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首页> 外文期刊>Biochemical Engineering Journal >Biodiesel-fuel production in a packed-bed reactor using lipase-producing Rhizopus oryzae cells immobilized within biomass support particles
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Biodiesel-fuel production in a packed-bed reactor using lipase-producing Rhizopus oryzae cells immobilized within biomass support particles

机译:在固定床反应器中使用固定化生物质支持颗粒的脂肪酶生产的米根霉细胞生产生物柴油

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摘要

A packed-bed reactor (PBR) system using fungus whole-cell biocatalyst was developed for biodiesel fuel production by plant oil methanolysis.Lipase-producing Rhizopus oryzae cells were immobilized within 6 mm x 6 mm x 3 mm cuboidal polyurethane foam biomass support particles (BSPs) during batch cultivation in a 20-1 air-lift bioreactor.Emulsification of the reaction mixture containing soybean oils and water improved the methanolysis reaction rate.Using a high flow rate for the reaction mixture in the PBR caused exfoliation of the immobilized cells from the BSPs,while the inefficient mixing of the reaction mixture at low flow rates allowed the BSPs to be covered with a hydrophilic layer of high methanol concentration,leading to a significant decrease in lipase activity.A high methyl ester content of over 90% was achieved at a flow rate of 251/h in the first cycle of repeated batch methanolysis and a high value of around 80% was maintained even after the tenth cycle.Comparison with methanolysis reaction in a shaken bottle suggested that the PBR enhances repeated batch methanolysis by protecting immobilized cells from physical damage and excess amounts of methanol.The process presented here is therefore considered to be promising for industrial biodiesel-fuel production.
机译:开发了一种使用真菌全细胞生物催化剂的填充床反应器(PBR)系统,用于通过植物油甲醇分解生产生物柴油。将产生脂肪酶的米根霉菌细胞固定在6 mm x 6 mm x 3 mm长方体聚氨酯泡沫生物质载体颗粒中(在20-1气升式生物反应器中分批培养期间的BSPs)。乳化包含大豆油和水的反应混合物可提高甲醇分解反应的速率.PBR中反应混合物使用高流速会导致固定化细胞从中脱落在低流速下低效率地混合反应混合物使BSP被高甲醇浓度的亲水层覆盖,导致脂肪酶活性显着下降。实现了90%以上的高甲酯含量在重复批甲醇分解的第一个循环中,其流量为251 / h,即使在第十个循环之后也保持了约80%的高值。摇瓶中的水解反应表明,PBR通过保护固定化细胞免受物理损伤和过量甲醇的侵害,增强了重复批甲醇的分解反应,因此,此处提出的方法被认为对工业生物柴油燃料的生产很有前景。

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