Qianyun Chang
Zhejiang University
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Featured researches published by Qianyun Chang.
Journal of The Air & Waste Management Association | 2017
Zhengda Yang; Chenghang Zheng; Qianyun Chang; Yi Wan; Yi Wang; Xiang Gao; Kefa Cen
ABSTRACT Electrostatic precipitation is considered as an effective technology for fine particle removal. A lab-scale wet electrostatic precipitator (ESP) with wire-to-plate configuration was developed to study particle migration and collection. The performance of the wet ESP was evaluated in terms of the corona discharge characteristics, total removal efficiency and fractional removal efficiency. The corona discharge characteristics and particle removal abilities of the wet ESP were investigated and compared with dry ESP. Particle removal efficiency was influenced by discharge electrode type, SO2 concentration, specific collection area (SCA) and particle/droplet interaction. Results showed that the particle removal efficiency of wet ESP was elevated to 97.86% from 93.75% of dry ESP. Three types of discharge electrodes were investigated. Higher particle removal efficiency and larger migration velocity could be obtained with fishbone electrode. Particle removal efficiency decreased by 2.87% when SO2 concentration increased from 0 ppm to 43 ppm as a result of the suppression of corona discharge and particle charging. The removal efficiency increased with higher SCA, but it changed by only 0.71% with the SCA increasing from 25.0 m2/(m3/s) to 32.5 m2/(m3/s). Meanwhile, the increasing of particle and droplet concentration was favorable to the particle aggregation and improved particle removal efficiency. Implications: This work tends to study the particle migration and collection under spraying condition. The performance of a wet electrostatic precipitator (ESP) is evaluated in terms of the corona discharge characteristics, total particle removal efficiency, and fractional particle removal efficiency. The effects of water droplets on particle removal, especially on removal of particles with different sizes, is investigated. The optimization work was done to determine appropriate water consumption, discharge electrode type, and specific collection area, which can provide a basis for wet ESP design and application.
RSC Advances | 2018
Zhengda Yang; Chenghang Zheng; Xuefeng Zhang; Qianyun Chang; Weiguo Weng; Yi Wang; Xiang Gao
Eliminating sulfuric acid aerosol from flue gas is of vital importance to improve air quality. In this paper, a wet electrostatic precipitator (WESP) assisted with novel pre-charger was proposed to efficiently remove sulfuric acid aerosol. Parameters including residence time, gas temperature and SO3 concentration were studied to find the key factors influencing sulfuric acid aerosol removal. Results showed that the removal efficiency of sulfuric acid aerosol increased with the increasing residence time and the decreasing gas temperature. The maximum corona current was reduced from 0.79 to 0.28 mA when the SO3 concentration increased from 0 to 25 ppm, and the removal efficiency also decreased with the increasing SO3 concentration. A novel perforated pre-charger was designed to improve the WESP performance for sulfuric acid aerosol removal. With assistance of the pre-charger, the removal efficiency was improved from 90.3 to 95.8%, and the corresponding emission concentration was lower than 2 mg m−3. Moreover, the removal efficiency could be further improved to 97.8% with a heat exchanger, and the corresponding emission concentration could be lower than 1 mg m−3.
Journal of Industrial and Engineering Chemistry | 2014
Chenghang Zheng; Xinbo Zhu; Xiang Gao; Lu Liu; Qianyun Chang; Zhongyang Luo; Kefa Cen
Fuel | 2017
Qianyun Chang; Chenghang Zheng; Zhengda Yang; Mengxiang Fang; Xiang Gao; Zhongyang Luo; Kefa Cen
Energy & Fuels | 2017
Chenghang Zheng; Zhiyang Shen; Qianyun Chang; Qiufeng Su; Xinbo Zhu; Xiang Gao
Aerosol and Air Quality Research | 2015
Qianyun Chang; Chenghang Zheng; Xiang Gao; Pen-Chi Chiang; Mengxiang Fang; Zhongyang Luo; Kefa Cen
Powder Technology | 2017
Chenghang Zheng; Zhiyang Shen; Pei Yan; Weizhuo Zhu; Qianyun Chang; Xiang Gao; Zhongyang Luo; Mingjiang Ni; Kefa Cen
Proceedings of the Combustion Institute | 2018
Chenghang Zheng; Xintao Liu; Xi Xu; Pei Yan; Qianyun Chang; Yi Wang; Xiang Gao
Aerosol and Air Quality Research | 2017
Chenghang Zheng; Qianyun Chang; Quanyang Lu; Zhengda Yang; Xiang Gao; Kefa Cen
Archive | 2011
Zengyi Ma; Jianhua Yan; Yong Chi; Yuehui Zhang; Yuanyuan Liu; Baizheng Li; Xiaodong Li; Yuqi Jin; Qunxing Huang; Fei Wang; Shengyong Lu; Jie Gao; Qianyun Chang; Lingcheng Yuan; Mingjiang Ni; Kefa Cen