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首页> 外文期刊>Separation and Purification Technology >Effects of solid pre-treatment towards optimizing supercritical methanol extraction and transesteriflcation of Jatropha curcas L seeds for the production of biodiesel
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Effects of solid pre-treatment towards optimizing supercritical methanol extraction and transesteriflcation of Jatropha curcas L seeds for the production of biodiesel

机译:固体预处理对麻疯树种子超临界甲醇萃取和酯交换反应的优化,以生产生物柴油

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Experimental studies for in situ extraction and transesteriflcation of oil seeds had been carried out recently for the process intensification of biodiesel production. As opposed to the conventional method, the solid oil seeds would be in direct contact with the transesteriflcation reagent. Both the oil extraction and subsequent transesteriflcation process to biodiesel will occur simultaneously. Consequently, solid pre-treatments would play a critical role to ensure that the oil seeds are in a state for optimal oil extraction. Apart from obtaining a higher yield, this could also ensure that the oil extraction phase would not bottleneck the entire in situ extraction and transesteriflcation process. However, solid pre-treatments could be both cost and energy intensive and therefore should be carefully selected for optimum advantages. In this experimental work, ground Jatropha curcas L. seeds were subjected to pre-treatments processes including de-shelling, sieving, drying and heat treatment at five different temperatures (45-105 °C) and two different durations (12 and 24 h) before undergoing single-step supercritical methanol extraction and transesteriflcation. Conventional two-step extraction and transesteriflcation was also performed as comparison to the single-step process. The effects of each pre-treatment were analyzed and optimized towards two responses (extraction and FAME yield). The highest extraction and FAME yield for the two-step and single-step processes were 66.82% w/w, 114.87% w/w and 68.50% w/w, 128.78% w/w respectively. Single-step supercritical methanol extraction and transesteriflcation was found to be able to provide a higher extraction and FAME yield for the production of biodiesel with less pre-treatment stages and intensity as compared to the conventional two-step process. Therefore, this is a highly promising approach to reduce the high biodiesel production cost which is currently impairing the industry.
机译:最近已经进行了油籽原位提取和酯交换的实验研究,以增强生物柴油的生产过程。与常规方法相反,固体油种子将与酯交换试剂直接接触。油提取和随后的向生物柴油的酯交换过程将同时发生。因此,固体预处理对于确保油料种子处于最佳采油状态起着至关重要的作用。除了获得更高的收率外,这还可以确保油提取阶段不会成为整个原位提取和酯交换过程的瓶颈。然而,固体预处理可能既耗费成本又耗能,因此应谨慎选择以获得最佳优势。在这项实验工作中,将磨碎的麻风树种子进行预处理,包括在五个不同的温度(45-105°C)和两个不同的持续时间(12和24小时)进行脱壳,筛分,干燥和热处理在进行单步超临界甲醇萃取和酯交换之前。与单步工艺相比,还进行了常规的两步萃取和酯交换反应。分析了每种预处理的效果,并针对两个响应(提取和FAME产量)进行了优化。两步法和单步法的最高提取率和FAME产率分别为66.82%w / w,114.87%w / w和68.50%w / w,128.78%w / w。与常规的两步法相比,发现单步超临界甲醇萃取和酯交换能够以较少的预处理步骤和强度为生产生物柴油提供更高的萃取率和FAME产率。因此,这是降低目前正在损害工业的高生物柴油生产成本的非常有前途的方法。

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