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Analysis of combustion characteristics, engine performance and exhaust emissions of diesel engine fueled with upgraded waste source fuel

机译:分析使用升级废源燃料的柴油机的燃烧特性,发动机性能和尾气排放

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Utilization of the waste products as an alternative fuel could reduce the dependence on fossil fuel. The three types of upgraded waste source fuels discussed in this paper were tire derived fuel (TDF), waste plastic disposal fuel (WPD) and upgraded waste cooking oil (UWCO). The detailed combustion pressure showed that kinematic viscosity and cetane number played an important role in determining the combustion quality. TDF's high kinematic viscosity and low cetane number affected its fuel vaporization process; thus, lengthening its ignition delay. UWCO showed the 14% higher power and 13.8% higher torque compared to diesel fuel (DF). WPD produced the lowest NOx due to its low pressure curve during combustion. TDF had produced the highest exhaust emissions (CO, CO2, NO and NOx). Particulate matter (PM) emissions by UWCO blends were lower than DF. UWCO's soot concentration was 40% lower than DF and increased to 62.5% from low to high engine speed operation. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:将废物用作替代燃料可以减少对化石燃料的依赖。本文讨论的三种改进的废源燃料是轮胎衍生燃料(TDF),废塑料处置燃料(WPD)和改进的废食用油(UWCO)。详细的燃烧压力表明,运动粘度和十六烷值在确定燃烧质量中起着重要作用。 TDF的高运动粘度和十六烷值低影响了其燃料的汽化过程。因此,延长了点火延迟。与柴油(DF)相比,UWCO的功率提高了14%,扭矩提高了13.8%。 WPD由于燃烧过程中的低压曲线而产生最低的NOx。 TDF产生了最高的废气排放(CO,CO2,NO和NOx)。 UWCO混合物的颗粒物(PM)排放低于DF。 UWCO的烟尘浓度比DF低40%,从低到高的发动机转速运行增加到62.5%。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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