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首页> 外文期刊>Biomass Conversion and Biorefinery >Biodiesel synthesis from transesterified Madhuca indica oil by waste egg shell-derived heterogeneous catalyst: parametric optimization by Taguchi approach
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Biodiesel synthesis from transesterified Madhuca indica oil by waste egg shell-derived heterogeneous catalyst: parametric optimization by Taguchi approach

机译:通过废蛋壳衍生的异质催化剂酯化的Madhuca籼油的生物柴油合成:Taguchi方法的参数优化

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摘要

The present study investigates the synthesis of biodiesel from Madhuca indica oil (MIO) employing waste egg shell-derived heterogeneous catalyst. The catalyst, developed by calcination of waste egg shells and successive impregnation of sodium using sodium nitrate, was employed to catalyse transesterification of waste Madhuca indica seeds-derived non-edible oil. The productivity of biodiesel in terms of yield was optimized to attain maximum conversion employing Taguchi approach. Initially, parameters affecting the yield were identified statistically and optimized condition for each significant parameter was derived using 3FI model. Among the selected parameters, yield was mainly affected by Methanol to oil ratio (M/O), reaction temperature, and the sodium nitrate concentration kept at the time of impregnation (MCI). The selected optimization technique revealed its accuracy in prediction of maximum biodiesel yield of 81.56% at M/O 9:1, MCI 5%, and temperature 60 degrees C. The predicted optimized conditions were validated by confirmatory experiments. The produced biodiesel was also characterized by following ASTM standards. Thus, overall results have proved that the waste egg shell-derived catalyst is reusable and bears appreciable catalytic activity for catalysing the transesterification of poor-quality MIO. Hence, it could be said that the proposed study would be beneficial in converting waste into active solid catalyst and renewable fuel.
机译:本研究研究了使用废蛋壳衍生的非均相催化剂的MADHUCA Indica油(MIO)的生物柴油的合成。通过煅烧废蛋壳和使用硝酸钠浸渍钠浸渍的催化剂,用于催化废Madhuca籼稻衍生的不可食用油的酯交换。优化生物柴油在产量方面的生产力,以获得采用Taguchi方法的最大转换。最初,鉴定了影响产量的参数,并使用3FI模型识别统计上和每个重要参数的优化条件。在选定的参数中,产率主要受甲醇的影响(M / O),反应温度和在浸渍时保持的硝酸钠浓度(MCI)。所选择的优化技术揭示了预测在M / O 9:1,MCI 5%和60摄氏度下的最大生物柴油产率81.56%的预测的精度。通过确认实验验证了预测的优化条件。所生产的生物柴油也以遵循ASTM标准的特征。因此,总体结果证明,废蛋壳衍生的催化剂是可重复使用的并且具有可观的催化活性,用于催化劣质MiO的酯交换。因此,可以说,所提出的研究将有益地将废物转化为活性固体催化剂和可再生燃料。

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