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学习优化
第476期“工物学术论坛”:Combining mechanistic models and data-driven algorit...
Conversion of Biomass into Useful Chemicals and Biofuel
Publishing with Chem from Cell Press(腾讯会议:389-181-164)
报告题目:
Recent development of advanced electrostatic precipitator
 报告人:
CHANG, Jen-Shih
Professor Emeritus
Engineering Physics, McMaster University, Canada
报告时间:
2009-03-19 10:00
报告地点:
热能工程系报告厅
主办单位:
热能系
  简介:

     Air pollution can be composed of many materials, such as: particulate matter (PM); acid gases such as SOx, NOx, HCl, etc.; greenhouse gases such as COx, NxOy, PFC’s, etc.; ozone depletion substances such as Freon, Halon, etc.; volatile organic compounds such as TCE, TCA, toluene, xylene, etc.; and toxic gases such as Hg, dioxins, etc. These pollutants normally are mixed. To eliminate them, an integrated system is currently used, depending on a fuel used or combustion sources or composition of wastes in incinerators. For PM, new guidelines will be changed from the existing PM10 to PM2.5 within the next few years, hence, all electrostatic precipitator (ESP) designs must be adjusted to the new emission limits. In this work, a advance industrial ESP will be introduced for the conversion of existing PM10 ESP to PM2.5 ESP as well as the optimization code for the design of advanced electrostatic precipitation techniques based on multi-stage ESPs and an ESP integrated to gaseous pollution control systems.

 

演讲人简介:

Professor Jen-Shih Chang is an outstanding scientist who has been working on the pollution control technology for more than  35 years. His research include the following topics: advanced electrostatic precipitator, plasma pollution control technology, electrohydrodynamics. He has published more than 300 scientific journal papers and 500 conference papers on these topics. He is now the co-editor of International J. Plasma Environmental Science and Technology, Int. Editorial Advisory Board, Trans. Inst. Fluid Machinery and the chair of the IEEE Dielectrics and Elect. Insul. Soc., EHD Technical Committee. And he has owned many awards, such as the Outstanding Contribution Award by IEEE DEIS Electrohydrodynamics Technical Committee and the Most Innovative Paper Award, IEEE Industrial Application Soc.
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