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Experimental Investigation to Study the Effect of Properties of Coconut Oil Biodiesel and Castor Oil Biodiesel and its Blending with Diesel on the Performance in a CI Engine

机译:椰子油生物柴油和蓖麻油生物柴油特性及其与柴油机混合在CI发动机性能下的实验研究

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Vegetable oils and its esters are being considered seriously for internal combustion engines. It has many advantages such as it is renewable, nontoxic, sulphur free and biodegradable. But there are several problems associated with its use in diesel engines such as lower thermal efficiency and higher smoke levels compared to diesel. One of the methods by which these problems can be tackled is by blending of diesel (DSL) with biodiesels. In this work coconut oil biodiesel and castor oil biodiesel which are obtained from different sources are chosen, considering the wide variation in properties such as viscosity and degree of unsaturation. For coconut oil biodiesel (COBD) and castor oil biodiesel (CSBD), iodine value, which is an indication of the degree of unsaturation, was determined experimentally. The property influence on the performance of COBD and CSBD and its blends with equal volume with diesel was studied. Due to low viscosity, low density and high cetane value, COBD compared to CSBD has better performance and combustion characteristics. It is observed that higher thermal efficiency of 28.97% was obtained using COBD compared to 26.68% for CSBD. There is a significant reduction in NO emission with the addition of DSL to CSBD compared to CSBD operation. This also improved the performance characteristics due to reduction in viscosity and density of both COBD and CSBD. Compared to the thermal efficiency of COBD and CSBD the thermal efficiency of COBD-DSL and CSBD-DSL has increased to 29.72% and 26.85% respectively indicating improvement in atomization and combustion characteristics.
机译:对于内燃机,植物油及其酯被认为是严肃的。它具有许多优点,例如可再生,无毒,无硫和可生物降解。但是与柴油发动机的使用有几个问题,例如与柴油相比较低的热效率和较高的烟雾水平。可以解决这些问题的方法之一是通过将柴油(DSL)与生物柴油混合。在这项工作中,选择从不同来源获得的椰子油生物柴油和蓖麻油生物柴油,考虑到诸如粘度和不饱和度的宽度变化。对于椰子油生物柴油(COBD)和蓖麻油生物柴油(CSBD),实验确定了不饱和度的指示的碘值。研究了对COBD和CSBD性能的性能及其与柴油等相同体积的混合物。由于低粘度,低密度和高十六烷值,与CSBD相比,COBD具有更好的性能和燃烧特性。观察到使用COBD获得的较高的热效率为28.97%,而CSBD的26.68%则获得。与CSBD操作相比,在CSBD中加入DSL的发射显着减少。这也提高了由于COBD和CSBD的粘度和密度的降低而改善了性能特征。与COBD和CSBD的热效率相比,COBD-DSL和CSBD-DSL的热效率分别增加到29.72%和26.85%,表明雾化和燃烧特性的改善。

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