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用于生物分子流化床吸附的超高密度金属氧化物-凝胶复合材料的表征

Characterization of very dense mineral oxide-gel composites for fluidized-bed adsorption of biomolecules.

作者信息

Voute N, Bataille D, Girot P, Boschetti E

机构信息

BioSepra S.A., Villeneuve la Garenne, France.

出版信息

Bioseparation. 1999;8(1-5):121-9.

PMID:10734563
Abstract

Efficient design of fluidized-bed biomolecule adsorption from crude feed stock requires particles with elevated density, large adsorption capacity and broad chemical stability. Moreover, combinations of small particle diameters with high densities allow for high fluidization velocities while preserving a rapid mass transfer. This approach has been implemented by combining stable porous mineral oxide of high density (2.2, 4.7, 5.7, 9.4 g/ml) with functionalized hydrogels. The cross-linked hydrogel derivative fills the internal porosity of the beads and provides a high equilibrium binding capacity. Various porous mineral oxides (silica, titania, zirconia and hafnia) have been characterized in term of fluidization behavior, surface reactivity and chemical resistance to harsh CIP procedures. Porous zirconia particles were also modified into ion-exchangers by suitable surface modification and intraparticle polymerization of functionalized stable derivatives of acrylic monomers. Back-mixings in fluidized bed columns were analyzed by residence time distribution analysis of inert tracers. 328 and 218 mixing plates per meter were found for respectively, bed expansions of 1.7 and 2.9. The dynamic protein adsorption behaviors of zirconia-based polymeric anion-exchange sorbents were obtained in fluidized-bed, using BSA as model protein. A dynamic binding capacity of 62 mg/ml was observed at a fluidizing velocity of 320 cm/h. These investigations substantiate the favorable physical and chemical characteristics anticipated for dense composite beads for use as fluidized bed adsorbents.

摘要

从粗原料中高效设计流化床生物分子吸附需要具有较高密度、大吸附容量和广泛化学稳定性的颗粒。此外,小粒径与高密度的组合允许在保持快速传质的同时实现高流化速度。通过将高密度(2.2、4.7、5.7、9.4 g/ml)的稳定多孔矿物氧化物与功能化水凝胶相结合,实现了这种方法。交联水凝胶衍生物填充了珠子的内部孔隙,并提供了高平衡结合能力。已经对各种多孔矿物氧化物(二氧化硅、二氧化钛、氧化锆和氧化铪)的流化行为、表面反应性和对苛刻原位清洗程序的化学抗性进行了表征。通过对丙烯酸单体功能化稳定衍生物进行适当的表面改性和颗粒内聚合,将多孔氧化锆颗粒也改性为离子交换剂。通过惰性示踪剂的停留时间分布分析对流化床柱中的返混进行了分析。对于床膨胀率分别为1.7和2.9的情况,每米分别发现328和218个混合板。以牛血清白蛋白为模型蛋白,在流化床中获得了基于氧化锆的聚合阴离子交换吸附剂的动态蛋白质吸附行为。在流化速度为320 cm/h时,观察到动态结合容量为62 mg/ml。这些研究证实了预期的致密复合珠用作流化床吸附剂的有利物理和化学特性。

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