首页> 外文期刊>Journal of Applied Glycoscience >Colloidal Particle Recovery Using Extended and Shrunken Dextran Generated from Immobilized Enzyme in Porous Membrane
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Colloidal Particle Recovery Using Extended and Shrunken Dextran Generated from Immobilized Enzyme in Porous Membrane

机译:使用固定化酶在多孔膜中产生的扩展和收缩的葡聚糖回收胶体颗粒

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摘要

A colloidal particle rejection and recovery system using extended and shrunken dextran was proposed. Dextransucrase forms a complex with dextran in an enzymatic reaction with sucrose; therefore dextran is easily formed on membrane pores. A dextransucrase solution was permeated through a Shirasu porous glass membrane at various permeation rates. A sucrose solution was permeated to generate dextran from the active sites of DSase immobilized on the membrane pores, at an immobilized density of 1.9-23 U/g, by controlling the dextran density; the immobilized density of DSase was high when immobilization was performed at a low permeation rate, resulting in a high generated-dextran density of 9.6-28 mg/g. A colloidal particle solution was permeated through the membrane for rejection and recovery. The high-density dextran rejected colloidal particles efficiently. In 50% methanoi solution, the rejected colloidal particles leaked through the shrunken dextran structure to achieve smart recovery of colloidal particles.
机译:提出了一种使用扩展的和收缩的葡聚糖的胶体颗粒排斥和回收系统。在与蔗糖的酶促反应中,右旋糖酐酶与右旋糖酐形成复合物。因此右旋糖酐很容易在膜孔上形成。葡聚糖转移酶溶液以各种渗透速率渗透通过Shirasu多孔玻璃膜。通过控制葡聚糖的密度,使蔗糖溶液渗透以从固​​定在膜孔上的DSase的活性位点以固定的1.9-23U / g的密度产生葡聚糖。当以低渗透速率进行固定时,DSase的固定密度很高,导致产生的葡聚糖高密度为9.6-28 mg / g。胶体颗粒溶液渗透通过膜以排斥和回收。高密度葡聚糖有效地排斥了胶体颗粒。在50%的甲烷溶液中,拒收的胶体颗粒通过收缩的葡聚糖结构泄漏,从而实现了胶体颗粒的智能回收。

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