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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Application of solid acid catalyst derived from low value biomass for a cheaper biodiesel production
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Application of solid acid catalyst derived from low value biomass for a cheaper biodiesel production

机译:源自低价值生物质的固体酸催化剂在廉价生物柴油生产中的应用

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BACKGROUND:The process of producing biodiesel from various oil feedstocks is well known but developments of commercial plants are being hampered by the high cost of production. The paper reports an integrated method in which the oil obtained by solvent extraction of Calophyllum inophyllum seed is converted to biodiesel over a biomass derived catalyst. The catalyst derived from the residual cake of C. inophyllum obtained after oil extraction can be incompletely carbonized to obtain an amorphous carbon followed by sulfonation in concentrated sulphuric acid. RESULTS:The activity of the catalyst was tested through esterification of free fatty acid present in C. inophyllum oil and comparison was made with a similar catalyst derived from glucose. Superior activity over glucose-derived catalyst was related to the SO_3H acid density and higher surface area. The catalyst also achieved high conversion of the non-edible oil to biodiesel (96.6 wt%) in a single step at the optimized reaction conditions. CONCLUSION:A solid acid catalyst capable of simultaneous esterification and transesterification of free fatty acids and triglycerides present in C. inophyllum oil has been synthesized. An integrated process in which the waste generated during the oil extraction process of biodiesel production is effectively utilized could lead to cost reduction and possibly successful commercialization.
机译:背景:从各种石油原料生产生物柴油的过程是众所周知的,但是高生产成本阻碍了商业工厂的发展。该论文报道了一种综合方法,其中通过生物量衍生的催化剂将溶剂提取的茶树种子获得的油转化为生物柴油。可以将得自油提取后获得的茶树的残留饼的催化剂不完全碳化以获得无定形碳,然后在浓硫酸中进行磺化。结果:该催化剂的活性通过烟叶油中存在的游离脂肪酸的酯化进行了测试,并与类似的葡萄糖衍生催化剂进行了比较。优于葡萄糖衍生的催化剂的活性与SO_3H酸密度和较高的表面积有关。在优化的反应条件下,该催化剂还一步完成了非食用油向生物柴油的高转化率(96.6 wt%)。结论:合成了一种固体酸催化剂,该催化剂能够同时对烟叶油中存在的游离脂肪酸和甘油三酸酯进行酯化和酯交换反应。有效利用生物柴油生产的石油提取过程中产生的废物的综合过程可导致成本降低,并可能成功实现商业化。

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