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Effect of diesel/methanol compound combustion on diesel engine combustion and emissions

机译:柴油/甲醇复合燃烧对柴油机燃烧和排放的影响

摘要

This paper introduces a Diesel/methanol compound combustion system (DMCC) and its application to a naturally aspirated Diesel engine with and without an oxidation catalytic converter. In the DMCC system, there are two combustion modes taking place in the Diesel engine, one is diffusion combustion with Diesel fuel and the other is premixed air/methanol mixture ignited by the Diesel fuel. Experiments were conducted on a four cylinder DI Diesel engine, which had been modified to operate in Diesel/methanol compound combustion. Experiments were conducted at idle and at five engine loads at two levels of engine speeds to compare engine emissions from operating on pure Diesel and on operating with DMCC, with and without the oxidation catalytic converter. The experimental results show that the Diesel engine operating with the DMCC method could simultaneously reduce the soot and NOx emissions but increase the HC and CO emissions compared with the original Diesel engine. However, using the DMCC method coupled with an oxidation catalyst, the CO, HC, NOx and soot emissions could all be reduced.
机译:本文介绍了柴油/甲醇复合燃烧系统(DMCC)及其在带有或不带有氧化催化转化器的自然吸气柴油发动机中的应用。在DMCC系统中,柴油发动机有两种燃烧模式,一种是柴油燃料的扩散燃烧,另一种是柴油燃料点燃的预混合空气/甲醇混合物。实验是在四缸DI柴油机上进行的,该发动机已进行了改装,可用于柴油/甲醇复合燃烧。在怠速和五个发动机负载下以两个发动机转速水平进行了实验,以比较纯柴油和带或不带氧化催化转化器的DMCC运转的发动机排放。实验结果表明,与原始柴油发动机相比,使用DMCC方法运行的柴油发动机可以同时减少烟尘和NOx排放,但增加HC和CO排放。但是,使用DMCC方法结合氧化催化剂,可以减少CO,HC,NOx和烟尘的排放。

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