排放的影响研究[J]. 中国电力, 2017, 50(9):105-110, 184. LI Peng, DING Liping, LI Rui, et al. Study on the effect of wet flue gas desulphurization (WFGD) technology on flue gas particle emission from power plants[J]. Electric Power, 2017, 50(9):105-110, 184. [15] 李森, 周屈兰, 徐通模, 等. 镁离子法测定除雾器出口烟气携带液滴量方法[J]. 热能动力工程, 2005, 20(4):381-383. LI Sen, ZHOU Qulan, XU Tongmo, et al. The use of magnesium ion method for the determination of droplet quantity entrained by flue gas at the outlet of a demister[J]. Journal of Engineering for Thermal Energy and Power, 2005, 20(4):381-383. |