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Wastes to energy: Improving the poor properties of waste tire pyrolysis oil with waste cooking oil methyl ester and waste fusel alcohol - A detailed assessment on the combustion,emission,and performance characteristics of a CI engine

机译:能量浪费:利用废物烹饪油甲酯和废料氟醚醇的废弃轮胎热解油的特性 - 对CI发动机的燃烧,发射和性能特征进行详细评估

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The core objective of this study is to pull back the worsened combustion, emission, and performance characteristics of a CI engine fuelled with waste tire pyrolysis oil diesel fuel blends. Four fuels are tested in the experiments. These are (1) 100% diesel fuel, (2) 20% waste tire pyrolysis oil ? 80% diesel fuel, (3) 10% pyrolysis oil and 80% diesel fuel containing 10% waste biodiesel, and finally, (4) 10% waste tire pyrolysis oil and 80% diesel fuel containing 10% waste fusel oil. The tests are performed at a constant engine speed of 2400 rpm, and varying engine loads from 3 to 12 Nm with intervals of 3 Nm. In the results, it is noticed that using of waste tire pyrolysis oil diesel fuel blend is reducing the brake thermal efficiency down to 9.13% for waste tire pyrolysis oil diesel fuel blends, however, this reduction is being pulled back by 7.51%, and 3.82% with the addition of waste biodiesel, and fusel oil, respectively as compared to that of diesel fuel. On the other hand, waste tire pyrolysis oil diesel fuel blend increased the brake specific fuel consumption by 21.78%, however, this increase is being pulled back by 8.89%, and 12.57% for waste biodiesel, and fusel oil, respectively. The increase in carbon monoxide for waste tire pyrolysis oil-diesel fuel is 7.09% in comparison with that of diesel fuel. However, with the addition of biofuels, carbon monoxide is being dropped by 7.69% for waste biodiesel, and 19.23% for fusel oil due to the high oxygen contents of waste biofuels. Moreover, waste tire pyrolysis oil-diesel fuel blend is increasing nitrogen oxide by 7.09%, but this increase by 4.64% with the addition of waste biodiesel. On the other hand, the addition of fusel oil is converting the increasing trend of nitrogen oxide into a reduction of 3.09% owing to fusel oil?s water content. As a consequence, this research is proving that the waste biofuels are able to improve poor combustion, emission, and performance characteristics of binary waste tire pyrolysis oil diesel blend with the doping of waste biofuels, and suggesting ternary blends rather than waste tire pyrolysis oil alone for diesel engines. Moreover, it is noticed that burning waste products is a very effective tool for both waste management and alternate to fossil fuels. ? 2021 Elsevier Ltd. All rights reserved.
机译:本研究的核心目标是拉回与废轮胎热解油柴油混合的CI发动机的燃烧,发射和性能特征。在实验中测试了四种燃料。这些是(1)100%柴油燃料,(2)20%废弃轮胎热解油? 80%柴油燃料,(3)10%热解油和80%柴油燃料,含有10%废物生物柴油,最后,(4)10%废轮胎热解油和80%柴油燃料,含有10%的废物熔丝油。测试以2400rpm的恒定发动机速度执行,并且变化的发动机从3到12nm的载荷,间隔为3nm。结果,注意到,使用废轮胎热解油柴油燃料混合物将制动力效率降低至9.13%的废轮胎热解油柴油混合物,然而,这种减少将被拉回7.51%和3.82与柴油燃料相比,分别添加废物生物柴油和熔炉油。另一方面,废轮胎热解油柴油燃料混合物将制动器特异性燃料消耗增加21.78%,然而,这一增加将分别被拉回8.89%,以及废物生物柴油和熔炉油的12.57%。与柴油燃料的燃料相比,废弃轮胎热解油柴油燃料的一氧化碳的增加是7.09%。然而,随着生物燃料的加入,由于废物燃料的高氧含量,金氧化碳被滴加7.69%,对废物生物柴油的19.23%。此外,废轮胎热解油 - 柴油燃料混合物将氮氧化物增加7.09%,但加入废物生物柴油,这种增加4.64%。另一方面,由于氟于素油含量的水含量,添加泡沫油正在将氮氧化物的增加趋势转化为3.09%的减少。因此,这项研究证明,废物生物燃料能够改善二元废弃物热解油柴油柴油柴油混合物的燃烧,排放和性能特征,以及造成废物生物燃料的掺杂,并表明单独的三元共混物而不是废弃轮胎热解油用于柴油发动机。此外,注意到燃烧废物是废物管理和对化石燃料交替的非常有效的工具。还2021 Elsevier Ltd.保留所有权利。

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