Development of super-clean diesel engine and combustor using nonthermal plasma hybrid aftertreatment

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Abstract

One of important and successful environmental applications of atmospheric-pressure corona discharge or plasma is electrostatic precipitator (ESP), which have been widely used for coal- or oil-fired boilers in electric power plants and particulate matter control emitted from industries such as glass melting furnace system, etc. In the ESPs, steady high voltage is usually applied to a pair of electrodes (at least, one of these has sharp edge). Unsteady pulsed high voltage is often applied for the collection of high-resistivity particulate matter (PM) to avoid reverse corona phenomena which reduce the collection efficiency of the ESPs. It was found that unsteady high voltage can treat hazardous gaseous components (NOx, SOx, hydrocarbon, and CO, etc.) in the exhaust gas, and researches were shifted from PM removal to hazardous gases aftertreatment with unsteady corona discharge induced plasmas. In the paper, recent results on diesel engine and industrial boiler emission controls are mainly reviewed among these our research topics.

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APA

Okubo, M. (2015). Development of super-clean diesel engine and combustor using nonthermal plasma hybrid aftertreatment. In Journal of Physics: Conference Series (Vol. 646). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/646/1/012051

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