A feasibility study to produce biodiesel from date seed oil by using trans- esterification process.

Athraa Aziz Saif Aziz AL-Hasni, S. Satyanarayana
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Abstract

There is a need to produce renewable energy resources to reduce the gap between supply and demand. The renewable energy can be generated from various kinds of resources like vegetable oils and animal fats. Biodiesel is one of alternative energy resources that can be an appealing option to solve many of global and environmental issues and crises. Production of biodiesel from several types of vegetable oils has become a promising option. The aim of this technical project is to produce biodiesel from date seed oil. The date seed oil is extracted from the date seeds. The date seed is mixed with methanol in 1:3 ratio in presence of catalyst. The mixture was kept in a hot air oven at 55 -60 degrees centigrade for six hours. The Trans esterification process produced a glycerol and methyl ester which is the biodiesel. The glycerol settled down due to its high-density and the upper layer was biodiesel (methyl ester) due to less density. The mixture was separated using a separating funnel. The biodiesel was purified by recovering methanol by using rotary evaporator. The biodiesel produced from date seed oil is analyzed for the viscosity, density, the calorific value was also obtained, and the Flash and Fire point was performed, determine the functional elements of biodiesel using Gas Chromatography. It was observed by gas chromatography analysis that the produced biodiesel contains nearly 70% of methyl ester which is a main component of biodiesel. The density of produced biodiesel was 0.895 g/cm3.The standard biodiesel density is 0.85 g/cm3. The results were compared with standard biodiesel values. Also, the produced biodiesel has been compared with the quality of standard biodiesel. The project yielded better results. Keywords: biodiesel, date seed oil, flash point, Trans- esterification.
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以椰枣籽油为原料,采用酯交换法生产生物柴油的可行性研究。
有必要生产可再生能源,以缩小供需差距。可再生能源可以从植物油和动物脂肪等各种资源中产生。生物柴油是一种可替代能源,可以成为解决许多全球和环境问题和危机的一个有吸引力的选择。从几种植物油中生产生物柴油已经成为一种很有前途的选择。本技术项目的目的是用枣籽油生产生物柴油。枣籽油是从枣籽中提取的。在催化剂的存在下,将枣子与甲醇按1:3的比例混合。混合物在55 -60摄氏度的热风烤箱中保存6小时。反式酯化反应生成甘油和甲酯,即生物柴油。甘油因其密度大而沉淀,上层为生物柴油(甲酯),密度小。用分离漏斗对混合物进行分离。采用旋转蒸发器回收甲醇提纯生物柴油。对以枣籽油为原料制备的生物柴油进行了粘度、密度、热值分析,并进行了闪点和燃点测定,用气相色谱法测定了生物柴油的功能元素。通过气相色谱法分析发现,所得生物柴油中甲酯的含量接近70%,甲酯是生物柴油的主要成分。所得生物柴油的密度为0.895 g/cm3。标准生物柴油密度为0.85 g/cm3。结果与标准生物柴油值进行了比较。并与标准生物柴油的质量进行了比较。这个项目产生了更好的结果。关键词:生物柴油,枣籽油,闪点,反式酯化。
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审稿时长
16 weeks
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