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Comparative Studies of Biodiesel Production from Rubber Seed Oil, Coconut Oil, and Palm Oil Including Thermogravimetric Analysis

机译:橡胶籽油,椰子油和棕榈油生产生物柴油的比较研究,包括热重分析

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High viscosity and low volatility of vegetable oils compared to diesel lead to injector fouling and carbon deposits in engine cylinders while using them directly in engines. Biodiesel from the vegetable oils produced by a transesterification process could reduce viscosity considerably and improve the volatility. The properties of methyl esters produced from rubber seed oil, coconut oil, and palm kernel oil, which are locally available, especially in Kerala (India), are presented here. The viscosity of methyl esters of these oils is found to be comparable with diesel fuel as per ASTM D6751 -02. Biodiesel from rubber seed oil (with high FFA) was produced by employing a two-step pretreatment process (acid esterification) to reduce acid value from 48 to 1.72 mgKOH/g with 0.40 and 0.35 v/v methanol-oil ratio and 1.0% v/v H2SO4 as catalyst at a temperature of 63(±.2)°C with 1 h reaction time followed by transesterification using a methanol-oil ratio of 0.30 v/v, 0.5 w/v KOH as an alkaline catalyst at 55(±2)°C with 40 min reaction time to yield 98-99% biodiesel. Coconut oil and palm oil, being edible oils and having similarities in fatty acid composition, transesterification with 0.25 v/v methanol-oil ratio, 0.50% w/v KOH as alkaline catalyst at 58(±2)°C, 20 min reaction time for coconut oil and 0.25% v/v methanol-oil ratio, 0.50% w/v KOH as alkaline catalyst at 60(±2℃ for palm kernel oil converted them to 98-99% biodiesel. The viscosity of coconut biodiesel was more comparable to diesel fuel than that of other biodiesels, such as rubber seed oil biodiesel and palm oil biodiesel. Furthermore, thermogravimeric analysis indicated that coconut oil biodiesel is more volatile than other biodiesels and the volatility is nearer to diesel fuel.
机译:与柴油相比,植物油的高粘度和低挥发性导致直接在发动机中使用时导致喷油器结垢和发动机气缸中积碳。通过酯交换过程生产的植物油中的生物柴油可以大大降低粘度并改善挥发性。本文介绍了由橡胶籽油,椰子油和棕榈仁油制得的甲基酯的性能,这些化合物可在当地使用,尤其是在印度喀拉拉邦。根据ASTM D6751 -02,发现这些油的甲酯的粘度与柴油相当。橡胶籽油(FFA高)的生物柴油是通过两步预处理工艺(酸酯化)将酸值从48降低到1.72 mgKOH / g,甲醇油比为0.40和0.35 v / v,1.0%v / v H2SO4在63(±.2)°C的温度下以1小时的反应时间作为催化剂,然后使用甲醇/油比为0.30 v / v,0.5 w / v的KOH作为碱性催化剂在55(± 2)°C,反应时间为40分钟,得到98-99%的生物柴油。椰子油和棕榈油为食用油,具有相似的脂肪酸组成,以0.25 v / v的甲醇/油比,0.50%w / v的KOH作为碱性催化剂在58(±2)°C下进行酯交换反应,反应时间为20分钟椰子油和0.25%v / v甲醇/油比,0.50%w / v KOH作为碱性催化剂(在60°C(±2℃)下,棕榈仁油将其转化为98-99%的生物柴油。热重分析表明,椰子油生物柴油比其他生物柴油具有更高的挥发性,挥发性也更接近柴油。

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