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Preparation of Porous Polyurethane Particles and Their Use in Enzyme Immobilization

机译:多孔聚氨酯颗粒的制备及其在酶固定化中的应用

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AbstractPorous polyurethane particles were prepared as follows: (1) Two low molecular weight polymers, namely, polymethylene(polyphenyl isocyanate) and poly(propylene glycol) were mixed with stirring at room temperature and allowed to react. (2) The reacted mixture was dispersed with stirring in mineral oil containing small amounts of water, the catalyst dibutyltin dilaurate, and CaCO3powder. In the presence of the catalyst, the reaction between the two polymers proceeded to completion. Small particles of polyurethane are thus formed which contain mineral oil and CaCO3as porogens. The particles obtained, separated by filtration, were treated with a solution of HCl in order to generate additional pores, extracted with benzene to eliminate the mineral oil present in the pores, and finally subjected to drying and sieving. The particles were investigated by scanning electron microscopy (SEM), infrared (IR) spectroscopy, and specific surface area measurements. Lipase fromCandida rugosawas immobilized by adsorption on the porous polyurethane particles and cross‐linked with glutaraldehyde to enhance the stability of the immobilization. The biocatalytic particles were used for the hydrolysis of triacylglycerides. The high activity of the immobilized enzyme, which per enzyme molecule can be higher than that of the free enzyme, reveals that the porous polyurethane particles constitute excellent supports for lipas
机译:摘要 采用以下方法制备了多孔聚氨酯颗粒:(1)将聚亚甲基异氰酸酯和聚丙二醇两种低分子量聚合物在室温下搅拌混合,反应均匀。(2)将反应的混合物分散在含有少量水的矿物油、催化剂二月桂酸二丁基锡和CaCO3粉末中。在催化剂存在下,两种聚合物之间的反应进行到底。因此形成了含有矿物油和CaCO3as成孔剂的聚氨酯小颗粒。得到的颗粒,通过过滤分离,用HCl溶液处理以产生额外的孔隙,用苯提取以消除孔隙中存在的矿物油,最后进行干燥和筛分。通过扫描电子显微镜(SEM)、红外(IR)光谱和比表面积测量对颗粒进行了研究。鲁氏念珠菌脂肪酶通过吸附在多孔聚氨酯颗粒上,并与戊二醛交联,增强固定的稳定性。生物催化颗粒用于三酰基甘油酯的水解。固定化酶的高活性(每个酶分子可以高于游离酶的活性)表明,多孔聚氨酯颗粒构成了脂肪的极好支撑物

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