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Engine Characteristic Studies by Application of Antioxidants and Nanoparticles as Additives in Biodiesel Diesel Blends

机译:通过在生物柴油柴油共混物中使用抗氧化剂和纳米颗粒作为添加剂的发动机特性研究

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摘要

This study evaluates the outcomes of antioxidants and nanoparticles as additives with biodiesel diesel blends on the engine working characteristics, carried on a single cylinder direct injection (DI) diesel engine, operated at invariable engine speed of 1500 rpm, invariable injection timing of 26 deg before top dead center with invariable injection pressure of 216 bar, under five different engine load conditions (0.08, 0.15, 0.23, 0.30, 0.45, and 0.53 MPa). The antioxidants and nanoparticles blended test fuels are used as fuels in this experimental investigation. The antioxidant as additive in fuel found to be more effective in suppressing the NO emission by disrupting the chain propagating reactions, trapping free radicals, and decomposing peroxides. The high surface area to volume of the nanoparticles acts as fuel borne catalyst by ameliorating the engine working characteristics and downplays the NO emission by buffering the oxygen molecule. The obtained experimental results indicates that B20SNAlCe test fuel enhances engine brake thermal efficiency (BTE) by 13% and reduces level of pollutants such as unburned hydrocarbon (UBHC) by 38%, nitric oxide by 32%, smoke opacity by 21%, and carbon monoxide by 60% in compared with B100.
机译:这项研究评估了抗氧化剂和纳米颗粒作为添加剂与生物柴油柴油共混物对发动机工作特性的影响,该发动机是在单缸直喷(DI)柴油发动机上进行的,发动机恒定转速为1500 rpm,恒定喷射定时为26 deg,在五种不同的发动机负载条件(0.08、0.15、0.23、0.30、0.45和0.53 MPa)下,喷射压力恒定为216 bar的上止点。在本实验研究中,将抗氧化剂和纳米颗粒混合的测试燃料用作燃料。发现抗氧化剂作为燃料中的添加剂,通过破坏链增长反应,捕获自由基和分解过氧化物,可以更有效地抑制NO排放。纳米颗粒具有高的体积比,可通过改善发动机工作特性来充当燃料催化剂,并通过缓冲氧分子降低NO排放。获得的实验结果表明,B20SNAlCe测试燃料可将发动机制动热效率(BTE)提高13%,并降低污染物水平,例如未燃烧的碳氢化合物(UBHC)降低38%,一氧化氮降低32%,烟气不透明度降低21%和碳一氧化碳比B100高60%。

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