印度楝油(NOME)基生物柴油发动机性能和排放的测定

Tejaswita Kajale, Abhay Pawar, Channapatana
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摘要

本研究旨在研究用楝树油生产生物柴油,以确定其在内燃机中的性能。并对所制生物柴油的理化性质进行了研究。世界正日益现代化和工业化。因此,车辆和发动机越来越多。但是这些发动机所使用的能源是有限的,并且正在逐渐减少。这种情况需要使用生物柴油作为柴油发动机的替代燃料。生物柴油是一种无毒、可生物降解、可再生的替代燃料,可用于柴油发动机,变化很小。生物柴油可以从低成本的印度楝籽油中生产出来。生物柴油的性能和测试是在内燃机上完成的。采用溶剂萃取法从印楝籽中提取印楝油。对折射率、密度、粘度、灰分、皂化值、碘值等进行了研究。以NEEM油为原料,经酯化和酯交换反应制备了生物柴油。对其进行了理化性质和化学性质的检测。对HC、CO、NOx、SOx和颗粒物进行了研究。生物柴油转化为功的能量与柴油转化为功的能量相等。结果还清楚地表明,使用生物柴油和混合燃料的发动机的氮氧化物排放量最高可提高20%。然而,与柴油相比,使用纯生物柴油(B100)的CI发动机在各种工况下的CO、CO2和THC排放量分别减少了15%、40%和30%。生物柴油与较低的HC、CO和颗粒排放有关。这可能是由于生物柴油含有约10%的氧气(按重量计),这有助于缸内这些燃烧产物的氧化。
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Determination of Engine Performance and Emission with Neem Oil (NOME) Based Bio-Diesel
The present study aims to investigate the production of biodiesel from neem oil with a view to determine its performance in Internal Combustion engine (I.C. engine). The physicochemical properties of the biodiesel produced were also studied. The world is getting modernized and industrialized day by day. As a result vehicles and engines are increasing. But energy sources used in these engines are limited and decreasing gradually. This condition necessitates the use of biodiesel as an alternate fuel for diesel engines. Biodiesel is a non-toxic, biodegradable, and renewable alternative fuel that may be used in diesel engines with very minor changes. Biodiesel could be produced from low-cost Neem seed oils. Biodiesel performance and testing is done in C.I. engine. Neem oil was extracted from neem seed by solvent extraction. Refractive index, density, viscosity, ash content, Saphonification value, iodine number was studied. Biodiesel has been prepared from NEEM oil by esterification and transesterification. It was examined for physical and chemical properties and chemical properties. HC, CO, NOx, SOx, and particulate matter was studied. The conversion of the biodiesel fuel's energy to work was equal to that from diesel fuel. The results also clearly indicate that the engine running with biodiesel and blends have higher NOx emission by up to 20%. However, the emissions of the CI engine running on neat biodiesel (B100) were reduced by up to 15%, 40% and 30% for CO, CO2 and THC emissions respectively, as compared to diesel fuel at various operating conditions. Biodiesel is linked to lower HC, CO, and particle emissions. This is likely owing to the fact that biodiesel includes around ten percent oxygen by weight, which aids in the oxidation of these combustion products in the cylinder.
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