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Biodiesel production and parameter optimization: An approach to utilize residual ash from sugarcane leaf, a novel heterogeneous catalyst, from Calophyllum inophyllum oil

机译:生物柴油生产和参数优化:一种利用甘蔗叶,新型异构催化剂的残留灰,来自Calophyllum inophyllum油的方法

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The rapid depletion of natural oil resources and growing environmental problems has led to the hunt for a cost-efficient method for production of fuel-grade Fatty acid methyl esters (FAME). The supremacy of heterogeneous catalysis urges the development of bio-based catalyst as an alternative to the previously used catalyst. The present study elevates the practicability of utilizing residual ash from sugarcane leaves as a catalyst for the production of Calophyllum inophyllum methyl esters. XRD, SEM, FT-IR were used to characterize the residual ash. Central Composite design based response surface methodology was employed to study the relationship between process parameters on FAME yield. In optimum conditions of methanol to oil ratio of 19:1, 5 wt% of catalyst and temperature of 64 degrees C, there obtained a maximum FAME yield of 97%.85% yield up to 6 cycles has been shown by reusability data. Performance and emission exhaust analysis of produced FAME shows that blended version of B10 and B80 has a better efficiency of using biodiesel as a backup energy source. (C) 2020 Elsevier Ltd. All rights reserved.
机译:自然油资源的快速消耗和不断增长的环境问题导致了寻求生产燃料级脂肪酸甲酯(FAME)的成本效益的方法。异质催化的至上促使生物基催化剂的发展作为先前使用的催化剂的替代品。本研究提高了利用甘蔗叶的残留灰作为催化剂的实用性升高,作为生产Calophyllum甲基酯的催化剂。 XRD,SEM,FT-IR用于表征残留灰分。基于中央复合设计基于响应面方法研究了对成​​本产量的过程参数之间的关系。在甲醇的最佳条件下为19:1,5wt%的催化剂和64℃的温度,获得的最大名称产率为97%.85%屈服度,可重复使用数据显示6个循环。产生的名称的性能和排放排气分析表明,B10和B80的混合版本具有更好的效率,使用生物柴油作为备用能源。 (c)2020 elestvier有限公司保留所有权利。

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