Kariya Pod-husks: A Novel Biocatalyst in Biodiesel Production

O. E. Ogundahunsi, B. Ogunsina, E. Aransiola
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Abstract

Diverse challenges faced with the use of homogeneous catalysts in biodiesel production coupled with the interest in converting waste resources to useful products in solving occurring climatic and environmental challenges around the world have triggered research into the use of various heterogeneous catalysts. In this study, the catalytic properties of kariya pod-husks were investigated to examine their suitability in biodiesel production. Kariya pod-husks were ash and calcined at 600oC for 4 h. In the morphological structure examination, the scanning electron image of calcined kariya pod-husks shows that it has a more compact microstructure with a cluster of big crystals but irregular pores which is an attribute of high catalytic potentials. The elemental composition of the calcined kariya pod-husks reveals that it contains a higher percentage weight of calcium (42%) and potassium (31%) which makes it a more suitable catalyst for biodiesel production. The developed catalyst was further used in the production of kariya biodiesel. A biodiesel yield of 94% was obtained.  This study shows that calcined kariya pod-husks could catalyze biodiesel production. It also helps in proving suitable biocatalyst to solve the challenges associated with the separation of catalyst from the product stream which consequently aids in the creation of continuous chemical processes.
豆荚壳:生物柴油生产中的新型生物催化剂
在生物柴油生产中使用均相催化剂所面临的各种挑战,以及将废物资源转化为有用产品以解决世界各地发生的气候和环境挑战的兴趣,引发了对各种多相催化剂使用的研究。本研究考察了kariya豆荚壳的催化性能,以考察其在生物柴油生产中的适用性。在600℃下煅烧4 h后进行灰化处理。在形态结构检查中,煅烧后的豆荚壳的扫描电子图像显示其微观结构更加致密,有一簇大晶体,但气孔不规则,这是高催化电位的特征。煅烧的kariya豆荚壳的元素组成表明,它含有较高的钙(42%)和钾(31%)的重量百分比,使其成为更适合生产生物柴油的催化剂。该催化剂进一步应用于kariya生物柴油的生产。得到了94%的生物柴油产率。本研究表明,煅烧的木荚壳可以催化生物柴油的生产。它还有助于证明合适的生物催化剂,以解决与催化剂从产品流分离相关的挑战,从而有助于创建连续的化学过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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