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首页> 外文期刊>Renewable energy >Microscopic characteristics of biodiesel - Graphene oxide nanoparticle blends and their Utilisation in a compression ignition engine
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Microscopic characteristics of biodiesel - Graphene oxide nanoparticle blends and their Utilisation in a compression ignition engine

机译:生物柴油 - 石墨烯氧化物纳米粒子混合物的显微特性及其在压缩点火发动机中的利用

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Use of nano-additives in biofuels is an important research and development topic for achieving optimum engine performance with reduced emissions. In this study, rice bran oil was converted into biodiesel and graphene oxide (GO) nanoparticles were infused into biodiesel-diesel blends. Two blends containing (i) 5% biodiesel, 95% diesel and 30 ppm GO (B5D95GO30) and (ii) 15% biodiesel, 85% diesel and 30 ppm GO (B15D85GO30) were prepared. The fuel properties like heating value, kinematic viscosity, cetane number, etc. of the nanoadditives-biodiesel-diesel blends (NBDB) were measured. Effects of injection timing (IT) on the performance, combustion and emission characteristics were studied. It was observed that both B15D85GO30 and B5D95GO30 blends at IT23 degrees gave up to 13.5% reduction in specific fuel consumption. Compared to diesel, the brake thermal efficiency was increased by 7.62% for B15D85GO30 at IT23 degrees and IT25 degrees. An increase in IT from 23 degrees to 25 degrees deteriorated the indicated thermal efficiency by 6.68% for B15D85GO30. At maximum load condition, the peak heat release rates of NBDB were found to be lower than the pure diesel at both IT. The CO, CO2 & NOx emissions were reduced by 2-8%. The study concluded that B15D85GO30 at IT23 degrees gave optimum results in terms of performance, combustion and emission characteristics. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在生物燃料中使用纳米添加剂是实现最佳发动机性能的重要研发主题,减少排放量。在这项研究中,将米糠油转化为生物柴油,将氧化物(GO)纳米颗粒注入生物柴油 - 柴油共混物中。含有(I)5%生物柴油,95%柴油和30ppm(B5D95Go30)和(ii)15%生物柴油,85%柴油和30ppm(B15D85Go30)的含有5%的共混物。测量纳米载体 - 生物柴油 - 柴油共混物(NBDB)的加热值,运动粘度,十六烷数等的燃料特性。研究了注射时间(IT)对性能,燃烧和排放特性的影响。观察到,B15D85Go30和B5D95Go30在IT23度下混合,特定燃料消耗降低了高达13.5%。与柴油相比,在IT23度和IT25度下,B15D8520的制动热效率增加了7.62%。对于B15D85GO30,23度至25度的增加劣化了6.68%的显示的热效率。在最大载荷条件下,发现NBDB的峰值热释放速率低于其纯柴油。 CO,CO2和NOx排放减少了2-8%。该研究得出结论,IT23度的B15D85Go30在性能,燃烧和排放特性方面具有最佳结果。 (c)2020 elestvier有限公司保留所有权利。

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