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Optimization of Transesterification Process Using Homogeneous and Nano-Heterogeneous Catalysts for Biodiesel Production from Mangifera indica Oil

机译:均相和纳米均相催化剂用于芒果油生物柴油生产酯交换反应工艺的优化

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摘要

The Mangifera indica oil is a nonedible vegetable oil, which is available in large quantities in mango cultivating countries including India. Very little published work has been found on transesterification process. In present study, the transesterification processes with homogeneous catalysts like NaOH, KOH and heterogeneous solid catalysts like nano MgO (crystal size 6-42 nm, BET surface area 50 m~2/gm), nano ZnO (crystal size 15-48 nm, BET surface area 12 m~2/ gm), and nano Si0_2 (crystal size 1-44 nm, BET surface area 110 m~2/gm) for optimizing production process of Mangifera indica oil methyl ester (MOME) have been investigated. Effect of input parameters viz. methanol-to-oil molar ratio, catalyst type and its loading, reaction temperature, stirrer speed, and reaction time on the yield of MOME was studied by applying the orthogonal experimental array L_25. ANOVA (F-test at P= 0.05) and grey relational technique were used for optimization of yield. The optimal combination of six input variables was obtained for optimized yield of (MOME) biodiesel. The optimal combination so obtained was further confirmed through experiments. Methanol-to-oil molar ratio, catalyst type and catalyst loading were the most influencing parameters. The biodiesel produced is within the limits prescribed by EN-14214 standard.
机译:芒果gif油是不可食用的植物油,可在包括印度在内的芒果栽培国家大量使用。在酯交换过程中发现的出版物很少。在本研究中,采用均相催化剂(如NaOH,KOH)和非均相固体催化剂(如纳米MgO(晶体尺寸6-42 nm,BET表面积50 m〜2 / gm),纳米ZnO(晶体尺寸15-48 nm,研究了BET比表面积为12 m〜2 / gm,并研究了用于优化芒果gif油甲酯(MOME)生产工艺的纳米SiO 2(晶体尺寸为1-44 nm,BET比表面积为110 m〜2 / gm)。输入参数的影响。应用正交实验阵列L_25,研究了甲醇与油的摩尔比,催化剂类型及其负载量,反应温度,搅拌速度和反应时间对MOME收率的影响。使用ANOVA(P检验为P = 0.05)和灰色关联技术优化产量。获得六个输入变量的最佳组合,以优化(MOME)生物柴油的产量。通过实验进一步确定了如此获得的最佳组合。影响最大的参数是甲醇与油的摩尔比,催化剂类型和催化剂负载量。生产的生物柴油在EN-14214标准规定的范围内。

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