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Published byCecily Shaw Modified over 9 years ago
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IMMOBILIZATION TECHNIQUES
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Advantages in the use of immobilization technique Easy re-use of the biocatalyst Reduced requirement of the growth of cells: avoid the waste of nutrients, minimize the requirement of energy, so reduce the capital and running costs / reduce the environmental problems Easy isolation of products Increased stability Easy continuous operation
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Methods for the immobilization Carrier binding: adsorption, ion exchanger, covalent bonding Cross-linking Encapsulation: gel entrapment, microcapsules Membrane reactor
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Classification of immobilization materials Organic 1. Polysaccharides: agar, agarose, carrageenan, cellulose, pectate, Sephadex etc. 2. Protein: collagen 3. Synthetic polymers: phenolic resins, polyacrylamide, polysterene et. Inorganic 1. Ungrafted: alumine, ceramics, ferromagnet, glass, magnesia, silica, zirconia 2. Grafted: various coupling agents
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Immobilized microbial cells (Fukui and Tanaka,1982) Immobilized treated cells Immobilized resting cells Immobilized growing cells Immobilized cells for electrode
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Using carrageenan as matrix (Tosa, T. et al., 1979)
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Gelling conditions
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Effect of gelling agents
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Gel shape
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Different catalysts
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Hardening treatment
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Comparison with polyacrylamide
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Two-step procedure (Wada et al., 1979)
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Typical procedures (Chibata et al., 1986)
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Production in large quantities (Hulst et al., 1985)
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Beads diameter
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Immobilized cells for continuous ethanol fermentation Adhesion Entrapment Membrane reactor Flocculating cells
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Adhesion
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Entrapment
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Membrane reactors
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Flocculating cells
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生物反應器實況 ( 福井三郎, 1986 )
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Co-immobilization (Hartmeier, 1984)
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Genetically engineered microorganisms?
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問題 利用固定化技術處理生物活性觸媒有那些好處? 將微生物固定化的方法有那些? 生物活性觸媒有那些固定化方法?每一種方法的 優缺點為何? 選用 Ca-alginate 或 carrageenan 進行微生物固定化各 有何優缺點? 下列名詞的內涵: Carrageenan 、 Co-immobilization 、 Gel entrapment 、 Resting cells
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