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EXPERIMENTAL STUDY ON EMISSION CHARACTERISTICS OF NON-ELECTRONIC CONTROL DIESEL ENGINE WITH DOC/POC/SCR COMBINED SYSTEM

机译:DOC / POC / SCR组合系统非电子控制柴油机排放特性的实验研究

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An emission treatment study was conducted on a typical non-electronic control diesel engine using diesel oxidation catalyst (DOC)/ particle oxidation catalyst (POC) / selective catalytic reduction catalyst (SCR) combined system to expect the engine would reach CN-V standard. The research was focused on the selection and the arrangement of the treatment units. The experiments results show that either particulate matters (PM) or NOX but not in the case of both can meet CN-V standard with only DOC+POC or SCR system, however, both PM and NOX can reach CN-V standard by employing DOC/POC/SCR combined system. There is no obvious influence on the pollutants conversion efficiency with the different arrangement order of the SCR and DOC+POC system. The passive regeneration of POC can be fully achieved by placing the DOC+POC ahead of the SCR system due to the sufficient amount of NO2 in the exhaust which can be utilized for PM oxidation, and also in this case the hydrothermal aging effect on the SCR catalyst could be reduced owing to the lower of the inlet temperature. The backpressure of the combined system can be less than 25 kPa through the application of ceramic-based POC and optimal design of the packaging structure.
机译:使用柴油机氧化催化剂(DOC)/颗粒氧化催化剂(POC)/选择性催化还原催化剂(SCR)组合系统对典型的非电子控制柴油机进行了排放处理研究,以期望该发动机达到CN-V标准。研究集中在治疗单元的选择和布置上。实验结果表明,仅使用DOC + POC或SCR系统,颗粒物(PM)或NOX都不能满足CN-V标准,但是采用DOC可以使PM和NOX都达到CN-V标准/ POC / SCR组合系统。 SCR和DOC + POC系统的排列顺序不同,对污染物转化效率的影响不明显。通过将DOC + POC置于SCR系统之前,可以完全实现POC的被动再生,这是因为排气中有足够量的NO2可用于PM氧化,在这种情况下,水热老化对SCR也有影响由于入口温度较低,催化剂可以减少。通过应用基于陶瓷的POC和优化包装结构,组合系统的背压可以小于25 kPa。

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