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Physical and Hydrodynamic Properties of Spherical Cellulose-Titanium Dioxide Composite Matrix for Expanded Bed Adsorption

机译:球形纤维素-二氧化钛复合基质对膨胀床吸附的物理和流体力学性质

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摘要

Expanded bed adsorption (EBA) has been widely used in industrial downstream bioprocessing. Solid matrix is the principal pillar supporting the successful application of EBA. A novel spherical cellulose-titanium dioxide composite matrix was prepared through the method of water-in-oil suspension thermal regeneration. Its typical physical properties were wet density 1.18g·cm~(-3), diameters in the range of 100―300 μm, porosity 85.5%, and water content 72.3%. Expansion characteristics and liquid mixing performance of the matrix in expanded bed were investigated using water and 10% (by mass) glycerol solution as mobile phases. The results indicate that the custom-assembled matrix has a stable flow hydrodynamics and exhibits the same degree of liquid-phase mixing or column efficiency as the commercially available Streamline adsorbent.
机译:膨胀床吸附(EBA)已广泛用于工业下游生物处理。固体基质是支持EBA成功应用的主要支柱。采用油包水悬浮热再生法制备了新型球形纤维素-二氧化钛复合基质。其典型物理性质为湿密度1.18g·cm〜(-3),直径在100〜300μm范围内,孔隙率85.5%,含水量72.3%。使用水和10%(质量)甘油溶液作为流动相,研究了基质在膨胀床中的膨胀特性和液体混合性能。结果表明,定制组装的基体具有稳定的流动流体力学,并且表现出与市售Streamline吸附剂相同的液相混合度或柱效。

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