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首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Effect of Additives in Various Biodiesels and Their Blends on Cold Flow Properties, Oxidation Stability and Diesel Exhaust Emissions
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Effect of Additives in Various Biodiesels and Their Blends on Cold Flow Properties, Oxidation Stability and Diesel Exhaust Emissions

机译:各种生物柴油及其混合物中添加剂对冷流性能,氧化稳定性和柴油机尾气排放的影响

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The objective of this study was to obtain an improved understanding of the effects of the simultaneous use of cold flow improver (CFI) and antioxidant on the cold flow properties, oxidation stability and diesel exhaust emissions of various biodiesels and biodiesel blends. Cold flow properties were evaluated by assessing the cloud point (CP) and pour point (PP) values, as well as from the results of the cold soak filtration test (CSFT). Oxidation stability was also determined by measuring the peroxide induction period (IP). The neat biodiesels (B100) derived from soybean oil (SME), Jatropha curcus oil (JME), rice bran oil (RBME), palm oil (PME) and waste cooking oil(WME), and biodiesel blends with JIS No.2 diesel fuel were tested. A CFI and antioxidant specially designed for use in biodiesel fuels were employed during the work. The experimental data demonstrated that the addition of antioxidant had no effect on either the CP or PP values. The CSFT time value increases with increasing biodiesel content in biodiesel blends, although the addition of the CFI has little effect on the CSFT value. On the other hand, the CSFT results, however, were increased by antioxidant addition and also by increasing the CFI content in the SME(B100). The CSFT value was found to be well correlated with both CP and PP results in the case of the palm oil biodiesel. The IP value of SME(B100) is elevated with increasing CFI addition when an amine-based type antioxidant is added. We also determined that the addition of CFI and antioxidant reduces the extent of initial combustion due to premix combustion of Dl diesel engines, which results in slightly decreased total unburned hydrocarbon (THC) and particulate matter (PM) emissions in exhaust at high engine loads.
机译:这项研究的目的是为了更好地理解同时使用冷流改进剂(CFI)和抗氧化剂对各种生物柴油和生物柴油混合物的冷流性能,氧化稳定性和柴油机尾气排放的影响。通过评估浊点(CP)和倾点(PP)值以及冷浸过滤测试(CSFT)的结果来评估冷流性能。氧化稳定性也通过测量过氧化物诱导期(IP)来确定。源自豆油(SME),麻风树麻疯树油(JME),米糠油(RBME),棕榈油(PME)和废食用油(WME)的纯生物柴油(B100),以及与JIS 2号柴油混合的生物柴油燃料进行了测试。工作期间采用了专门设计用于生物柴油燃料的CFI和抗氧化剂。实验数据表明,添加抗氧化剂对CP或PP值均无影响。 CSFT时间值随生物柴油混合物中生物柴油含量的增加而增加,尽管添加CFI对CSFT值影响很小。另一方面,通过添加抗氧化剂以及增加SME(B100)中CFI含量,可以提高CSFT结果。在棕榈油生物柴油的情况下,CSFT值与CP和PP结果均具有良好的相关性。当添加胺类抗氧化剂时,随着CFI添加量的增加,SME(B100)的IP值也随之增加。我们还确定,由于D1柴油机的预混燃烧,CFI和抗氧化剂的添加减少了初始燃烧的程度,这导致在高发动机负载下排气中的总未燃碳氢化合物(THC)和颗粒物(PM)排放量略有减少。

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