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Biodiesel production from rice bran oil and supercritical methanol

机译:米糠油和超临界甲醇生产生物柴油

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摘要

In this study, production of biodiesel from low cost raw materials, such as rice bran and dewaxed degummed rice bran oil (DDRBO), under supercritical condition was carried out. Carbon dioxide (CO2) was employed as co-solvent to decrease the supercritical temperature and pressure of methanol. The effects of different raw materials on the yield of biodiesel production were investigated. In situ transesterification of rice bran with supercritical methanol at 30 MPa and 300 degrees C for 5 min was not a promising way to produce biodiesel because the purity and yield of fatty acid methyl esters (FAMEs) obtained were 52.52% and 51.28%, respectively, When DDRBO was reacted, the purity and yield were 89.25% and 94.84%, respectively. Trans-FAMEs, which constituted about 16% of biodiesel, were found. They were identified as methyl elaidate [trans-9], methyl linoleaidate [trans-9, trans-12], methyl linoleaidate [cis-9, trans-12], and methyl linoleaidate [trans-9, cis-12]. Hydrocarbons, which constituted about 3% of the reaction product, were also detected.
机译:在这项研究中,在超临界条件下,由米糠和脱蜡脱胶米糠油(DDRBO)等低成本原料生产了生物柴油。二氧化碳(CO2)被用作助溶剂以降低甲醇的超临界温度和压力。研究了不同原料对生物柴油产量的影响。米糠与超临界甲醇在30 MPa和300摄氏度下原位酯交换5分钟不是生产生物柴油的有前途的方法,因为获得的脂肪酸甲酯(FAME)的纯度分别为52.52%和51.28%,当DDRBO反应时,其纯度和产率分别为89.25%和94.84%。发现了占生物柴油约16%的反式脂肪酸甲酯。它们被鉴定为亚麻酸甲酯[反式9],亚油酸甲酯[反式9,反式12],亚油酸甲酯[顺式9,反式12]和亚油酸甲酯[反式9,顺式12]。还检测到构成反应产物约3%的烃。

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