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Diesel emission control system using combined process of nonthermal plasma and exhaust gas components' recirculation

机译:结合非热等离子体和废气成分再循环的柴油机排放控制系统

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摘要

A NO_x aftertreatment system, using nonthermal plasma (NTP) reduction and exhaust gas components' recirculation, is investigated. A pilot-scale system is applied to a stationary diesel engine. In this system, NO_x is first removed by adsorption, and subsequently, the adsorbent is regenerated by thermal desorption. NO_x desorbed is reduced by using nitrogen NTP. Moreover, NO_x, CO_2, and water vapor recirculated into the engine intake reduce NO_x. In this study, approximately 57% of the NO_x of the exhaust (NO_x: 240-325 ppm, flow rate = 300 NL/min) can be continuously treated for 58 h. A system energy efficiency of 120 g (NO_2)/kWh is obtained.
机译:研究了使用非热等离子体(NTP)还原和废气组分再循环的NO_x后处理系统。中试规模的系统应用于固定式柴油发动机。在该系统中,首先通过吸附去除NO_x,然后通过热脱附再生吸附剂。通过使用氮NTP减少了脱附的NO_x。此外,NO_x,CO_2和再循环到发动机进气口的水蒸气会减少NO_x。在这项研究中,可以连续处理废气中约57%的NO_x(NO_x:240-325 ppm,流量= 300 NL / min)。系统能量效率为120 g(NO_2)/ kWh。

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