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首页> 外文期刊>Materials science forum >Enhanced Biodiesel and Ethyl Levulinate Production from Rice Bran through Non Catalytic In Situ Transesterification under Subcritical Water Ethanol Mixture
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Enhanced Biodiesel and Ethyl Levulinate Production from Rice Bran through Non Catalytic In Situ Transesterification under Subcritical Water Ethanol Mixture

机译:通过在亚临界水乙醇混合物下,通过非催化在原位酯交换中从米糠增强生物柴油和乙基乙烯螺丁酯生产

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摘要

In-situ transesterification method without catalysts to produce biodiesel (fatty acid ethyl esters, FAEE) from rice bran using subcritical water ethanol mixture has been investigated. This method was found to be efficient since the rice bran oil (RBO) extraction and reaction of RBO into FAEE occur simultaneously. In this process other chemical (ethyl levulinate, EL) was also formed along with FAEE. EL can be used to improve the biodiesel quality by improving the low temperature properties of biodiesel. In this study effect of co-solvent types (without co-solvent, ethyl acetate, chloroform, and n-hexane) and water ethanol ratio (20%, 40%, 50%, 60% and 80%, v/v) on the content and yield of FAEE and EL at subcritical water ethanol mixture (T= 160°C, P= 80 bar, and t= 2 h) were investigated systematically. The content and yield of FAEE and EL obtained was found to be affected by the type of co-solvent. The content of FAEE and EL obtained without co-solvent (ethanol and water polarity index were PI=5.2 and PI=10.2, respectively) and with co-solvent of ethyl acetate (PI= 4.4), chloroform (PI= 4.1) and n-hexane (PI= 0.1) were 55.80% and 3.92%, 68.63% and 1.15%, 65.56% and 2.14%, and 62.00% and 0.93%, respectively. Higher polarity index of co-solvent extracted more RBO, as consequent the yield of FAEE (79.79%) obtained was higher using ethyl acetate as co-solvent. This data also suggested that RBO contains more free fatty acids (FFA= 63.59%) rather than of triglycerides (TG= 24.94%). The content and yield of FAEE and EL decreased with increasing water ethanol ratio. The highest content of FAEE (60.57%) and EL (8.48%) and yield of FAEE (78.03%) and EL (10.92%) were obtained using water ethanol ratio of 20%, v/v.
机译:已经研究了使用亚临界水乙醇混合物从水稻糠醛制备生物柴油(脂肪酸乙酯,茯苓)的催化剂的原位酯交换方法。发现该方法是有效的,因为米糠油(RBO)提取和RBO进入福茄的反应同时发生。在该过程中,还与福切一起形成了其他化学物质(乙酰乙酰硫酸乙酯,EL)。通过改善生物柴油的低温性能,可以使用EL来改善生物柴油质量。在该研究中的共溶剂类型(没有共溶剂,乙酸乙酯,氯仿和正己烷)和水乙醇比(20%,40%,50%,60%和80%,v / v)系统地研究了亚临界水乙醇混合物(T = 160℃,P = 80巴和T = 2小时)在亚临界水乙醇混合物(T = 160℃,P = 80巴)的含量和产量。发现所得茯苓和EL的含量和产量受到共溶剂类型的影响。没有共溶剂(乙醇和水极性指数的母料和EL的含量(分别为PI = 5.2和PI = 10.2),并具有乙酸乙酯(PI = 4.4)的共溶剂,氯仿(PI = 4.1)和N. - 己烷(PI = 0.1)分别为55.80%和3.92%,68.63%和1.15%,65.56%和2.14%,分别为62.00%和0.93%。共溶剂的较高极性指数提取更多的RBO,因此使用乙酸乙酯作为共溶剂的乙酸乙酯获得的肥胖(79.79%)的产率。该数据还表明RBO含有更多的游离脂肪酸(FFA = 63.59%)而不是甘油三酯(Tg = 24.94%)。随着水乙醇比例的增加,茯苓和EL的含量和产量降低。使用水乙醇比例为20%,v / v,获得最高含量(60.57%)和EL(8.48%)和EL(78.03%)和EL(10.92%)的产量。

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