Experimental Investigation of Plastic Pyrolysis Oil in DI Diesel Engine to Analyze Performance and Emission Characteristics

Q3 Engineering
Jilse Sebastian, Sachin Jose, Anandhu Vijayakumar
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Abstract

Disposal of non-biodegradable plastic waste is one of the major hindrances for many countries. The research works in area of plastic waste management expands almost like every day. The conversion of waste to energy recovery is one of the promising techniques found to manage the waste plastic. Waste plastics have the dominating factor for fuel production since they have good heat of combustion and also their growing availability. The present work examines the potential of using blends of plastic oil (PO) with diesel in a direct injection diesel engine. The plastic oil is synthesized through pyrolysis process from mixed plastic waste, which has got more potential for scalable implementations. The present work includes the production of PO, characterization of the produced PO, performance and emission testing in a single cylinder four stroke VCR multi fuel engine. The engine is fueled with blends of plastic oil with diesel. Four blends of plastic oil with diesel (5% PO, 10% PO, 15% PO and 20% PO) are prepared on a volumetric basis. The test results show that brake thermal efficiency of blends is lower compared to diesel. Yet 10% PO shows similar performance to that of diesel fueled operation. The regulated emissions are reduced considerably when compared to Diesel fueling. Among all the test compositions, 10% PO shows better emission characteristics. 10% PO shows lower unburned hydrocarbon, CO, CO2 and smoke compared to other test fuels.
塑料热解油在直喷式柴油机上的试验研究及其性能和排放特性分析
<div class="section abstract"><div class="htmlview段落">处理不可生物降解的塑料废物是许多国家面临的主要障碍之一。塑料垃圾管理领域的研究工作几乎每天都在扩大。废物转化为能源回收是一种很有前途的处理废塑料的技术。废塑料是燃料生产的主要因素,因为它们具有良好的燃烧热,而且它们的可用性也越来越高。目前的工作考察了在直喷柴油机中使用塑料油(PO)与柴油的混合物的潜力。以混合塑料废弃物为原料,采用热解法合成塑料油,具有较大的规模化应用潜力。本文的工作内容包括:环氧丙烷的生产、性能表征、单缸四冲程VCR多燃料发动机的性能和排放测试。这台发动机的燃料是塑料油和柴油的混合物。以体积为基础制备了四种塑料油与柴油的混合物(5% PO, 10% PO, 15% PO和20% PO)。试验结果表明,混合燃料的制动热效率比柴油低。然而,10%的PO表现出与柴油燃料运行相似的性能。与柴油燃料相比,规定的排放大大减少。在所有测试成分中,10%的PO表现出较好的发射特性。10% PO表现出较低的未燃烃、CO、CO<sub>2</sub>与其他测试燃料相比。</div> /div>
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来源期刊
SAE Technical Papers
SAE Technical Papers Engineering-Industrial and Manufacturing Engineering
CiteScore
1.00
自引率
0.00%
发文量
1487
期刊介绍: SAE Technical Papers are written and peer-reviewed by experts in the automotive, aerospace, and commercial vehicle industries. Browse the more than 102,000 technical papers and journal articles on the latest advances in technical research and applied technical engineering information below.
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