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Experimental Investigation on Lemongrass Oil Water Emulsion in Low Heat Rejection Direct Ignition Diesel Engine

机译:低排量直燃柴油机柠檬草油水乳化液的实验研究

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This article discusses the experimental investigation of a new biofuel (lemongrass oil) feedstock as an alternative fuel. The subject has not drawn much attention among the fraternity of researchers. So far, an exploration for a new biofuel feedstock has resulted in demonstrating lemongrass oil (LGO) as an alternative energy source. Nickel-chromium-zirconium coating on piston, inlet, and exhaust valves is achieved using a plasma spray method. The coated engine has been tested with a constant level of neat diesel and varying proportions of 5, 10, and 15 percent of LGO-water emulsion; its properties have been analyzed per the ASTM standards. The considered test fuel was experimentally investigated in a single cylinder diesel engine at 1,500 rpm for its performance, combustion, and emission characteristics. Among the different mixtures, a fuel mixture of LGWM1 (LGO of 94 %, water of 5 %, span 80 of 0.5 %, and tween 80 of 0.5 %) profile had similar properties to diesel fuel, resulting in a higher thermal efficiency and a lower hydrocarbon, carbon monoxide emission. However, oxides of nitrogen and carbon dioxide emission were comparatively higher for the test fuel considered. The cylinder pressure and heat release rate curves show a slight increase at the full load condition as compared with diesel fuel. Against the background of continuous fossil fuel depletion, the fuel blend of LGWM1 (LGO of 94 %, water of 5 %, span 80 of 0.5 % and tween 80 of 0.5 %) acts as a promising alternative fuel for further research work.
机译:本文讨论了作为替代燃料的新型生物燃料(柠檬油)原料的实验研究。该主题在研究人员的兄弟会中并未引起太多关注。到目前为止,对新的生物燃料原料的探索已证明柠檬草油(LGO)可作为替代能源。使用等离子喷涂方法在活塞,进气门和排气门上镀镍,铬,锆,锆。涂层发动机已经用恒定水平的纯柴油和5%,10%和15%的LGO-水乳液比例进行了测试;其性能已按照ASTM标准进行了分析。在单缸柴油机中以1,500 rpm的速度对所考虑的测试燃料进行了性能,燃烧和排放特性的实验研究。在不同的混合物中,LGWM1(LGO为94%,水为5%,跨度80为​​0.5%,吐温80为0.5%)的燃料混合物具有与柴油相似的特性,从而具有更高的热效率和更高的燃油效率。降低碳氢化合物,一氧化碳的排放。但是,对于所考虑的测试燃料,氮氧化物和二氧化碳的排放量相对较高。与柴油相比,气缸压力和放热率曲线在满载条件下显示出轻微增加。在化石燃料不断消耗的背景下,LGWM1的燃料混合物(94%的LGO,5%的水,0.5%的跨度80和0.5%的吐温80)是有希望的替代燃料,可用于进一步的研究工作。

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