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首页> 外文期刊>Renewable energy >Emission reduction in a DI diesel engine using exhaust gas recirculation (EGR) of palm biodiesel blended with TiO_2 nano additives
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Emission reduction in a DI diesel engine using exhaust gas recirculation (EGR) of palm biodiesel blended with TiO_2 nano additives

机译:使用棕榈生物柴油与TiO_2纳米添加剂混合的废气再循环(EGR)可以减少DI柴油发动机的排放

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摘要

Recent developments in nano additives focuses on lowering the diesel engine exhaust emissions. While the usage of biodiesel in diesel engine at lower blend percentage (10%-30%) with mineral diesel can be well utilized without any engine modifications, the main striking factor in biodiesel application in diesel engine is higher NOx formation due to excess in-built O-2, which could be overcome with the usage of EGR (exhaust gas recirculation). However, EGR usage raises the concerns of HC, CO and smoke emissions. Overcoming the above existing problem, the current research proposal focuses on EGR of B30 (30% palm biodiesel-70%diesel) blended with 25 ppm TiO2 nanoparticles (PBN). Experimental test results obtained for PBN-EGR were outstanding than the conventional PB-EGR system since there is a noticeable drop in BSFC, HC and CO emissions with increase in EGT (exhaust gas temperature) than PBN. NOx emissions of PBN-EGR were on par with PB-EGR throughout the load. At higher engine loads, smoke emitted by PBN-EGR were lower than PB-EGR. With increase in EGR percentage in PBN, cylinder pressure was only marginally lower and heat release rate was higher than PBN. The present investigation enumerates that the synergic effect of nanoparticle, biodiesel and EGR is effective in improving the performance with minimized exhaust emissions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:纳米添加剂的最新发展集中在降低柴油发动机的废气排放上。尽管无需改动任何发动机即可很好地利用生物柴油与矿物柴油以较低的混合比例(10%-30%)使用,但生物柴油在柴油发动机中的主要应用因素是由于过量的内含物,从而形成了更高的氮氧化物。内置O-2,可以通过使用EGR(废气再循环)来克服。但是,EGR的使用引起了对HC,CO和烟雾排放的担忧。为了克服上述现有问题,当前的研究计划集中在掺入25 ppm TiO2纳米颗粒(PBN)的B30(30%棕榈生物柴油-70%柴油)的EGR中。 PBN-EGR的实验测试结果优于常规PB-EGR系统,因为与PBN相比,随着EGT(废气温度)的增加,BSFC,HC和CO排放显着下降。在整个负载中,PBN-EGR的NOx排放量与PB-EGR相当。在较高的发动机负载下,PBN-EGR排放的烟气低于PB-EGR。随着PBN中EGR百分比的增加,气缸压力仅略微降低,放热率高于PBN。本研究列举了纳米颗粒,生物柴油和EGR的协同作用可有效地改善性能,同时将废气排放降至最低。 (C)2019 Elsevier Ltd.保留所有权利。

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