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Biodiesel Production from Waste Edible Oils and Grease Containing Free Fatty Acids

机译:废食用油和含有游离脂肪酸的油脂生产生物柴油

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Till now,most part of the biodiesel is produced from the refined vegetable oils using methanol as feedstock in the presence of an alkali catalyst.However,large amount of waste edible oils and grease are available.The difficulty with alkali-catalyzed esterification of these oils is that they often contain large amount of free fatty acids (FFA),polymers and decomposition products.These free fatty acids can quickly react with the alkali catalyst to produce soaps that inhibit the separation of the ester and glycerine.An esterification and transesterification process is developed to convert the high FFA oil to its monoesters.The first step,the acid-catalyzed esterification with glycerine and these FFA reduces the FFA content of the oil and grease to less than 3%,and then an azeotropic distillation solvent is used to remove the water.The major factors affecting the conversion efficiency of the process such as glycerol to free fatty acid molar ratio,catalyst amount,reaction temperature and reaction duration are analyzed.The second step,alkali-catalyzed transesterification process converts the products of the first step to its monoesters and glycerol,and then the glycerol is recycled for utilization in the first step.Technical indicators of the biodiesel product can meet the ASTM 6751 standard.
机译:到现在为止,大部分生物柴油都是在甲醇和碱性催化剂的作用下,以甲醇为原料,从精制植物油中生产的。但是,有大量的废食用油和油脂可供使用。这些油难以进行碱催化酯化就是它们通常含有大量的游离脂肪酸(FFA),聚合物和分解产物,这些游离脂肪酸可以与碱催化剂快速反应生成肥皂,从而抑制酯和甘油的分离。酯化和酯交换过程是第一步,用甘油进行酸催化的酯化反应,这些FFA将油脂中的FFA含量降低到3%以下,然后使用共沸蒸馏溶剂去除影响该工艺转化效率的主要因素是甘油与游离脂肪酸的摩尔比,催化剂用量,反应温度和反应速率。第二步,碱催化的酯交换过程将第一步的产物转化为其单酯和甘油,然后将甘油回收用于第一步。生物柴油产品的技术指标符合ASTM 6751标准。

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