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Utilization of Blends of Jatropha Oil and N-Butanol in a Naturally Aspirated Compression Ignition Engine

机译:在天然吸气压缩点火发动机中利用麻风树油和正丁醇的共混物

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Diesel Engines are widely used in transportation, industrial and agriculture sectors worldwide due to their versatility and ruggedness. However, they also emit harmful emissions detrimental to human health and environment. Apart from environmental degradation, the perturbation in international crude oil prices is also mandating use of renewable fuels. In this context, vegetable oils such as Jatropha Curcas due to their carbon neutral nature and widespread availability, seems to present a promising alternative to the mineral diesel. Straight vegetable oils (SVO) are not recommended for direct diesel engine application due to their higher viscosity, poor volatility etc. and dilution of straight vegetable oil may effectively enable its direct application in unmodified diesel engines. In the present study, Jatropha oil was diluted with n-Butanol to improve the fuel properties of the blend. Butanol was considered due to its lower viscosity, oxygenated nature and complete miscibility with Jatropha oil. Three different blends were prepared having 5%, 10%, 20% n-butanol mixed with 95%, 90% and 80% Jatropha oil respectively. Various physico-chemical properties were evaluated for JO-n-butanol blends. Exhaustive engine trials were carried out on an unmodified diesel engine and the results were compared with baseline data of diesel. The results indicated that there was a marginal decrease in heating value, kinematic viscosity, density and specific gravity by increasing the percentage of n-butanol in Jatropha oil. Brake thermal efficiency was found to increase and brake specific energy consumption was reduced with JO-n-butanol blends. A considerable reduction in emissions of carbon monoxide, carbon dioxide, smoke and oxides of nitrogen was observed during the engine trial. However, emissions of unburnt hydrocarbons were found to be marginally higher for JO-n-butanol blend as compared to diesel baseline.
机译:柴油机广泛,由于其多功能性和耐用性应用于世界各地的交通运输,工业和农业部门。然而,他们也放出有害气体排放有害于人类健康和环境。除了环境恶化,国际原油价格的扰动也被强制要求使用可再生燃料。在此背景下,由于其碳中性的性质和普及植物油如麻疯树,似乎呈现出有前途的替代矿物柴油。直植物油(SVO)不建议直接柴油发动机的应用,由于其较高的粘度,波动性等较差,直植物油稀释可以有效地实现在未修改的柴油发动机的直接应用。在本研究中,麻风树油,用正丁醇稀释,以改善该共混物的燃料的性质。丁醇被认为是由于其较低的粘度,氧化的性质和完全混溶与麻风树油。制备三种不同的共混物具有5%,10%,20%的正丁醇分别与95%,90%和80%麻风树油混合。对于JO-正丁醇的共混物的各种物理化学性质进行了评价。穷举发动机试验是在未改性的柴油发动机中进行并将结果与​​柴油的基准数据进行比较。该结果表明,在通过增加麻风树油的正丁醇的百分比加热值,运动粘度,密度和比重稍减。制动热效率,发现增加和制动比能耗用JO-正丁醇掺合物减少。在一氧化碳,二氧化碳排放量的显着降低,烟雾和发动机试验过程中观察到的氮的氧化物。然而,发现未燃烧的碳氢化合物排放量相比,柴油基线为JO-正丁醇共混物是略高。

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