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Development of Solid Acid Catalyst from Biomass Obtained from Cake of Vitellaria paradoxa and Its Application in Biodiesel Production Via a TwoStep Reaction System

机译:tell蚕饼生物质制固体酸催化剂的开发及其在两步反应系统生物柴油生产中的应用

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An integrated approach is needed to make biodiesel production cost-effective and a suitable choice of fuel. This study was therefore designed to utilize the seed cake of Vitellaria paradoxa obtained during oil extraction stage for the synthesis of a solid acid catalyst capable of hydrolysis and/or esterification reaction. The seed cake was pyrolyzed in an inert tube furnace at 420C for 5 h, and then sulfonated in fuming sulphuric acid (15 wt.%) at 150C for 10 h to obtain a biomass-derived catalyst. The catalyst was characterized by elemental analysis, FT-IR spectroscopy, X-ray diffraction (XRD) spectroscopy and total acid density. The hydrolytic activity of the catalyst was performed using vegetable oil obtained from V. paradoxa biomass and the reaction was optimized using a randomized central composite rotatable design (CCRD). The optimization results showed that catalyst derived from seed cake of V. paradoxa was active in hydrolysis reaction and a conversion of 34.3% was obtained and it was also observed that reaction time and weight of catalyst have significant effect on the reaction. When the catalyst was further employed for esterification of free fatty acids in V. paradoxa oil, higher conversion (70%) was achieved at a prescribed reaction condition. The approach of utilizing the waste generated during oil extraction from plants could make the process much greener when viewed from the context of resource efficiency and has the potential to kick start the commercialization of biodiesel production especially in developing countries.
机译:需要一种综合的方法,使生物柴油的生产成本效益和燃料的合适的选择。因此,该研究被设计为利用在油提取阶段获得的Vitellaria paradoxa的种子饼来合成能够水解和/或酯化反应的固体酸催化剂。将种子饼在惰性管式炉中在420℃下热解5小时,然后在发烟硫酸(15重量%)中在150℃下磺化10小时,以获得源自生物质的催化剂。通过元素分析,FT-IR光谱,X射线衍射(XRD)光谱和总酸密度对催化剂进行了表征。催化剂的水解活性是使用得自V. paradoxa生物质的植物油进行的,并且该反应使用随机中心复合可旋转设计(CCRD)进行了优化。最优化结果表明,来自对虾弧菌种子饼的催化剂在水解反应中具有活性,转化率为34.3%,并且还观察到反应时间和催化剂重量对反应有显着影响。当将该催化剂进一步用于对矛盾弧菌油中游离脂肪酸的酯化时,在规定的反应条件下获得了更高的转化率(70%)。从资源效率的角度来看,利用从植物油中提取过程中产生的废物的方法可使该过程更加环保,并且具有启动生物柴油生产商业化的潜力,尤其是在发展中国家。

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