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首页> 外文期刊>Biofuels >Investigation of performance and emissions of diesel engine run on biodiesel produced from karanja oil in a single-step transesterifkation process using heterogeneous catalyst (lithium-impregnated calcium oxide)
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Investigation of performance and emissions of diesel engine run on biodiesel produced from karanja oil in a single-step transesterifkation process using heterogeneous catalyst (lithium-impregnated calcium oxide)

机译:用异构催化剂(锂浸渍氧化钙)在单步近透视工艺中柴油发动机柴油机柴油机效果和排放的研究

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摘要

Biodiesel (karanja oil methyl ester, KOME) was produced from karanja oil using heterogeneous catalyst (lithium impregnated calcium oxide, Li-CaO) in a single-step process. A performance and emission analysis of a diesel engine was carried out by blending 10, 20, 30 and 50% KOME with diesel, as well as with pure KOME, and comparing the results with diesel fuel. Calcium oxide was produced from calcium carbonate and used to prepare Li-CaO. Reaction parameters such as molar ratio of methanol to oil, concentration of Li-CaO and reaction temperature were varied to obtain the optimized reaction condition. For the entire process, reaction time was kept constant (2 h). A 100% yield was obtained using 5 wt.% of Li-CaO with a 12:1 molar ratio of methanol to oil at 65 degrees C. The ester content of KOME was 98.37% as measured by the gas chromatography method (GCM) technique. Important properties of KOME were measured which meet the biodiesel standard. At higher loads, BD10 showed an improvement in brake thermal efficiency as compared to diesel. The emissions of CO and smoke were reduced for blended fuels while emissions of NOx were increased for almost all loading conditions, as compared with diesel. A blend of up to 20% KOME with diesel shows satisfactory engine performance.
机译:在单步过程中,使用异质催化剂(锂浸渍氧化钙,Li-CaO)制备生物柴油(Karanja油甲酯,Kome)。通过将10,20,30和50%Kome与柴油以及纯Kome混合,以及纯kome,并将柴油燃料的结果进行比较,对柴油发动机进行性能和排放分析。氧化钙由碳酸钙制备并用于制备Li-CaO。改变反应参数,例如甲醇与油的摩尔比,浓度和反应温度,得到优化的反应条件。对于整个过程,反应时间保持恒定(2小时)。使用5重量%的产量5重量%的产量。用12:1摩尔比的Li-CaO与65℃的油状物。通过气相色谱法(GCM)技术测量的Kome的酯含量为98.37% 。测量符合生物柴油标准的Kome的重要特性。在较高的载荷时,与柴油相比,BD10显示出制动热效率的提高。与柴油相比,混合燃料的共混燃料减少了CO和烟雾的排放,而NOx的排放量几乎含有柴油。与柴油最多20%Kome的混合显示出令人满意的发动机性能。

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