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Influence of alumina nanoparticles, ethanol and isopropanol blend as additive with diesel-soybean biodiesel blend fuel: Combustion, engine performance and emissions

机译:氧化铝纳米颗粒,乙醇和异丙醇混合物作为添加剂与柴油-大豆生物柴油混合燃料的影响:燃烧,发动机性能和排放

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Experimental investigation was carried out to study the combustion, engine performance and emission characteristics of a single cylinder, naturally aspirated, air cooled, constant speed compression ignition engine, fuelled with two modified fuel blends, B20 (Diesel soybean biodiesel) and diesel soybean biodiesel ethanol blends, with alumina as a nanoadditive (D80SBD15E4S1 + alumina), and the results are compared with those of neat diesel. The nanoadditive was mixed in the fuel blend along with a suitable surfactant by means of an ultrasonicator, to achieve stable suspension. The properties of B20, D80SBD15E4S1 + alumina fuel blend are changed due to the mixing of soybean biodiesel and the incorporation of the alumina nanoadditives. Some of the measured properties are compared with those of neat diesel, and presented. The cylinder pressure during the combustion and the heat release rate, are higher in the D80SBD15E4S1 + alumina fuel blend, compared to neat diesel. Further, the exhaust gas temperature is reduced in the case of the D80SED15E4S1 + alumina fuel blend, which shows that higher temperature difference prevailing during the expansion stroke could be the major reason for the higher brake thermal efficiency in the case of D80SBD15E4S1 + alumina fuel blend. The presence of oxygen in the soybean biodiesel, and the better mixing capabilities of the nanoparticles, reduce the CO and UBHC appreciably, though there is a small increase in NOx at full load condition. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了实验研究,以研究采用两种改性混合燃料B20(柴油大豆生物柴油)和柴油大豆生物柴油乙醇为燃料的自然吸气,风冷,等速压缩点火发动机的单缸燃烧,发动机性能和排放特性。与氧化铝作为纳米添加剂(D80SBD15E4S1 +氧化铝)混合,然后将结果与纯柴油进行比较。通过超声发生器将纳米添加剂与合适的表面活性剂一起混合在燃料混合物中,以实现稳定的悬浮。 B20,D80SBD15E4S1 +氧化铝燃料混合物的性能由于大豆生物柴油的混合和氧化铝纳米添加剂的掺入而改变。将一些测得的性能与纯柴油的性能进行比较,并进行介绍。与纯柴油相比,D80SBD15E4S1 +氧化铝燃料混合物的燃烧过程中的气缸压力和放热率更高。此外,在D80SED15E4S1 +氧化铝燃料混合物的情况下降低了排气温度,这表明在膨胀冲程期间存在较高的温差可能是在D80SBD15E4S1 +氧化铝燃料混合物的情况下较高的制动热效率的主要原因。 。大豆生物柴油中氧气的存在,以及纳米颗粒更好的混合能力,虽然在满负荷条件下NOx的增加很小,但可以显着降低CO和UBHC。 (C)2015 Elsevier Ltd.保留所有权利。

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