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Titlebook: Non-Thermal Plasma Techniques for Pollution Control; Part B: Electron Bea Bernie M. Penetrante,Shirley E. Schultheis Conference proceedings

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发表于 2025-3-21 17:19:48 | 显示全部楼层 |阅读模式
书目名称Non-Thermal Plasma Techniques for Pollution Control
副标题Part B: Electron Bea
编辑Bernie M. Penetrante,Shirley E. Schultheis
视频video
丛书名称Nato ASI Subseries G:
图书封面Titlebook: Non-Thermal Plasma Techniques for Pollution Control; Part B: Electron Bea Bernie M. Penetrante,Shirley E. Schultheis Conference proceedings
描述Acid rain, global warming, ozone depletion, and smog are preeminent environmental problems facing the world today. Non-thermal plasma techniques offer an innovative approach to the solution of some of these problems. There are many types of non-thermal plasma devices that have been developed for environmental applications. The potential of these devices for the destruction of pollutants or toxic molecules has already been demonstrated in many contexts, such as nitrogen oxides (NOX) and sulfur dioxide (SO2) in flue gases, heavy metals and volatile organic compounds (VOCs) in industrial effluents, and chemical agents such as nerve gases. This book contains a comprehensive account of the latest developments in non-thermal plasma devices and their applications to the disposal of a wide variety of gaseous pollutants.
出版日期Conference proceedings 1993
关键词Elektronenstrahl-Processing; Luftverschmutzung; Plasmaphysik; Pollution Control; Pullution; Umweltve; elec
版次1
doihttps://doi.org/10.1007/978-3-642-78476-7
isbn_softcover978-3-642-78478-1
isbn_ebook978-3-642-78476-7Series ISSN 0258-1256
issn_series 0258-1256
copyrightSpringer-Verlag Berlin Heidelberg 1993
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Non-Thermal Plasma Techniques for Pollution Control978-3-642-78476-7Series ISSN 0258-1256
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Laboratory Studies of Plasmochemical Oxidation Process Energized by Pulsed Streamer Dischargesur investigations is the study and development of the technology of “small” gas purification of air flows from sulfur-organic and organic impurities characteristic of chemical, paper, etc. industries. In this case the energy value of the process is not so important as for large-tonnage processes characteristic of power engineering or metallurgy.
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Economics of the Electron Beam ProcessIn the past many cost analyses of the electron beam process have been made by various consultants, contractors and companies. It is extremely difficult to make comparisons of the various estimates because many different assumptions are made by the different people doing the estimates. One of the assumptions is always the cost of the accelerators.
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Industrial Application of Pulsed Corona Processing to Flue GasThe possibility of reducing nitrogen oxides content in combustion flue gas as a consequence of irradiation by UV light was observed in 1972. At the same time, preliminary experiments were performed in Japan that showed the possibility of removing sulfur oxides from the flue gas of oil combustion by electron beam irradiation.
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Pulsed Corona Discharge for Hydrogen Sulfide DecompositionHydrogen and fuel gas systems often contain hydrogen sulfide as an impurity, especially when derived from coal gasification. Hydrogen sulfide is usually present in concentrations up to a few percent by volume. The commercial use of such a gas calls for its desulfurization to the levels of 0.1 ppm (fuel cells) to 10 ppm (synthetic natural gas).
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https://doi.org/10.1007/978-3-642-78476-7Elektronenstrahl-Processing; Luftverschmutzung; Plasmaphysik; Pollution Control; Pullution; Umweltve; elec
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