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REPEATED USE OF METHANOL AND SULFURIC ACID TO PRETREAT JATROPHA OIL FOR BIODIESEL PRODUCTION

机译:反复使用甲醇和硫酸对生物柴油生产的预妥妥妥妥造黄水

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Large-scale plantation of jatropha will provide low-cost and reliable feedstock for biodiesel production, but jatropha oil has the tendency to degrade so that it often contains excessive free fatty acid (FFA). In this study, an efficient method was developed by repeated use of the mixture of methanol and sulfuric acid for the pretreatment of jatropha oil with an acid value of 10.4 mg KOH/g. A quadratic polynomial model was established by investigating the effect of water content on the conversion of FFA, while the molar ratio of methanol to FFA was 270:1 and the weight ratio of sulfuric acid to jatropha oil was 1.6%. This model was proved to be valid when the mixture of methanol and sulfuric acid had been used for twenty times. Total sulfuric acid and methanol used for these twenty experiments was 0.21% and 21% respectively, based on the weight of pretreated jatropha oil. Average reaction time of them was 26min; acid values of the pretreated jatropha oil were about 0.6 mg KOH/g, water contents of it were no more than 0.07%. Biodiesel with an ester content of 98.6% was produced through the following alkaline catalyzed biodiesel production process.
机译:麻风树大规模种植植物将为生物柴油生产提供低成本和可靠的原料,但麻风树油具有降解的趋势,使其通常含有过量的游离脂肪酸(FFA)。在该研究中,通过反复使用甲醇和硫酸的混合物来开发有效的方法,以便具有10.4mg KOH / g的酸值的酸值。通过研究水含量对FFA转化的影响建立了二次多项式模型,而甲醇至FFA的摩尔比为270:1,硫酸对麻醉剂的重量比为1.6%。当甲醇和硫酸的混合物被使用二十次时,证明该模型有效。基于预处理的麻醉药油的重量,对于这20个实验用于这20个实验的总硫酸和甲醇分别为0.21%和21%。它们的平均反应时间为26min;预处理的麻醉药的酸值约为0.6mg KOH / g,其含水量不大于0.07%。通过以下碱性催化的生物柴油生产方法生产酯含量为98.6%的生物柴油。

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