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Comparison of Engine Performance between Nano- and Microemulsions of Solketal Droplets Dispersed in Diesel Assisted by Microwave Irradiation

机译:微波辐照分散在柴油中的脂状微脂和纳米乳脂的发动机性能比较

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摘要

As a derivative product of bio-glycerol, this study first uses solketal as a combustion improver for enhancing diesel engine characteristics. The emulsions of nanometer- and micrometer-sized droplets of solketal, which disperse evenly in the ultra-low sulfur diesel (ULSD), are formed by the effects of microwave irradiation. The performance of diesel engine fueled with the nanoemulsion of ULSD with scattered solketal droplets is analyzed and compared to that with the microemulsion. The experimental results show that the nanoemulsions can form when over 15 wt. % surfactant mixtures of Span 80 and Tween 80 and less than 5 wt. % solketal are mixed and emulsified with the remaining ULSD content, which acts as the continuous phase of the emulsions. The nanoemulsions are observed to have significantly lower brake-specific fuel consumption (bsfc) and higher fuel conversion efficiency and exhaust gas temperature than those of the microemulsions and the neat ULSD. However, the bsfc of the nanoemulsions increases with greater engine speed and gradually approaches those of the latter two test fuels. In addition, the dispersed solketal droplet sizes are mostly concentrated around 127 nm with peak intensity of 12.65% in the nanoemulsions. The microwave-assisted formation used in this study is found to successfully produce the nanoemulsions in which all of the dispersed droplet sizes are much smaller than 1000 nm.
机译:作为生物甘油的衍生产品,本研究首先使用Solketal作为助燃剂来增强柴油发动机的特性。在微波辐射的作用下,形成了分散在超低硫柴油(ULSD)中的纳米级和微米级角质液滴的乳液。分析了用分散的溶胶状液滴的ULSD纳米乳液作为燃料的柴油发动机的性能,并将其与微乳液进行了比较。实验结果表明,当超过15重量%时,可以形成纳米乳液。 Span 80和Tween 80的表面活性剂混合物的重量百分比小于5重量%。将%的缩酮与剩余的ULSD含量混合并乳化,其作为乳液的连续相。观察到的纳米乳液比微乳液和纯净的ULSD的制动器特定燃料消耗量(bsfc)低得多,燃料转化效率和废气温度更高。但是,纳米乳液的bsfc随着发动机转速的增加而增加,并逐渐接近后两种测试燃料的bsfc。另外,在纳米乳剂中,分散的角膜小液滴尺寸大部分集中在127nm附近,峰值强度为12.65%。发现本研究中使用的微波辅助结构成功地生产了其中所有分散液滴尺寸均远小于1000 nm的纳米乳液。

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