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A Review on Production of Biodiesel Using Catalyzed Transesterification

机译:催化酯交换用催化酯酶生产生产的综述

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摘要

Biodiesel is arguably an important fuel for compression ignition engine as far as sustainability and environmental issues are concerned. It can be produced from both edible and non-edible vegetable oils and animal fats. Owing to higher viscosity, the utilization of crude vegetable oil is not advisable as it results engine failure. For reducing the viscosity and improving the other fuel characteristics comparable to that of diesel fuel, different approaches have been developed. However, transesterification process is very reliable, less costly and easy method compared to other methods. Due to more free fatty acids content in most of the non-edible vegetable oils, a pretreatment is employed to convert the acids to ester, then transesterified with suitable alcohol. Primarily yield of biodiesel depends upon the molar ratio of oil/alcohol, reaction temperature, reaction time, amount of catalyst, type of catalyst, stirring speed. Both homogeneous and heterogeneous catalysts are used for synthesis purposes. Heterogeneous catalysts are less costly, environmental benign and can be derived from natural resources. Enzymatic catalysts are more environmental benign than heterogeneous catalysts but are costly, which hinders its widespread research and utilization. This article reviews the results of prominent works and researches in the field of production of biodiesel via catalyzed transesterification process.
机译:就可持续性和环境问题而言,生物柴油可以说是压缩点火发动机的重要燃料。它可以由可食用和不可食用的植物油和动物脂肪制成。由于粘度较高,粗植物油的利用是不可取的,因为它的发动机故障是不可取的。为了降低粘度并改善与柴油燃料相当的其他燃料特性,已经开发了不同的方法。然而,与其他方法相比,酯交换过程非常可靠,更昂贵且易于方法。由于大多数不可食用的植物油中的更多游离脂肪酸含量,采用预处理将酸转化为酯,然后用合适的醇酯化。主要产率为生物柴油取决于油/醇,反应温度,反应时间,催化剂的量,催化剂类型,催化剂的摩尔比,搅拌速度。均匀和非均相催化剂都用于合成目的。异质催化剂较低,环境良性较低,可以源于自然资源。酶促催化剂比异质催化剂更加环保,但昂贵,阻碍了其广泛的研究和利用。本文通过催化的酯交换过程审查了生物柴油生产领域的突出作品和研究的结果。

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