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Investigation of Engine Emission with Diesel-Palm Biodiesel-Antioxidant Blend

机译:柴油-棕榈生物柴油-抗氧化剂混合物对发动机排放的研究

摘要

Similar properties ofbiodiesel to conventional diesel have made biodiesel as a promising fuel. However, its NOx emission was reported higher by most researchers in the world. In this study, antioxidants are used in the effort of improving the oxidation stability ofbiodiesel and reducing the NOx emission while maintaining the engine performance. p-Phenylenediamine (PPD) and N, N'-diphenyl-pphenylenediamine (DPPD) are added in 0.025 wt% and 0.15 wt% concentrations, respectively into palm oil methyl ester-diesel blend. The performance characteristics ofbiodiesel blends are tested on a single cylinder engine with an attached emission analyser. The addition of the PPD and DPPD antioxidants improved the oxidation stability of biodiesel without affecting much in the density and kinematic viscosity. For B20 (20% biodiesel + 80% Euro 5 diesel), the addition ofDPPD showed the best results by reducing NO (0.8% lower on average), CO (10.8% lower on average) and HC emission (32.9% lower on average), as compared to B7 blend. However, in terms of engine performance, B20+DPPD showed higher BSFC and lower brake power when compared to B7 blend.
机译:生物柴油与常规柴油相似的特性已使生物柴油成为有前途的燃料。然而,世界上大多数研究人员报告其NOx排放量较高。在这项研究中,使用抗氧化剂来改善生物柴油的氧化稳定性并减少NOx排放,同时保持发动机性能。对-苯二胺(PPD)和N,N′-二苯基-对苯二胺(DPPD)分别以0.025重量%和0.15重量%的浓度添加到棕榈油甲基酯-柴油共混物中。生物柴油混合物的性能特征在带有附加排放分析仪的单缸发动机上进行了测试。 PPD和DPPD抗氧化剂的添加改善了生物柴油的氧化稳定性,而没有太大地影响密度和运动粘度。对于B20(20%生物柴油+ 80%欧5柴油),DPDP的添加通过减少NO(平均降低0.8%),CO(平均降低10.8%)和HC排放(平均降低32.9%)显示出最佳效果。 ,与B7混合相比。但是,就发动机性能而言,与B7混合燃料相比,B20 + DPPD显示出更高的BSFC和更低的制动功率。

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