首页> 外文期刊>International Journal of Technology >Comparative Study of Batchwise Solvent Extraction and the Microwave Assisted Extraction Method for the Purification of Triglyceride for Biodiesel Feedstock from Crude Calophyllum Inophyllum Oil (CCIO)
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Comparative Study of Batchwise Solvent Extraction and the Microwave Assisted Extraction Method for the Purification of Triglyceride for Biodiesel Feedstock from Crude Calophyllum Inophyllum Oil (CCIO)

机译:分批溶剂萃取的比较研究及微波辅助提取法从粗钙芦荟(CCIO)纯化生物柴油原料纯化甘油三酯

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Recently, edible oil has been employed for biodiesel feedstocks.  However, the use of such oil to fulfil energy demand raises certain problems, such as the sustainability of the practice due to its competition with food. Therefore, it is necessary to obtain alternative resources from non-edible oil. One promising biodiesel feedstock from a non-edible oil source is crude Calophyllum inophyllum oil (CCIO) because of its high oil content. The highest oil content in CCIO is triglyceride (TG), which influences biodiesel production. The higher content of TG results in a higher yield of biodiesel. Previous research on the conversion of CCIO into biodiesel with an environmentally friendly purification method and fast separation of compounds is limited. In this work, batchwise solvent extraction (BSE) and microwave-assisted extraction (MAE) were compared to achieve an effective and efficient method for TG purification.  By using the microwave method with 450 watts of power for 30 minutes, a high content of TG was obtained.  It was found that TG content increased significantly, from 75.99% to 83.46%. Using the BSE method with a mixture of petroleum ether?methanol (methanol 25%), a solvent-to-oil mass ratio of 5:1, time for the first 2 stages  (48 hours),  the TG content obtained was 82.02%. The data obtained for the microwave method are almost equivalent to the first 2 stages of BSE with regard to TG content (83.46% compared to 82.02%) and almost 0.01 times shorter than BSE (30 minutes compared to 48 hours).
机译:最近,食用油已用于生物柴油原料。然而,使用这种油来满足能源需求提出了某些问题,例如由于其与食物的竞争而导致的做法的可持续性。因此,有必要获得来自不可食用油的替代资源。来自非食用油源的一个有前途的生物柴油原料是粗钙绿的油脂(CCIO),因为其高油含量。 CCIO中的最高油含量是甘油三酯(TG),其影响生物柴油生产。 TG的较高含量导致生物柴油的产量更高。以前通过环境友好的净化方法将CCIO转化为生物柴油的研究和化合物的快速分离是有限的。在这项工作中,比较了分批溶剂萃取(BSE)和微波辅助萃取(MAE),以实现有效和有效的Tg纯化方法。通过使用具有450瓦功率的微波方法30分钟,获得高含量的Tg。发现TG含量显着增加,从75.99%增加到83.46%。使用具有石油醚混合物的BSE方法甲醇(甲醇25%),溶剂 - 油质量比为5:1,时间为前2阶段(48小时),得到的Tg含量为82.02%。用于微波法得到的数据几乎相当于BSE的前2个阶段,关于TG含量(83.46%,而83.46%,而82.02%),比BSE短几乎0.01倍(与48小时相比30分钟)。

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