[1] S?B? A, POPEK R, NAWROT B, et al. Plant species differences in particulate matter accumulation on leaf surfaces[J]. Science of the Total Environment, 2012, 427-428(5): 347-354.
[2] HOYLE C R, BOY M, DONAHUE N M, et al. A review of the anthropogenic influence on biogenic secondary organic aerosol[J]. Atmospheric Chemistry & Physics, 2011, 11(1): 321-343.
[3] DZIERZANOWSKI K, POPEK R, GAWRO?SKA H, et al. Deposition of particulate matter of different size fractions on leaf surfaces and in waxes of urban forest species[J]. International Journal of Phytoremediation, 2011, 13(10): 1037-1046.
[4] SHAUGHNESSY W J, VENIGALLA M M, TRUMP D. Health effects of ambient levels of respirable particulate matter (PM) on healthy, young-adult population[J]. Atmospheric Environment, 2015, 123: 102-111.
[5] BAULIG A, SOURDEVAL M, MEYER M, et al. Biological effects of atmospheric particles on human bronchial epithelial cells. Comparison with diesel exhaust particles[J]. Toxicology in Vitro, 2003, 17(5/6): 567-573.
[6] 戴海霞, 宋伟民, 高翔, 等. 上海市A城市大气PM10.0、PM2.5污染与居民死亡数的相关性[J]. 卫生研究, 2004, 33(3): 293-297.
[7] 侯力强, 张小庆, 卢文静, 等. 金属纤维毡在高温除尘上的性能测试与分析[J]. 过滤与分离, 2016, 26(1): 28-32.
[8] 水甜甜, 沈恒根, 杨学宾, 等. 驻极体空气过滤器对办公环境PM2.5的净化效果[J]. 环境工程学报, 2015, 9(6): 2933-2940.
[9] DEY L, VENKATARAMAN C. A wet electrostatic precipitator (WESP) for soft nanoparticle collection[J]. Aerosol Science & Technology, 2012, 46(7): 750-759.
[10] LEE J K, KIM S C, SHIN J H, et al. Performance evaluation of electrostatically augmented air filters coupled with a corona charger[J]. Aerosol Science Technology, 2001, 35(4): 785-791.
[11] KIM H J, HAN B, KIM Y J, et al. Fine particle removal performance of a two stage wet electrostatic precipitator using a nonmetallic pre-charger[J]. Journal of the Air & Waste Management Association, 2011, 61(12): 1334-1343.
[12] KIM H J, HAN B, KIM Y J, et al. Characteristics of an electrostatic precipitator for submicron particles using non-metallic electrodes and collection plates[J]. Journal of Aerosol Science, 2010, 41(11): 987-997.
[13] 夏钟福. 驻极体[M]. 北京: 科学出版社, 2001.
[14] 周刘轲, 沈恒根, 马欢, 等. 风机盘管回风口加装驻极体过滤器过滤PM2.5性能分析[J]. 环境工程学报, 2017, 11(1): 432-438.
[15] 黄翔, 顾群, 吴生. 聚合物驻极体过滤材料(器)在空调中的应用[J]. 洁净与空调技术, 2003(4): 38-42.
[16] LI K, JO Y M. Dust collection by a fiber bundle electret filter in an MVAC system[J]. Aerosol Science & Technology, 2010, 44(7): 578-587.
[17] PARK H, KIM W, JO Y. Field application of a double filtration process to control fine dust in a metro subway station[J]. Journal of Korean Society for Atmospheric Environment, 2013, 29(5): 625-633.
[18] NOH K C, LEE J H, KIM C, et al. Filtration of submicron aerosol particles using a carbon fiber ionizer-assisted electret filter[J]. Aerosol & Air Quality Research, 2011, 11(7): 811-821.
[19] NOH K C, PARK J H, JUNG Y K, et al. Characteristics of submicron-sized aerosol filtration and pressure drop of an electret filter installed in an air diffuser in a residential apartment unit[J]. Aerosol & Air Quality Research, 2011, 11(1): 80-89.
[20] EFIMOV A A, IVANOV V V, VOLKOV I A, et al. Filtration of nanosized particle aerosols by electret fibrous filters[J]. Nanotechnologies in Russia, 2013, 8(11/12): 789-798.
[21] 胡笙坚. 摩擦带电机理的探讨和静电带电量的测量[J]. 铁道科学与工程学报, 1988(2): 94-101.
[22] 章新喜, 段超红, 于凤芹, 等. 微粉煤的电性质及摩擦带电研究[J]. 中国矿业大学学报, 2005, 34(6): 694-697.