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首页> 外文期刊>Journal of Energy Engineering >Impacts of Biodiesel, Fuel Additive, and Injection Pressure on Engine Emission and Performance
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Impacts of Biodiesel, Fuel Additive, and Injection Pressure on Engine Emission and Performance

机译:生物柴油,燃料添加剂和喷射压力对发动机排放和性能的影响

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摘要

A major concern today is the environmental pollution by the emission of gases from vehicles. Biodiesel is a cleaner alternative to petroleum diesel in terms of carbon monoxide (CO), hydrocarbon (HC), and smoke emission. However, biodiesel results in higher nitrogen oxide (NOx) with increasing performance, poor cold weather properties, and relatively low brake-thermal efficiency (BTE), which sets a major disadvantage for its worldwide commercialization. The impact of biodiesel fatty acid contents was studied through various blends of biodiesel so as to discover the optimum fatty acid content for reduced NOx emission and sufficient brake-thermal efficiency. Glycerol tert-butyl ether (GTBE) is a transesterification by-product and a fuel additive that has the potential to serve these issues. Instead of increased BTE maximum, a 10.5% reduction in NOx yield was observed with modified injection pressure and 2.5% GTBE concentration. Modified injection pressure of 240 bar (24 MPa) and 5% GTBE resulted in a maximum of 20% cut in CO emission. All tested biodiesel fuels displayed a decrease in NOx emission with improved BTE at 2.5% and 5% GTBE addition. Injection pressure 220 bar and 240 bar in combination with GTBE enhanced BTE of fuels significantly.
机译:今天,人们主要关注的是车辆排放气体对环境的污染。就一氧化碳(CO),碳氢化合物(HC)和烟雾排放而言,生物柴油是石油柴油的更清洁替代品。然而,生物柴油导致更高的氮氧化物(NOx),并具有更高的性能,较差的寒冷天气特性和相对较低的制动热效率(BTE),这为其在全球范围内的商业化带来了主要劣势。通过各种生物柴油混合物研究了生物柴油脂肪酸含量的影响,从而发现了最佳的脂肪酸含量,以减少NOx的排放和足够的制动热效率。甘油叔丁基醚(GTBE)是酯交换反应的副产物和燃料添加剂,具有解决这些问题的潜力。改变注入压力和2.5%GTBE浓度,可以观察到NOx产率降低了10.5%,而不是BTE最大值的增加。修正的240 bar(24 MPa)的注射压力和5%的GTBE可使CO排放量最多降低20%。所有测试的生物柴油燃料在添加2.5%和5%GTBE的情况下均显示出NOx排放量减少,BTE改善的情况。喷射压力为220 bar和240 bar,结合GTBE可以显着提高燃料的BTE。

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