Journal of Shandong University(Engineering Science) ›› 2020, Vol. 50 ›› Issue (6): 118-128.doi: 10.6040/j.issn.1672-3961.0.2019.574
WANG Lei1, LI Mingzhen2, WANG Xiang3*
CLC Number:
[1] 闫克平, 李树然, 冯卫强, 等. 高电压环境工程应用研究关键技术问题分析及展望[J]. 高电压技术, 2015, 41(8): 2528-2544. YAN Keping, LI Shuran, FENG Weiqiang, et al. Analysis and prospect on key technology of high-voltage discharge for environmental engineering study and application[J]. High Voltage Engineering, 2015, 41(8): 2528-2544. [2] 徐纯燕, 常景彩, 王翔, 等. 亲水改性碳钢极板用于PM2.5脱除[J]. 化工学报, 2016, 67(10): 4446-4454. XU Chunyan, CHANG Jingcai, WANG Xiang, et al. Experimental study of PM2.5 removal using hydrophilic modified carbon steel collector[J]. CIESC Journal, 2016, 67(10): 4446-4454. [3] JAWOREK A, KRUPA A, CZECH T. Modern electrostatic devices and methods for exhaust gas cleaning: a brief review[J]. Journal of Electrostatics, 2007, 65(3): 133-155. [4] 邓云峰, 刘功智, 张国权. 宽间距长芒刺静电除尘技术的应用[J]. 中国安全科学学报, 2004, 13(10): 41-44. DENG Yunfeng, LIU Gongzhi, ZHANG Guoquan. Application of electrostatic precipitators with wider electrode spacing and longer discharge spine electrode[J]. China Safety Science Journal, 2004, 13(10): 41-44. [5] 党小庆, 杨春方, 王迪, 等. 电除尘器收尘极板表面电流密度分布实验研究[J]. 重型机械, 2005(2): 32-35. DANG Xiaoqing, YANG Chunfang, WANG Di, et al. Experiment on current density distribution on plate of different combinations of discharge electrodes with collecting plates[J]. Heavy Machinery, 2005(2): 32-35. [6] 王翔, 常景彩, 徐纯燕, 等. 线-板式静电除尘器芒刺电极放电特性[J]. 高电压技术, 2017, 43(2): 533-540. WANG Xiang, CHANG Jingcai, XU Chunyan, et al. Discharge characteristic of barbed electrodes in wire-plate electrostatic precipitator[J]. High Voltage Engineering, 2017, 43(2): 533-540. [7] 胡满银, 高香林, 胡志光, 等. 电极结构对放电性能影响的试验研究[J]. 华北电力学院学报, 1988(4): 009. HU Manyin, GAO Xianglin, HU Zhiguang, et al. Research on discharge performances of corona wires in electrostatic precipitators[J]. Journal of North China Institute of Electric Power, 1988(4): 009. [8] 郭尹亮,向晓东,陈宝智.芒刺-板式电除尘器收尘极板电流密度分布规律研究[J].安全与环境学报,2008,8(6):53-56. GUO Yinliang, XIANG Xiaodong, CHEN Baozhi. Investigation of the current density distribution regularity in a nail-plate ESP[J]. Journal of Safety and Environment, 2008, 8(6): 53-56. [9] MCKINNEY P J, DAVUDSON J H, LEONE D M. Current distributions for barbed plate-to-plane coronas[J]. IEEE Transactions on Industry Applications, 1992, 28(6): 1424-1431. [10] GUO B Y, GUO J, YU A B. Simulation of the electric field in wire-plate type electrostatic precipitators[J]. Journal of Electrostatics, 2014, 72(4): 301-310. [11] 郭尹亮, 向晓东, 盖龄童. 芒刺电除尘器板电流密度分布及芒刺间距优化[J]. 