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Design and preparation of stable CPO/HRP@H-MOF(Zr) composites for efficient bio-catalytic degradation of organic toxicants in wastewater

机译:稳定CPO / HRP @ H-MOF(ZR)复合材料的设计与制备用于废水中有机毒物有效生物催化降解

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BACKGROUND Immobilization of enzyme on a solid support can improve its stability, however, this is often accompanied by a decrease of the initial catalytic activity. The design and preparation of immobilized enzyme with simultaneous high activity and stability is a challenge. RESULTS A hierarchically porous metal organic framework H-MOF(Zr) which was prepared by 'crystal defect' strategy was very stable in aqueous solution and possessed well-defined, tunable and adjacent hierarchical pores. When using the H-MOF(Zr) as support for enzyme immobilization, a single array of enzyme in a single mesoporous channel was achieved so as to avoid aggregation of the enzyme. Meanwhile the micropores can be utilized to concentrate substrates, resulting in a decrease in the mass transfer resistance of substrate compared with that in the bulk buffer due to the enzymes and substrates closely embedded on the same support. The prepared immobilized enzyme CPO/HRP@H-MOF(Zr) was more stable at elevated temparatures, showing 58.2% enhanced activity compared with free enzymes at 70 degrees C for 1 h incubation. After 12 cycles, 70.7% of activity remained. When the CPO/HRP@H-MOF(Zr) was applied in the treatment of wastewater containing isoproturon and 2,4-dichlorophenol, complete degradation was achieved in only 15 min. CONCLUSION Both high activity and stability under harsh reaction conditions give the CPO/HRP@H-MOF(Zr) composites potential for practical application in wastewater treatment. (c) 2018 Society of Chemical Industry
机译:背景技术酶对固体载体的固定可以改善其稳定性,然而,这通常伴随着初始催化活性的降低。具有同时高活性和稳定性的固定化酶的设计和制备是挑战。结果通过“晶体缺陷”策略制备的分层多孔金属有机框架H-MOF(Zr)在水溶液中非常稳定,具有明确的,可调谐和相邻的等级孔隙。当使用H-MOF(Zr)作为酶固定的支持时,实现了单个中孔通道中的单个酶酶,以避免酶的聚集。同时,微孔可用于浓缩基材,导致衬底的质量传递电阻的降低,与在相同的载体上紧密地嵌入的酶和基材的酶和基材相比。将制备的固定化酶CPO / HRP / HRP(Zr)在升高的天末升高时更稳定,与70℃下的游离酶相比,58.2%的增强活性升高1小时孵育。 12个循环后,70.7%的活动仍然存在。当CPO / HRP @ H-MOF(ZR)用于含有异丙脲和2,4-二氯苯酚的废水中时,仅在15分钟内实现完全降解。结论在恶劣反应条件下的高活性和稳定性均给CPO / HRP @ H-MOF(ZR)复合材料在废水处理中的实际应用。 (c)2018化学工业协会

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