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首页> 外文期刊>Biochemical Engineering Journal >Preparation and characterization of a novel macroporous immobilized micro-organism carrier
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Preparation and characterization of a novel macroporous immobilized micro-organism carrier

机译:一种新型大孔固定化微生物载体的制备与表征

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摘要

The traditional PVA-boric acid method was modified using calcium carbonate as a pore-forming agent to form the macroporous structure and formulated macroporous carrier (MPC) post-crosslinked with glutaraldehyde. The pore volumes, pore structure, porosity, and swelling behavior of MPCs were evaluated. The crosslinking density of MPCs with four different crosslinker dosages was calculated from their swelling properties using the modified Flory equation. MPCs demonstrated high swelling capacity, large specific surface area, high diffusion coefficient, as well as chemical and mechanical strength. The high crosslinking degree MPCs resulted in high biomass densities and low activity yield and vice versa. The characterizations of MPC suggest significant potential of its use for microbial immobilization and provide a scientific basis for immobilized carrier design and optimization.
机译:传统的PVA-硼酸法是采用碳酸钙作为成孔剂进行改性,以形成大孔结构,并配制了与戊二醛后交联的大孔载体(MPC)。评估了MPC的孔体积,孔结构,孔隙率和溶胀行为。使用改良的Flory方程,由其膨胀特性计算出四种不同交联剂用量的MPC的交联密度。 MPC具有较高的溶胀能力,较大的比表面积,较高的扩散系数以及化学和机械强度。高交联度的MPC导致高生物质密度和低活性收率,反之亦然。 MPC的特征表明其可用于微生物固定化的巨大潜力,并为固定化载体的设计和优化提供科学依据。

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