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基于加热器的蓖麻油和南瓜籽油生物柴油直喷式柴油机性能和排放的对比研究。

Comparative studies on the performance and emissions of a direct injection diesel engine fueled with neem oil and pumpkin seed oil biodiesel with and without fuel preheater.

机构信息

Department of Mechanical Engineering, Pandian Saraswathi Yadav Engineering College, Sivagangai, 630561, India.

Department of Mechanical Engineering, K.L.N College of Engineering, Pottapalayam, 630611, India.

出版信息

Environ Sci Pollut Res Int. 2018 Feb;25(5):4621-4631. doi: 10.1007/s11356-017-0838-9. Epub 2017 Dec 1.

Abstract

In the present experimental analysis, two non-edible oils namely neem oil and pumpkin seed oil were considered. They are converted into respective biodiesels namely neem oil methyl ester (B1) and pumpkin seed oil methyl ester (B2) through transesterification process and their physical and chemical properties were examined using ASTM standards. Diesel was used as a baseline fuel in Kirloskar TV1 model direct injection four stroke diesel engine. A fuel preheater was designed and fabricated to operate at various temperatures (60, 70, and 80 °C). Diesel showed higher brake thermal efficiency (BTE) than biodiesel samples. Lower brake specific fuel consumption (BSFC) was obtained with diesel than B1 sample. B1 exhibited lower BSFC than B2 sample without preheating process. High preheating temperature (80 °C) results in lower fuel consumption for B1 sample. The engine emission characteristics like carbon monoxide (CO), hydrocarbon (HC), and smoke were found lower with B1 sample than diesel and B2 except oxides of nitrogen (NOx) emission. In preheating of fuel, B1 sample with high preheating temperature showed lower CO, HC, and smoke emission (except NOx) than B2 sample.

摘要

在本实验分析中,考虑了两种非食用油,分别是印楝油和南瓜籽油。它们通过酯交换过程转化为各自的生物柴油,即印楝油甲酯(B1)和南瓜籽油甲酯(B2),并使用 ASTM 标准检查了它们的物理和化学性质。柴油被用作 Kirloskar TV1 模型直喷四冲程柴油机的基准燃料。设计并制造了一个燃油预热器,以在不同温度(60、70 和 80°C)下运行。与生物柴油样品相比,柴油表现出更高的制动热效率(BTE)。与柴油相比,B1 样品的制动比油耗(BSFC)更低。在没有预热过程的情况下,B1 表现出比 B2 更低的 BSFC。高预热温度(80°C)导致 B1 样品的燃料消耗降低。与柴油和 B2 相比,发动机排放特性,如一氧化碳(CO)、碳氢化合物(HC)和烟雾,B1 样品较低,除了氮氧化物(NOx)排放。在燃料预热中,B1 样品在高预热温度下表现出比 B2 样品更低的 CO、HC 和烟雾排放(除了 NOx)。

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