首页> 外文期刊>Environmental Science and Pollution Research >Cleaner emissions from a DI diesel engine fueled with waste plastic oil derived from municipal solid waste under the influence of n-pentanol addition, cold EGR, and injection timing
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Cleaner emissions from a DI diesel engine fueled with waste plastic oil derived from municipal solid waste under the influence of n-pentanol addition, cold EGR, and injection timing

机译:在N-戊醇加入,冷EGR和注塑时间的影响下,由DI柴油发动机的清洁塑料油燃料燃料,源于城市固体废物。

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摘要

Urban planning and development is a decisive factor that increases the automobile numbers which leads to increased energy demand across the globe. In order to meet the escalating requirements of energy, it is necessary to find viable alternatives. Waste plastic oil (WPO) is one such alternative which has dual benefits as it reduces the environmental pollution caused by plastic waste and it could possibly meet the energy requirement along with fossil fuels. The study attempted to reduce emissions from a DI diesel engine fueled with WPO using 30% by volume of n-pentanol with fossil diesel (WPO70P30). EGR (10, 20, and 30%) and injection timing modifications were made with the intention to find optimum engine operating conditions. The experimental results indicated that addition of renewable component like?n-pentanol had improved the combustion characteristics by igniting WPO more homogeneously producing a higher premixed combustion phase. Smoke density for WPO70P30 was found to be twice lower than that of neat WPO at standard injection timing of 23°CA bTDC at any given EGR rate, NOx emissions were slightly on the higher side about 12% for WPO70P30 blend against WPO at same operating conditions. WPO70P30 showed lowest smoke and carbon monoxide emissions than diesel and WPO while delivering BTE’s higher than WPO and closer to diesel at all EGR and injection timings. However NOx and HC emissions increased with n-pentanol addition. The use of EGR reduced NOx emissions but was found to aggravate other emissions. It was concluded WPO70P30 can be favorably used in a DI diesel engine at the engines advanced injection timing for better performance than diesel with a slight penalty in NOx emissions.
机译:城市规划和发展是一个果断的决定性因素,增加了汽车数字,导致全球能源需求增加。为了满足能源需求不断升级,有必要找到可行的替代品。废塑料油(WPO)是一种这样的替代方案,具有双重效益,因为它降低了由塑料废物引起的环境污染,并且可能会满足化石燃料的能源需求。该研究试图使用30%(WPO70P30)使用30%(WPO70P30)的30%(WPO70P30)使用30%的正戊醇(WPO70P30)减少用WPO燃料的DI柴油发动机的排放。 EGR(10,20和30%)和喷射定时修改是为了找到最佳发动机操作条件的意图。实验结果表明,添加可再生组分(如β正戊烷)通过更加均匀地产生更高的预混燃烧相的WPO改善了燃烧特性。 WPO70P30的烟雾密度被发现两倍于在23°Ca BTDC的标准注射时间下齐全的WPO,在任何给定的EGR速率下,WPO70P30在相同的操作条件下对WPO混合的较高侧的NOx排放略有约12% 。 WPO70P30显示出比柴油和WPO的最低烟雾和一氧化碳排放,同时提供BTE的高于WPO,并在所有EGR和喷射时间内更接近柴油。然而,NOx和HC排放量增加了N-戊醇加入。 EGR减少NOx排放的使用,但被发现加剧了其他排放。它的结论是WPO70P30可以有利地在发动机的DI柴油发动机中使用的先进注射时间,以比柴油更好的性能,在NOx排放中略有罚款。

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