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Effect of anisole addition to waste cooking oil methyl ester on combustion, emission and performance characteristics of a DI diesel engine without any modifications

机译:抗脂添加到废物烹饪油甲酯对DI柴油发动机的燃烧,排放和性能特征的影响而无需任何修改

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摘要

Energy recovery and utilization from waste presents an attractive alternative solution to compensate fossil fuel demands and reduces the risk of environmental hazards. The present study aims to investigate, the effect of increasing anisole fraction in the biodiesel extracted from waste cooking oil in a diesel engine. Tests were performed by blending anisole with waste cooking oil methyl ester up to 30% vol. and the results were compared with baseline diesel and biodiesel operation. The results reveal that, increasing the anisole content in biodiesel prolongs the ignition delay period. The in-cylinder pressure and heat release rate increase with higher anisole fraction. Among the WA fuels, W90A10 blend shown 1.6% better BTE than biodiesel. The NOx emission was lowest when the engine is operated with W90A10 blend, at peak load, it decreased by 17% and 11% against diesel and biodiesel operation. The smoke opacity for neat biodiesel was highest and the addition of anisole suppressed the soot formation tendency of the biodiesel significantly. HC and CO emissions are generally high when the engine is operated with biodiesel. Blending anisole with biodiesel had a positive effect on both HC and CO emissions. From the findings, it is concluded that waste cooking oil methyl ester blended with 10% by vol. of anisole can be effectively utilized in diesel engine applications with lower emissions.
机译:废物的能量回收和利用提供了一种有吸引力的替代解决方案,以补偿化石燃料需求并降低环境危害的风险。本研究旨在研究,增加从柴油发动机中的废物烹饪油中提取的生物柴油中抗粘液部分的效果。通过将废物与废物烹饪油甲酯混合,对苯甲醚混合至30%Vol的试验。并将结果与​​基线柴油和生物柴油操作进行了比较。结果表明,增加生物柴油中的抗唑烷含量延长点火延迟期。缸内压力和热释放速率随更高的抗溶血物馏分而增加。在WA燃料中,W90A10混合比生物柴油更好地显示1.6%。当发动机用W90A10混合物进行峰值载荷时,NOx排放最低,在柴油和生物柴油运行中降低17%和11%。整洁生物柴油的烟雾不透明度最高,并且添加抗粘液抑制了生物柴油的烟灰形成趋势。当发动机用生物柴油操作时,HC和CO排放通常很高。与生物柴油混合苯甲醚对HC和CO排放有积极影响。从调查结果中,得出结论,将废料烹饪油甲酯与10%的储物混合。可以在具有较低排放的柴油发动机应用中有效地利用鞍座。

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