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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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0258-1256 ques 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 i
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The History of Electron Beam Processing for Environmental Pollution Control and Work Performed in thcids. In the presence of ammonia (NH.), these acids are converted to ammonium sulfate (NH.).SO. and ammonium sulfate nitrate (NH.).SO.-2NH.NO.. Other organic compounds can also be treated using the same principles.
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Report on Novel Dry DeNOx/DeSOx Technology for Cleaning Combustion Gases from Utility Thermal Power Corona Induced Plasma Chemical Process (PPCP), and make an economical comparison between these three processes based on data available at this time. Another target of the studies was to make clear the problems anticipated in the development of PPCP to large scale technology, and to find out the technical solutions to these problems.
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Removal of Volatile Hydrocarbons from Industrial Off-Gasrmany (West) will be reduced by 37–44% from 2.45 Mio. to/a (1986) down to 1.36–1.55 Mo. to/a in 1998. On the other hand, it has been estimated that a European-wide 80–90% reduction of VOC and NO. emissions will be required in the future to tackle efficiently the ground level ozone pollution.
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Conference proceedings 1993 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 con
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Application of E-Beam Treatment to Flue Gas Cleanup in Japanntilation gas treatment, incinerator flue gas treatment and the treatment of gases containing various kinds of volatile organic compounds (VOCs). In order to achieve these objectives, we are now conducting three pilot plant projects in Japan. In this paper, we will discuss the details of these projects and some test results.
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Destruction of Gaseous Pollutants and Air Toxics by Surface Discharge Induced Plasma Chemical Procesverting them into solid particulate (e.g. Hg-vapor into HgO or HgCl.), gas-to-liquid conversion (control of SO. by converting into SO. and further into H.SO. droplets), and of course, gas-to-gas conversion (NO to NO. or to N. and O., decomposition of freons, trichloroethane, trichloroethylene, toluene and many other air toxics).
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Decomposition of Volatile Organic Compounds by a Packed-Bed Reactor and a Pulsed-Corona Plasma Reactcal limitations. For these reasons, an alternating current (ac) energized ferroelectric packed-bed reactor and a nanosecond pulsed-corona reactor have been investigated as alternative technical approaches to control these pollutants at parts per million (ppm) levels.
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Conference proceedings 1993s, 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.
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