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使用响应面法对柴油-生物柴油-航空煤油混合燃料的柴油机性能和排放进行多目标优化。

Multi-objective optimization of diesel engine performance and emissions fueled with diesel-biodiesel-fusel oil blends using response surface method.

机构信息

Department of Biosystems Engineering, Shahid Chamran University of Ahvaz, Ahvaz, Iran.

出版信息

Environ Sci Pollut Res Int. 2018 Dec;25(35):35429-35439. doi: 10.1007/s11356-018-3459-z. Epub 2018 Oct 22.

Abstract

The interest in research on alcohol-based biofuels is on the rise. Fusel oil is a long-chain alcohol and a by-product of bioethanol synthesis. This study analyzed the effects of blended levels of fusel oil and biodiesel in diesel fuel on the performance and exhaust emissions of a single-cylinder diesel engine. The effects of input parameters (i.e., fusel oil content (%), biodiesel content (%), engine speed (rpm), and engine load (%), each at five levels) on response parameters (i.e., power, torque, fuel consumption, and emission factors, namely NO, UHC, CO, and CO) were investigated. Different levels were used for analyzing fusel oil (0, 5, 10, 15, and 20%), biodiesel (0, 5, 10, 15, and 20%), engine load (0, 25, 50, 75, and 100%), and engine speed (1400, 1700, 2000, 2300, and 2600 rpm). Response surface method (RSM) was employed to maximize engine performance and minimize exhaust emissions. A blend of DF B (5% fusel oil, 5% biodiesel, and 90% petro-diesel) and engine speed of 2026 rpm at load 46% were predicted to be an optimal value. Using a 72% desirability function, optimum results for torque (14.2 Nm), power (3.37 kW), and brake-specific fuel consumption (356.9 g/kWh) were also obtained from RSM. Based on the optimized inputs, the optimized values of different output pollutants were 0.14 vol.% for CO, 1.62 vol.% for CO, 23.7 ppm for UHC, and 85.17 ppm for NO. The result illustrated that use of fusel oil decreased NO emissions up to 20%, while UHC and CO emissions increased up to 32% and 22%, respectively. In addition, the use of fusel oil content (up to 10%) in the blended fuels improved the engine power by 5.6%.

摘要

人们对酒精基生物燃料的研究兴趣日益浓厚。杂醇油是一种长链醇,是生物乙醇合成的副产品。本研究分析了柴油中不同混合比例的杂醇油和生物柴油对单缸柴油机性能和废气排放的影响。输入参数(即杂醇油含量(%)、生物柴油含量(%)、发动机转速(rpm)和发动机负荷(%),每个参数均有五个水平)对响应参数(即功率、扭矩、燃料消耗和排放因子,即 NO、UHC、CO 和 CO)的影响进行了研究。使用不同水平来分析杂醇油(0、5、10、15 和 20%)、生物柴油(0、5、10、15 和 20%)、发动机负荷(0、25、50、75 和 100%)和发动机转速(1400、1700、2000、2300 和 2600 rpm)。响应面法(RSM)用于使发动机性能最大化并使废气排放最小化。预测 DF B(5%杂醇油、5%生物柴油和 90%石油柴油)与发动机转速 2026 rpm 和负荷 46%的组合为最佳值。使用 72%的理想度函数,还从 RSM 中获得了扭矩(14.2 Nm)、功率(3.37 kW)和比燃料消耗(356.9 g/kWh)的最佳结果。基于优化输入,不同输出污染物的优化值为 CO 为 0.14 体积%、CO 为 1.62 体积%、UHC 为 23.7 ppm 和 NO 为 85.17 ppm。结果表明,使用杂醇油可将 NO 排放降低 20%,同时 UHC 和 CO 排放分别增加 32%和 22%。此外,在混合燃料中使用高达 10%的杂醇油含量可使发动机功率提高 5.6%。

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