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首页> 外文期刊>Environmental Science and Pollution Research >Cleaner emissions from a DI-diesel engine fueled with mahua oil and low carbon ethanol-hydrogen in dual fuel mode
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Cleaner emissions from a DI-diesel engine fueled with mahua oil and low carbon ethanol-hydrogen in dual fuel mode

机译:在双燃料模式下用Mahua油和低碳乙醇 - 氢气燃料的清洁剂排放

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摘要

This work is all about utilization of more than two low carbon fuels in a diesel engine with a main objective of reducing harmful emissions. Initially, test engine was tested with a non-petroleum-based fuel namely mahua oil, under different load conditions. In the second phase of the work, test engine was modified into dual fuel mode with slight modification in the intake manifold for the admission of a low carbon high octane primary fuel namely ethanol. The engine was tested by varying the ethanol energy share (EES) from 5% to the point at which engine tends to knock at 100% and 40% of the maximum engine power output. Finally, an attempt was made to induct a zero carbon high octane fuel (i.e., hydrogen) in the intake manifold of the dual fuel engine operated with mahua and ethanol and tested for the behavior. Experimental results claimed that inclusion of ethanol improved the brake thermal efficiency (BTE) only at the higher loads. Optimized EES at 100% load conditions was identified as 15%. It is found that injection of ethanol significantly reduced the harmful emissions like smoke and oxides of nitrogen at the price of increased hydrocarbon and carbon monoxide emissions. It is also inferenced that BTE was improved further with the increases of hydrogen flow rate at peak load. Interestingly all the carbon-based emissions were drastically reduced with the inclusion of hydrogen. However, the oxides of nitrogen emission were found to be increased with increase of hydrogen flow rate.
机译:这项工作均关于柴油发动机中超过两种低碳燃料的利用,主要目的是减少有害排放。最初,在不同的负载条件下用非石油基燃料即茂物油测试测试发动机。在该工作的第二阶段,测试发动机被修改为双燃料模式,在进气歧管中进行轻微改性,用于进入低碳高辛烷初级燃料即乙醇。通过将乙醇能量份额(EE)从5%改变为发动机倾向于敲至最大发动机功率输出的100%和40%的点来测试发动机。最后,尝试在用Mahua和乙醇操作的双燃料发动机的进气发动机的进气中诱导零碳高辛烷值燃料(即,氢)并对行为进行测试。实验结果要求将乙醇包含在较高负载下仅提高制动热效率(BTE)。 100%负荷条件下的优化EES被确定为15%。结果发现,乙醇的注射显着降低了碳氢化合物和一氧化碳排放量增加的烟雾和氮的氧化物等有害排放。它还推测,随着峰值负荷的氢流速的增加,进一步改善了BTE。有趣的是,所有碳的排放都随着包含氢气大大降低。然而,发现氮排放的氧化物随着氢气流速的增加而增加。

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