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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Bioreactor Membranes for Laccase Immobilization Optimized by Ionic Liquids and Cross-Linking Agents
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Bioreactor Membranes for Laccase Immobilization Optimized by Ionic Liquids and Cross-Linking Agents

机译:用于漆酶固定化的生物反应器膜通过离子液体和交联剂优化优化

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A novel concept of membrane bioreactor based on polymeric ionic liquids laccase membrane has been implemented in batch process for decolorization of the anthraquinonic dye Remazol Brillant Blue R (RBBR). New laccase immobilization strategy has been optimized by casting the enzyme into a polymeric inclusion membrane (PIM) using ionic liquids (ILs) and polyvinyl chloride (PVC) leading to laccase polymeric IL membrane (PILM). Four different ILs (1-octyl-3-metylimidazolium bis(trifluoromethylsulfonyl)imide, [OMIM][NTF2]; cholinium bis(trifluoromethylsulfonyl)imide, [Ch ol][NTF2]; cholinium dihydrogenphosphate, [Chol][H2PO4] and hydroxyethylammonium formate, [HEA][Fo]) have been screened and mixed to constitute the active phase of the support of PIM. This strategy has been fully succeeded since high laccase immobilization rates were recorded (about 98%) when using the optimal mixture containing three ILs (45% [OMIM][NTf2]/5% [Chol][NTf2]/2.5% [HEA][Fo]) and supplemented by 0.5% glutaraldehyde. It was found that such mixture contributes to increase the stability and reusability of laccase-PILM during eight successive assays in a batch discontinued stirred reactor. Decolorization rate of 75% has been reached in the batch decolorization process of RBBR with high reusability yield.
机译:基于聚合物离子液体漆碱膜的膜生物反应器的一种新概念已在抗脱唑壁亮蓝r(RBBR)的分批过程中进行了分批方法。通过使用离子液体(ILS)和聚氯乙烯(PVC)将酶浇铸成聚合物包衣膜(PIM)和导致漆酶聚合物IL膜(PILM)来优化新的漆酶固定策略。四种不同的ILS(1-辛基-3-选酶BIS(三氟甲基磺酰基)酰亚胺,[OMIM] [NTF2];胆碱双(三氟甲基磺酰基)酰亚胺,[CHO] [NTF2];乙烯鎓二氢磷酸磷酸,[CHOL] [H2PO4]和羟乙基氨基铵形成,[Hea] [Fo])已被筛选并混合以构成PIM的支持的活性相。当使用含有三个ILS的最佳混合物(45%[OMIM] [NTF2] / 5%[NTF2] / 2.5% [NTF2] / 2.5% [NTF2] / 2.5% [HEA]时,该策略已完全成功[Fo])并补充0.5%戊二醛。发现这种混合物有助于在停止搅拌反应器中的八个连续测定期间提高LACCASS-PILM的稳定性和可重用性。 RBBR的批量脱色过程中达到了75%的脱色速率,具有高可重用产量。

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