Citation: | TAO Wei, XU Chao, ZHONG Zhao-ping. EXPERIMENTAL STUDY ON ACOUSTIC AGGLOMERATION AND COMBINED SPRAY OPTIMIZATION OF FINE PARTICLES AT LOW CONCENTRATION[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(10): 162-168,127. doi: 10.13205/j.hjgc.202010026 |
侯大伟,潘丹萍,周心澄,等. 石灰石-石膏法脱硫过程中浆液雾化夹带与细颗粒排放的关系[J]. 化工学报,2018,69(4):1714-1722.
|
昌艳萍,耿超,李春蕾,等. 大气中PM2.5的现状分析及新的思考[J]. 环境科学与技术,2012,35(增刊1):151-154.
|
朱逢豪,李成,柳树成,等. 北京市PM2.5的研究进展[J]. 环境科学与技术,2012,35(增刊2):152-155.
|
DAVID Y H, CHEN S C, ZUO Z L. PM2.5 in China:measurements, sources, visibility and health effects, and mitigation[J]. Particuology, 2014, 13(2):1-26.
|
刘建忠,范海燕,周俊虎,等. 煤粉炉PM10/PM2.5排放规律的试验研究[J]. 中国电机工程学报,2003,23(1):146-150.
|
杨林军,赵兵,姚刚,等. 燃烧源可吸入颗粒物声波团聚研究进展与展望[J]. 洁净煤技术, 2007,13(5):41-45.
|
SHENG C D, SHEN X L. Simulation of acoustic agglomeration processes of poly-disperse solid particles[J]. Aerosol Science and Technology, 2007, 41(1):1-13.
|
SARABIA R F D, GALLEGO-JUÁREZ J A, ACOSTA-APARICIO V M, et al. Acoustic agglomeration of submicron particles in diesel exhausts:first results of the influence of humidity at two acoustic frequencies[J]. Journal of Aerosol Science, 2000, 31:827-828.
|
姚刚,赵兵,沈湘林. 燃煤可吸入颗粒物声波团聚效果的实验研究和数值分析[J]. 热能动力工程,2006,21(2):175-178.
|
陈厚涛,赵兵,徐进,等. 燃煤飞灰超细颗粒物声波团聚清除的实验研究[J]. 中国电机工程学报,2007,27(35):28-32.
|
颜金培,陈立奇,杨林军. 燃煤细颗粒在过饱和氛围下声波团聚脱除的实验研究[J]. 化工学报,2014,65(8):3243-3249.
|
YAN J P,CHEN L Q,LIN Q. Removal of fine particles in WFGD system using the simultaneous acoustic agglomeration and supersaturated vapor condensation[J]. Powder Technology, 2017,315(35):106-113.
|
张光学,刘建忠,周俊虎,等. 燃煤飞灰低频下声波团聚的实验研究[J]. 化工学报,2009,60(4):1001-1006.
|
张光学,刘建忠,周俊虎,等. 频率对燃煤飞灰声波团聚影响的模型及实验验证[J]. 中国电机工程学报,2009,29(17):97-102.
|
ZHANG G X, WANG J Q, CHI Z H, et al. Acoustic agglomeration with addition of sprayed liquid droplets:three-dimensional discrete element modeling and experimental verification[J]. Chemical Engineering Science, 2018, 187:342-353.
|
王洁,张光学,刘建忠,等. 种子颗粒对声波团聚效率的影响[J]. 化工学报,2011,62(2):355-361.
|
ZHOU D, LUO Z Y, JIANG J, et al. Experimental study on improving the efficiency of dust removers by using acoustic agglomeration as pretreatment[J]. Powder Technology, 2016, 289(1):52-59.
|
姚刚. 燃烧源可吸入颗粒物声波团聚研究进展与展望[J]. 洁净煤技术,2007,13(5): 41-45.
|
陈厚涛,赵兵,章汝心,等. 声波与雾化水滴联合作用增强燃煤PM2.5脱除的实验研究[J]. 中国电机工程学报,2009,29(2):35-40.
|
ZHANG G X, ZHANG L L, WANG J, et al. Improving acoustic agglomeration efficiency by addition of sprayed liquid droplets[J]. Powder Technol, 2017,317: 181-188.
|
ZHANG G X, ZHOU T T, ZHANG L L, et al. Improving acoustic agglomeration efficiency of coal-fired fly-ash particles by addition of liquid binders[J]. Chemical Engineering Journal,2018, 334: 891-899.
|
陈厚涛,赵兵,徐进,等. 燃煤飞灰超细颗粒物声波团聚清除的实验研究[J]. 中国电机工程学报,2007,27(35):28-32.
|