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    题名 作者 年代 出处 被引量
1Study of Pulsed Plasma in a Crossed Flow Dielectric Barrier Discharge Reactor for Improvement of NO_x Removal in Raw Diesel Engine Exhaust显示文摘Improved performance of plasma in raw engine exhaust treatment is reported.Anew type of reactor referred to as of cross-flow dielectric barrier discharge (DBD)was used,inwhich the gas flow is perpendicular to the corona electrode.In raw exhaust environment,thecross-flow (radial-flow)reactor exhibits a superior performance with regard to NOx removal whencompared to that with axial flow of gas.Experiments were conducted at different flow rates rangingfrom 2 L/min to 25 L/min.The plasma assisted barrier discharge reactor has shown encouragingresults in NO_x removal at high flow rates.Sankarsan MOHAPATRO B.S.RAJANIKANTH 2011Plasma Science and Technology2011,13,1:3
2Injection of N-Radicals into Diesel Engine Exhaust Treated by Plasma for Improved NO_x Removal: A Feasibility Study显示文摘在这篇论文报导血浆的注射上的可行性研究被导致为消退的 N 激进分子没有并且在实际柴油机在场的 NO_x 用尽。Theradical 沉重的柴油机用尽被分泌物血浆进一步在一个绝缘的障碍分泌物反应堆对待。N 激进分子在充满 BaTiO_3 小团的一个分开的血浆反应堆被生产并且然后被注入处理地区。当当没有激进的注射时,激进分子与那相比被注射时,在效率有重要改进。而与 Nradicals 的注射它前往 38% ,在有血浆的 0 负担的 NO_x 移动的 Theefficiency 独自是 14% 。在不同负担进行的实验的结果被讨论。B. S. RAJANIKANTH B. R. SUSHMA 2006Plasma Science and Technology2006,8,2:3
3Achieving Better NO_x Removal in Discharge Plasma Reactor by Field Enhancement显示文摘Application of plasma chemistry for gas cleaning is gaining prominence in recentyears,mainly from an energy efficiency point of view.In this paper we conducted a comparativestudy of NO/NO_x removal using two different types of dielectric barrier discharge electrodes,wire-cylinder reactor,pipe-cylinder reactor.Investigations were first carried out with synthetic gasesto obtain the baseline information on the NO/NO_x removal with respect to the two geometriesstudied.Further,experiments were carried out with raw diesel exhaust under loaded condition.A high NO_x removal efficiency of 90% was observed for the pipe-cylinder reactor as comparedto that of 53.4% for the wire-cylinder reactor.Furthermore,for the same energy consumed perNO molecule (about 73 eV/NO molecule),the removal efficiency increased from 67% for the wire-cylinder to about 98% for the pipe-cylinder which was quite appreciable.B.S.RAJANIKANTH Dipanwita SINHA 2008Plasma Science and Technology2008,10,2:1
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