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Improvement of combustion and emission characteristics of a diesel engine working with diesel/jojoba oil blends and butanol additive

机译:用柴油/荷荷巴油混合物和丁醇添加剂改善柴油机燃烧和排放特性的燃烧和排放特性

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摘要

The main concerns of exploiting Jojoba oil in Cl engines is that it has a high viscosity, low volatility, and high NOx formation. Therefore, this article purposes in endeavoring to improve the combustion and emission parameters of a Cl engine working with diesel-jojoba oil blends and n-butanol additives under various engine loads. A 10% by volume of n-butanol is combined with 5%, 10%, 15%, 20%, 25, 30 and 35% of jojoba oil, and they are designated as DBJ5, DBJ10, DBJ15, DBJ20, DBJ25, DBJ30, and DBJ35, respectively. The experiments are divided into two steps, firstly, the viscosity of the fuel mixture is measured according to ASTM standards, and it is compared to ASTM D6751- 12 slanders limits. Secondly, the jojoba oil with volume fraction up to 15% is tested in a Cl engine to evaluate the combustion and emission developments. The results indicate that the addition of n-butanol with diesel-jojoba oil lowers the mixture viscosities by up to 85% compared to pure raw jojoba oil. The findings display that there is an increase in p(max), and HRR for DBJ5, DBJ10, and DBJ15 blends compared to pure diesel fuel, whereas the combustion duration and ignition delay are slightly reduced. The brake specific fuel consumption is enlarged. The NOx, CO, and UHC formations are reduced by 50%, 30%, and 40% respectively for diesel-jojoba oil-n-butanol mixtures. It can be deduced that combining high fractions of jojoba oil with n-butanol (DBJ15) have the feasible to accomplish low emission formations in the interim having high thermal efficiency level.
机译:在Cl发动机中利用Jojoba油的主要问题是它具有高粘度,低挥发性和高NOx形成。因此,本文旨在努力改善与柴油机 - 荷荷巴油共混物和在各种发动机负载下的正丁醇添加剂一起使用的CL发动机的燃烧和排放参数。将10%体积的正丁醇组合在5%,10%,15%,20%,25,30和35%的Jojoba油中组合,它们被指定为DBJ5,DBJ10,DBJ15,DBJ20,DB25,DBJ30和dbj35分别。将实验分为两个步骤,首先,根据ASTM标准测量燃料混合物的粘度,与ASTM D6751-12诽谤限制进行比较。其次,在CL发动机中测试了高达15%的体积分数的Jojoba油,以评估燃烧和排放发展。结果表明,与纯未加工的荷荷巴油相比,柴油 - jojoba油的N-丁醇的添加降低了85%的混合物粘度。与纯柴油燃料相比,该研究结果显示P(最多)和用于DBJ5,DBJ10和DBJ15混合物的HRR,而燃烧持续时间和点火延迟略微降低。制动器特定的燃料消耗量增大。对于柴油 - 荷荷巴油 - 丁醇混合物,NOx,CO和UHC形成分别减少了50%,30%和40%。可以推导出与正丁醇(DBJ15)的高级数与正丁醇(DBJ15)相结合,可以在具有高热效率水平的临时实现低排放形成的可行性。

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