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Combustion and emission characteristics of diesel engine fueled with diesel-like fuel from waste lubrication oil

机译:以废润滑油为类柴油燃料的柴油机的燃烧和排放特性

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摘要

Waste lubricant oil (WLO) is one of the most important types of the energy sources. WLO cannot be burned directly in diesel engines, but can be processed to be used as diesel-like fuel (DLF) to minimize its harmful effect and maximize its useful values. Moreover, there are some differences in physicochemical properties between WLO and diesel fuel. In order to identify the differences in combustion and emission performance of diesel engine fueled with the two fuels, a bench test of a single-cylinder direct injection diesel engine without any engine modification was investigated at four engine speeds and five engine loads. The effects of the fuels on fuel economic performance, combustion characteristics, and emissions of hydrocarbons(HC), carbon monoxide (CO), nitrogen oxides (NOx) and smoke were discussed. The DLF exhibits longer ignition delay period and shorter combustion duration than diesel fuel. The test results indicate that the higher distillation temperatures of the DLF attribute to the increase of combustion pressure, temperature and heat release rate. The brake specific fuel consumption (BSFC) of the DLF compared to diesel is reduced by about 3% at 3000 rpm under light and medium loads. The DLF produces slightly higher NOx emissions at middle and heavy loads, somewhat more smoke emissions at middle loads, and notably higher HC and CO emissions at most measured points than diesel fuel. It is concluded that the DLF can be used as potential available fuel in high-speed diesel engines without any problems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:废润​​滑油(WLO)是最重要的能源之一。 WLO不能直接在柴油发动机中燃烧,但是可以加工成类柴油燃料(DLF)以最大程度地减少其有害影响并最大化其有用价值。此外,WLO和柴油之间在理化特性方面存在一些差异。为了确定以两种燃料为燃料的柴油机在燃烧和排放性能方面的差异,研究了在四种发动机转速和五种发动机负荷下,不进行任何发动机改装的单缸直喷柴油机的台架试验。讨论了燃料对燃料经济性能,燃烧特性以及碳氢化合物(HC),一氧化碳(CO),氮氧化物(NOx)和烟气排放的影响。与柴油相比,DLF具有更长的点火延迟时间和更短的燃烧持续时间。试验结果表明,DLF的较高蒸馏温度归因于燃烧压力,温度和放热速率的增加。在轻载和中载下,与柴油相比,DLF的制动器特定燃料消耗(BSFC)在3000 rpm下降低了约3%。 DLF在中负荷和重负荷时产生的NOx排放量略高,在中负荷时产生的烟气排放量略多,并且在大多数测量点处的HC和CO排放量均比柴油燃料高。结论是DLF可以用作高速柴油发动机中潜在的可用燃料,而不会出现任何问题。 (C)2016 Elsevier Ltd.保留所有权利。

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