高电压技术, 2010(4): 1021-1025. GUOYinlang, XIANG Xiaodong, GAI Lingtong. Experimental approach on current density distribution and optimizing distance of barb corona electrodes in ESP[J]. High Voltage Engineering, 2010(4): 1021-1025. [12] JEDRUSIK M, SWIERCZOK A. The correlation between corona current distribution and collection of fine particles in a laboratory-scale electrostatic precipitator[J]. Journal of Electrostatics, 2013, 71(3): 199-203. [13] JEDRUSIK M, SWIERCZOK A, TEISSEYRE R. Experimental study of fly ash precipitation in a model electrostatic precipitator with discharge electrodes of different design[J]. Powder Technology, 2003, 135: 295-301. [14] 徐明铭.空气湿度对直流电晕放电影响的研究[D].济南:山东大学,2014. XU Mingming. Study on influences of air humidity on direct current corona discharge[D]. Jinan: Shandong University, 2014. [15] BESSIERES D, PAILLOL J, SOULEM N. Negative corona triggering in air[J]. Journal of Applied Physics, 2004, 95(8): 3943-3951. [16] BAYLESS D J, ALAM M K, RADCLIFF R, et al. Membrane-based wet electrostatic precipitation[J]. Fuel Processing Technology, 2004, 85(6): 781-798. [17] FLAGAN R C, SEINFELD J H. Fundamentals of air pollution engineering[M]. Chicago, USA: CRRC, 2012. [18] WHITE H J. Industrial electrostatic precipitation[M]. NewYork, USA: Wesley, 1963. [19] ZHUANG Y, KIM Y J, LEE T G, et al. Experimental and theoretical studies of ultra-fine particle behavior in electrostatic precipitators[J]. Journal of Electrostatics, 2000, 48(3): 245-260. [20] GOO J H, LEE J W. Monte-Carlo simulation of turbulent deposition of charged particles in a plate-plate electrostatic precipitator[J]. Aerosol Science and Technology, 1996, 25(1): 31-45. [21] IETAA C, KUCEROVSKY Z, GREASON W D. Current density modeling of a linear pin-plane array corona discharge[J]. Journal of Electrostatics, 2008, 66(11): 589-593. [22] 郭尹亮, 向晓东, 盖龄童. 芒刺电除尘器板电流密度分布及芒刺间距优化[J]. 高电压技术, 2010, 36(4): 1021-1025. GUO Yinliang, XIANG Xiaodong, GAI Lingtong. Experimental approach on current density distribution and optimizing distance of barb corona electrodes in ESP[J]. High Voltage Engineering, 2010, 369(4): 1021-1025. [23] 亢燕铭, 荣美丽, 沈恒根, 等. 空气净化过程中的电晕放电与离子风[J]. 自然杂志, 2002, 24(3): 125-129. KANG Yanming, RONG Meili, SHEN Henggen, el at. Corona discharge and ionic wind in air cleaning processes[J]. Chinese Journal of Nature, 2002, 24(3): 125-129. [24] DAVIDSON J H, SHAUGHNESSY E J. Turbulence generation by electric body forces[J]. Experiments in Fluids, 1986, 4(1): 17-26. [25] 王晓华. 静电场中水对颗粒物脱除增强机理与过程[D]. 北京: 清华大学, 2013. WANG Xiaohua. Enhancement mechanism and process of water on particle removal in electrostatic filed[D]. Beijing: Tsinghua University, 2011. [26] 常景彩. 柔性集尘极应用于燃煤脱硫烟气深度净化的试验研究[D]. 济南: 山东大学, 2011. CHANG Jingcai. Experimental study on flexible collection electrode applied in advanced purification for coal-fired flue gas following WFGD[D]. Jinan: Shandong University, 2011. [27] 熊桂龙, 李水清, 陈晟, 等. 增强PM2.5脱除的新型电除尘技术的发展[J]. 中国电机工程学报, 2015, 35(9): 2217-2223. XIONG Guilong, LI Shuiqing, CHEN Shen, el at. Development of advanced electrostatic precipitation technologies for reducing PM2.5 emissions from coal-fired power plants[J]. Proceedings of the CSEE, 2015, 35(9):2217-2223. |
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