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In-Cylinder Combustion and Emission Characteristics of an Agricultural Diesel Engine Fuelled with Blends of Diesel and Oxidatively Stabilized Calophyllum Methyl Ester

机译:用柴油和氧化稳定性的钙镁甲酯的混合物燃料的缸内燃烧和发射特性。

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In the present experimental investigation, performance, emission and combustion characteristics of a single cylinder diesel engine using diesel-biodiesel blends and antioxidant containing biodiesel test fuels was carried out. The potential suitability of aromatic amine based antioxidants to enhance the oxidation stability of biodiesel on one hand and reduction of tail pipe oxides of nitrogen (NOx) on the other were evaluated. Tertiary Butyl Hydroquinone (TBHQ) was considered as the antioxidant and Calophyllum Inophyllum vegetable oil was taken as the feedstock for biodiesel production. The test fuel samples were neat diesel (D100), 10% and 20% blend of Calophyllum biodiesel with diesel (CB10 and CB20) and 1500 ppm of TBHQ in CB10 and CB20 (CBT10 and CBT20). The results indicated that neat biodiesel blended test fuels (CB10 and CB20) exhibited lower brake thermal efficiency compared to the diesel baseline by a margin of 3% to 10% at full load. The full load carbon monoxide (CO) emission of D100 was highest and stood at 0.14%. CBT10 and CBT20 exhibited 0.11% and 0.13% by volume at full load CO emission as compared to 0.08% and 0.1% by volume exhibited by CB10 and CB20 respectively. Aromatic amine contacting test fuels (CBT10 & CBT20) indicated an encouraging reduction of 4.2% to 6.1% in full load NOx emission compared to CB10 and CB20. It was observed that the full load heat release rate was highest for D100 that stood at 67.56 J/oCA followed by 65.92 J/oCA, 57.69 J/oCA, 56.92 J/oCA and 53.56 J/oCA exhibited by CB10, CB20, CBT10 and CBT20 test fuels respectively.
机译:在本实验研究中,进行了使用柴油机 - 生物柴油混合物和含有生物柴油试验燃料的抗氧化剂的单个汽缸柴油机的性能,发射和燃烧特性。评价芳族胺基抗氧化剂在一方面提高生物柴油氧化稳定性的潜在适用性,并评估了另一方面的氮气(NOx)的尾管氧化物的氧化物氧化物。将叔丁基氢醌(TBHQ)视为抗氧化剂,抗氧化剂植物油作为生物柴油生产的原料。测试燃料样品是纯柴油(D100),10%和20%的Calophyllum生物柴油混合物,CB10和CB20中的1500ppm的TBHQ(CBT10和CBT20)。结果表明,与柴油基线相比,纯净的生物柴油混合试验燃料(CB10和CB20)与柴油基线相比,在满负荷下的3%至10%的边距表现出较低的制动热效率。 D100的全载荷一氧化碳(CO)排放最高,并为0.14%。 CBT10和CBT20在满载共同发射时表现出0.11%和0.13%,分别为CB10和CB20的0.08%和0.1%(0.1%)。与CB10和CB20相比,芳香胺接触试验燃料(CBT10&CBT20)表明满载NOx排放中令人振奋的4.2%至6.1%。据观察,D100的全部负荷热释放速率最高,在67.56 j / oca,其后跟65.92 j / oca,57.69 j / oca,56.92 j / oca和53.56 j / oca,56.92 j / oca和53.56 j / oca展示,Cb10,cb20,cbt10和CBT20分别试验燃料。

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