首页> 外文会议>2010 IEEE Industry Applications Society Annual Meeting >Improvement of NOx Reduction Efficiency in Diesel Emission Using Nonthermal Plasma - Exhaust Gas Recirculation Combined Aftertreatment
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Improvement of NOx Reduction Efficiency in Diesel Emission Using Nonthermal Plasma - Exhaust Gas Recirculation Combined Aftertreatment

机译:等温废气再循环联合后处理提高柴油机排放NOx的效率。

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Atmospheric-pressure nonequilibrium nonthermal plasma (NTP) hybrid exhaust gas aftertreatment systems have been developed by the authors without using precious metal catalysts and harmful ammonia, etc. Two types of new environmental protection systems (a dry system and a wet system), which enable to produce ultra low CO2, PM (Particulate Matter), NOx emissions, fuel consumption and low cost, are investigated for diesel engine, marine engine and combustion boiler applications. These systems are now at the stage of pilot-scale plants tests supported by Japan Science and Technology Agency (JST) and carried out for four years as a national program. This paper mainly reports the principles of the dry system and some recent experimental results of laboratory tests. The NOx reduction comprises three flow processes: (a) adsorption, (b) heating and (c) cooling processes. The heating process corresponds to the regeneration process. These processes are repeated in the following order: (a), (b) and (c). This dry system demonstrates excellent energy efficiencies to meet the most recent Japanese national regulation of automobile diesel engine exhaust gas. In this study, approximately 60% of the NOx of the exhaust (NOx: 240 ~ 325 ppm, flow rate = 300 NL/min, N: standard state) can be continuously treated for 20 hrs. A improved and highest system energy efficiency of 154 g(NO2)/kWh is achieved for NOx reduction.
机译:作者开发了不使用贵金属催化剂和有害氨等的大气压非平衡非热等离子体(NTP)混合废气后处理系统。两种新型的环境保护系统(干式系统和湿式系统)可以实现为了生产超低的二氧化碳,颗粒物(PM),NOx排放,燃料消耗和低成本,已对柴油机,船用发动机和燃烧锅炉的应用进行了研究。这些系统目前处于由日本科学技术厅(JST)支持的中试工厂测试阶段,并作为国家计划实施了四年。本文主要介绍了干式系统的原理以及实验室测试的一些最新实验结果。还原NOx包括三个流动过程:(a)吸附,(b)加热和(c)冷却过程。加热过程对应于再生过程。这些过程按以下顺序重复:(a),(b)和(c)。这种干式系统具有出色的能源效率,可以满足日本最新的汽车柴油机废气国家法规。在这项研究中,大约60%的废气NOx(NOx:240〜325 ppm,流速= 300 NL / min,N:标准状态)可以连续处理20小时。减少NOx达到了154 g(NO2)/ kWh的最高改进系统能效。

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