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Performance Evaluation of Nonthermal Plasma Reactors for NO Oxidation in Diesel Engine Exhaust Gas Treatment

机译:非热等离子体反应器在柴油机废气处理中氧化NO的性能评估

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The discharge plasma-chemical hybrid process for NO{sub}x, removal from the flue gas emissions is an extremely effective and economical approach in comparison with the conventional selective catalytic reduction system. In this paper we bring out a relative comparison of several discharge plasma reactors from the point of NO removal efficiency. The reactors were either energized by ac or by repetitive pulses. Ferroelectric pellets were used to study the effect of pellet assisted discharges on gas cleaning. Diesel engine exhaust, at different loads, is used to approximately simulate the flue gas composition. Investigations were carried out at room temperature with respect to the variation of reaction products against the discharge power. Main emphasis is laid on the oxidation of NO to NO{sub}2, without reducing NO{sub}x, concentration (i.e., minimum reaction byproducts), with least power consumption. The produced NO{sub}2 will be totally converted to N{sub}2 and Na{sub}2SO{sub}4 using Na{sub}2SO{sub}3. The ac packed-bed reactor and pelletless pulsed corona reactor showed better performance, with minimum reaction products for a given power, when the NO concentration was low (~100 ppm). When the engine load exceeds 50% ( NO > 300 ppm) there was not much decrease in NO reduction and more or less all the reactors performed equally. The total operating cost of the plasma-chemical hybrid system becomes
机译:与常规的选择性催化还原系统相比,从烟气排放中去除NO {sub} x的放电等离子体化学混合工艺是一种极为有效且经济的方法。本文从NO去除效率的角度对几个放电等离子体反应器进行了比较。通过交流电或重复脉冲为电抗器供电。铁电颗粒用于研究颗粒辅助放电对气体净化的影响。柴油机排气在不同负载下用于近似模拟烟气成分。在室温下针对反应产物相对于放电功率的变化进行了研究。主要重点在于将NO氧化为NO {sub} 2,而不降低NO {sub} x的浓度(即最小的反应副产物),同时降低能耗。生成的NO {sub} 2将使用Na {sub} 2SO {sub} 3完全转换为N {sub} 2和Na {sub} 2SO {sub} 4。当NO浓度低(〜100 ppm)时,交流填充床反应器和无丸脉冲电晕反应器表现出更好的性能,并且在给定功率下反应产物最少。当发动机负荷超过50%(NO> 300 ppm)时,NO的减少没有太大的减少,所有反应堆或多或少地表现相同。等离子化学混合系统的总运营成本变为

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