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在正戊醇添加、低温废气再循环和喷油正时的影响下,由城市固体废物衍生的废塑料油作为燃料的直喷式柴油机的排放物更为清洁。

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.

机构信息

Department of Mechanical Engineering, Jeppiaar Engineering College, Chennai, TN, India.

Department of Mechanical Engineering, Annamalai University, Chidambaram, TN, India.

出版信息

Environ Sci Pollut Res Int. 2018 May;25(14):13611-13625. doi: 10.1007/s11356-018-1558-5. Epub 2018 Mar 1.

Abstract

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.

摘要

城市规划和发展是增加汽车数量的决定性因素,这导致了全球能源需求的增加。为了满足不断增长的能源需求,有必要寻找可行的替代品。废塑料油 (WPO) 就是这样一种替代品,它具有双重效益,既能减少塑料废物造成的环境污染,又能在一定程度上满足能源需求,与化石燃料相媲美。本研究试图使用 30%体积的正戊醇与化石柴油(WPO70P30)来减少 DI 柴油机燃烧 WPO 时的排放。进行了废气再循环(EGR)(10%、20%和 30%)和喷射正时修改,目的是找到最佳的发动机运行条件。实验结果表明,添加可再生成分,如正戊醇,通过更均匀地点燃 WPO,改善了燃烧特性,产生了更高的预混合燃烧阶段。在任何给定的 EGR 率下,WPO70P30 的烟度比纯 WPO 低一倍,标准喷射正时为 23°CA bTDC,在相同的运行条件下,WPO70P30 的 NOx 排放略高,约为 WPO 的 12%。与柴油和 WPO 相比,WPO70P30 显示出最低的烟雾和一氧化碳排放,同时在所有 EGR 和喷射正时下提供比 WPO 更高的 BTE。然而,随着正戊醇的添加,NOx 和 HC 排放增加。使用 EGR 可以减少 NOx 排放,但发现会加剧其他排放物的排放。研究结论是,WPO70P30 可以在 DI 柴油机中在发动机的先进喷射正时下有利地使用,与柴油相比具有更好的性能,而在 NOx 排放方面略有惩罚。

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