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Pretreatment of Waste Frying Oil with High Levels of Free Fatty Acids for Biodiesel Production

机译:具有高水平游离脂肪酸的废物油炸油的预处理用于生物柴油生产

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The decrease of fossil fuel resources and the awareness of the impact of greenhouse gases emissions on the environment have created a need to find alternative energy sources to replace traditional ones. Thus, recent years have seen the development of several sectors of renewable energy production with the government incentives. The production of biodiesel is an alternative of production of non-toxic, clean, renewable and biodegradable fuels. The aim of this work was to investigate the optimum conditions of the biodiesel production from waste frying oil in two-step catalyzed process and the optimization of methanol and acid concentration during its pretreatment. The oil had an acid value of 32.82 mg KOH/g. The first step, an acid was used as a catalyst for the esterification reaction to reduce the free fatty acid content in waste frying oil under 2% that was,with different dosages of the acid. The next base catalyzed transesterification processs converted the pretreated frying oil to biodiesel with the optimum combination. The highest yield of biodiesel after transesterification and purification process was 98% ester content with 0.214% of free fatty acid. The results showed that the acid catalystis a promising pretreatment to acidic oils or fats as they led to the production of an intermediary material with a low content of free fatty acid that can be directly used in the transesterification reaction for the production of biodiesel.
机译:化石燃料资源的减少和对环境气体排放对环境影响的意识创造了需要找到替代传统能源的替代能源。因此,近年来已经看到了政府激励措施的可再生能源生产的几个部门的发展。生物柴油的生产是生产无毒,清洁,可再生和可生物降解的燃料的替代方案。这项工作的目的是研究两步催化过程中废物煎炸油的生物柴油生产的最佳条件,并在预处理期间优化甲醇和酸浓度。油的酸值为32.82mg KOH / g。第一步,用作酯化反应的催化剂以减少2%以下的废油炸油中的游离脂肪酸含量,其具有不同剂量的酸。下一个碱催化的酯交换过程用最佳组合将预处理的煎炸油转化为生物柴油。酯交换和纯化过程后生物柴油的最高产率为98%酯含量为0.214%的游离脂肪酸。结果表明,酸催化剂是对酸性油或脂肪的有望预处理,因为它们导致生产具有低含量的游离脂肪酸的中间体材料,其可直接用于酯交换反应以生产生物柴油。

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