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Biodiesel production by supercritical process with crude bio-methanol prepared by wood gasification

机译:木材气化制得的粗生物甲醇通过超临界工艺生产生物柴油

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In order to prepare a genuine biodiesel, it is essential to use methanol prepared from biomass but not natural gas for biodiesel production. Thus, we have proposed to use crude bio-methanol produced by wood gasification for biodiesel production. Since such a bio-methanol contains some impurities, an effect of its impurities was studied on the biodiesel production by supercritical method. In general, impurities in crude bio-methanol are reported to include methyl formate, ethanol, I-butanol, diisopropyl ether, water, etc. Triglycerides and oleic acids were, thus, treated with these impurities under supercritical conditions. As a result, it was found that methyl formate, ethanol and 1-butanol could convert them to fatty acid alkyl esters (BDF), whereas no conversion was achieved with diisopropyl ether. Thus, crude bio-methanol can be used for BDF production as a substitute for methanol from fossil resources. However, due to more efficient reaction, crude bio-methanol can be more applicable to the two-step supercritical methanol process, consisting of hydrolysis of triglycerides and subsequent esterification of fatty acids, compared with the one-step supercritical methanol process, where transesterification of triglycerides is a major reaction. (c) 2007 Published by Elsevier Ltd.
机译:为了制备真正的生物柴油,必须使用由生物质而非天然气制得的甲醇来生产生物柴油。因此,我们提出将通过木材气化生产的粗制生物甲醇用于生物柴油的生产。由于这种生物甲醇包含一些杂质,因此研究了其杂质对通过超临界法生产生物柴油的影响。通常,据报道,粗制生物甲醇中的杂质包括甲酸甲酯,乙醇,异丁醇,二异丙醚,水等。因此,在超临界条件下用这些杂质处理了甘油三酸酯和油酸。结果发现,甲酸甲酯,乙醇和1-丁醇可以将它们转化为脂肪酸烷基酯(BDF),而二异丙醚则不能实现转化。因此,粗生物甲醇可用于BDF生产,以替代化石资源中的甲醇。但是,由于反应效率更高,与一步法超临界甲醇法(其中酯交换法)相比,粗制生物甲醇可更适用于两步法超临界甲醇法,该方法包括甘油三酸酯的水解和随后的脂肪酸酯化。甘油三酸酯是主要反应。 (c)2007年由Elsevier Ltd.发布。

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