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首页> 外文期刊>Biochemical Engineering Journal >Facilitatory effect of immobilized lipase-producing Rhizopus oryzae cells on acyl migration in biodiesel-fuel production
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Facilitatory effect of immobilized lipase-producing Rhizopus oryzae cells on acyl migration in biodiesel-fuel production

机译:固定化脂肪酶生产的米根霉细胞对生物柴油燃料生产中酰基迁移的促进作用

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摘要

For biodiesel-fuel production by methanolysis of plant oils,Rhizopus oryzae cells producing a 1,3-positional specificity lipase were cultured with polyurethane foam biomass support particles (BSPs) in a 201 air-lift bioreactor,and the cells immobilized within BSPs were used as whole-cell biocatalyst in repeated batch-cycle methanolysis reaction of soybean oil.The whole-cell biocatalyst had a higher durability in the methanolysis reaction when obtained from air-lift bioreactor cultivation than from shake-flask cultivation.Following repeated methanolysis reaction using the whole-cell biocatalyst,analysis of the reaction mixture composition indicated that monoglycerides (MGs) decreased and free fatty acids (FFAs) increased with increasing water content in the reaction mixture,and that MGs,diglycerides (DGs),and triglycerides (TGs) increased with increasing number of reaction cycles.The isomers of MGs and DGs generated during the 20th methanolysis reaction cycle consisted of 2-MGs and 1,2(2,3)-DGs,respectively.The hydrolytic activity of the whole-cell biocatalyst,on the other hand,was stable regardless of the number of reaction cycles.It was demonstrated thus that the whole cell biocatalyst promotes acyl migration of partial glycerides,and that the facilitatory effect is increased by increase in the water content of the reaction mixture but it is lost gradually with increasing number of reaction cycles.
机译:为了通过植物油的甲醇分解生产生物柴油,将产生1,3位特异性脂肪酶的米根霉细胞与聚氨酯泡沫生物质支撑颗粒(BSP)在201气举生物反应器中培养,并使用固定在BSP中的细胞气提式生物反应器培养获得的全细胞生物催化剂比摇瓶培养具有更高的持久性,在大豆油的重复间歇循环甲醇分解反应中作为全细胞生物催化剂。全细胞生物催化剂,反应混合物组成分析表明,随着反应混合物中水含量的增加,甘油单酯(MGs)减少,游离脂肪酸(FFA)增加,而MGs,甘油二酸酯(DGs)和甘油三酸酯(TGs)增加在第20个甲醇分解反应过程中生成的MG和DG的异构体由2-MG和1,2(另一方面,全细胞生物催化剂的水解活性不受反应周期数的影响而保持稳定。这证明了全细胞生物催化剂促进部分甘油酯的酰基迁移,并且通过增加反应混合物的水含量来促进促进作用,但是随着反应循环次数的增加,促进作用逐渐消失。

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