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Effect of antioxidant on the oxidation stability and combustion-performance-emission characteristics of a diesel engine fueled with diesel-biodiesel blend

机译:抗氧化剂对以柴油-生物柴油混合物为燃料的柴油机的氧化稳定性和燃烧性能-排放特性的影响

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Alexandrian laurel or Calophyllum inophyllum oil is recently considered one of the most anticipated nonconsumable or nonedible biodiesel sources. An attempt has been made in this study to increase the oxidation stability and investigate the engine performance, emission, and combustion characteristics of a diesel engine by adding 1% (by vol.) of two antioxidants, such as 2,6-Di-tert.-butyl-4-methylphenol and 2,2'-methylenebis (4-methyl-6-tert-butylphenol), in higher percentages of C. inophyllum biodiesel (CB30) with diesel fuel (B0). The experiment was performed on a single-cylinder, water-cooled, direct-injection diesel engine for this purpose. The addition of both antioxidants increased the oxidation stability without significantly changing other physicochemical properties. Results also show that the antioxidants enhanced the start of combustion of biodiesel, which resulted in a short ignition delay. The peak pressure and the peak heat release rate during premixed combustion phase of pure CB30 and its modified blend with antioxidant were higher than those of B0. Both antioxidant blends showed higher brake power, higher brake thermal efficiency, and lower brake specific fuel consumption than pure CB30. Both antioxidants significantly reduced NOX emission; however, CO, HC, and smoke opacity were slightly higher than those of CB30. Based on this study, Alexandrian laurel or C inophyllum biodiesel blend (CB30) with antioxidant can be used as an alternative fuel in a diesel engine without modifications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:最近,亚历山大月桂树或Calophyllum inophyllum油被认为是最令人期待的非消耗性或非食用性生物柴油来源之一。通过添加1%(以体积计)的两种抗氧化剂(例如2,6-二叔丁基),尝试增加氧化稳定性并研究柴油机的发动机性能,排放和燃烧特性。 -丁基-4-甲基苯酚和2,2'-亚甲基双(4-甲基-6-叔丁基苯酚),以及含柴油(B0)的菊苣生物柴油(CB30)的百分比较高。为此,实验是在单缸水冷直喷柴油机上进行的。两种抗氧化剂的添加都增加了氧化稳定性,而没有显着改变其他物理化学性质。结果还表明,抗氧化剂增强了生物柴油的燃烧开始,从而缩短了点火延迟。纯CB30及其与抗氧化剂的改性共混物在预混燃烧阶段的峰值压力和峰值放热速率高于B0。与纯CB30相比,两种抗氧化剂混合物均显示出更高的制动功率,更高的制动热效率和更低的制动比油耗。两种抗氧化剂均显着降低了NOX的排放。但是,CO,HC和烟的不透明度略高于CB30。根据这项研究,亚历山大月桂树或菊苣生物柴油生物混合物(CB30)与抗氧化剂可以用作柴油发动机的替代燃料,而无需进行任何修改。 (C)2015 Elsevier Ltd.保留所有权利。

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