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Diesel Engine Emissions and Performance Characteristics under Cape Chestnut Biofuel

机译:栗子角生物燃料作用下的柴油机排放和性能特征

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Cape Chestnut oil was processed to biodiesel through transesterification. Cape Chestnut kennels are reported to have oil content of 60% - 63% [1]. Properties of biodiesel were determined and compared with those of diesel and engine tests done at a constant speed of 1500 RPM on the biodiesel blends to evaluate their performance and emissions characteristics. Performance evaluation was in terms of Brake Specific Fuel Consumption (BSFC), Brake Horse Power (BHP) and Brake Thermal Efficiency (ETE). The engine was initially run on diesel to establish the reference characteristics before running on biodiesel blends. The biodiesel was blended with diesel volumetrically to 80% (B80), 50% (B50), 20% (B20) and 5% (B5) the percentage being the volume of biodiesel in the blended fuel. Diesel fuel had the lowest BSFC followed by B5 whose BSFC was 7.3% higher than that of diesel. BTE for B100 was lower than that of diesel by 20.3% while that of B5 was 7.6% lower. Concentration of SO2 in B100 was 92.7% lower than that of diesel fuel while that of B20 was 24.7% lower. NO and NO2 concentrations for B100 were around 15% higher than that of diesel. Particulate matter of less than 10 μm diameter (PM10) for diesel was found to be 72% of the total collected from all the test fuels as compared to that of biodiesel blends at 28%. The study concluded that Cape Chestnut biodiesel blends containing up to 20% biodiesel can be used in an unmodified diesel engine since their performance and emission characteristics were very similar to that of diesel but with reduced toxic gas emissions therefore friendly to the environment.
机译:栗子油通过酯交换反应加工为生物柴油。据报道,栗子角犬舍的油含量为60%-63%[1]。确定了生物柴油的性能,并将其与柴油和发动机测试进行了比较,并以1500 RPM的恒定速度对生物柴油混合物进行了测试,以评估其性能和排放特性。性能评估是根据制动比油耗(BSFC),制动马力(BHP)和制动热效率(ETE)进行的。该发动机最初使用柴油运转,以建立参考特性,然后再使用生物柴油混合物。将生物柴油与柴油按体积混合到80%(B80),50%(B50),20%(B20)和5%(B5),百分比为混合燃料中生物柴油的体积。柴油的BSFC最低,其次是B5,其BSFC比柴油高7.3%。 B100的BTE比柴油低20.3%,而B5的BTE低7.6%。 B100中的SO2浓度比柴油低92.7%,而B20的SO2浓度低24.7%。 B100的NO和NO2浓度比柴油高约15%。柴油中直径小于10μm(PM10)的颗粒物占所有测试燃料收集总量的72%,而生物柴油混合物的颗粒物含量仅为28%。该研究得出的结论是,含有不超过20%生物柴油的栗子角生物柴油混合物可用于未经修饰的柴油发动机,因为它们的性能和排放特性与柴油非常相似,但有毒气体排放减少,因此对环境友好。

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