首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Immobilization of bovine carbonic anhydrase on glycidoxypropyl-functionalized nanostructured mesoporous silicas for carbonation reaction
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Immobilization of bovine carbonic anhydrase on glycidoxypropyl-functionalized nanostructured mesoporous silicas for carbonation reaction

机译:牛碳酸酐酶在环氧丙氧丙基功能化的纳米结构介孔二氧化硅上的固定化以进行碳酸化反应

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Bovine carbonic anhydrase (BCA) has been immobilized on glycidoxypropyl-functionalized SBA-15 (GFS) for biomimetic carbonation reaction. GFS was characterized by N2 adsorption-desorption, Fourier transform infrared analysis, C-13 and Si-29 CP MAS NMR spectroscopy. The immobilization time and material dose were optimized. The influences of pH value and temperature on the activity of free and immobilized BCA, storage stability and reusability of immobilized BCA were investigated using a para-nitrophenyl acetate (p-NPA) assay. The kinetic parameters K-m and K-cat/K-m for free and immobilized BCA were found to be 2.4 mM and 896.4 M-1 s(-1), and 3.1 mM and 757.4 M-1 s(-1), respectively. It was observed that the immobilized BCA can retain around 91% of its initial activity up to 30 days at 4 degrees C, which showed higher storage stability than free BCA. Reusability studies suggested that immobilized BCA could keep high activity after 20 cycles of carbonation reaction. BCA immobilized on GFS (BCA-GFS) were used for hydration of CO2. The CO2 sequestration capacity in terms of conversion CO2 to calcium carbonate was quantified by organic elemental analysis. The amount of CaCO3 precipitated over GFS-BCA was nearly the same as that precipitated over free BCA, 227 mg of CaCO3/mg of BCA-GFS as compared to CO2 sequestration capacity of 241 mg of CaCO3/mg of BCA. (C) 2015 Published by Elsevier B.V.
机译:牛碳酸酐酶(BCA)已固定在环氧丙氧丙基官能化的SBA-15(GFS)上,用于仿生碳酸化反应。 GFS通过N2吸附-解吸,傅立叶变换红外分析,C-13和Si-29 CP MAS NMR光谱进行表征。优化了固定时间和材料剂量。使用对硝基苯乙酸酯(p-NPA)分析法研究了pH值和温度对游离和固定化BCA活性,固定化BCA的储存稳定性和可重复使用性的影响。发现游离和固定的BCA的动力学参数K-m和K-cat / K-m分别为2.4 mM和896.4 M-1 s(-1),3.1 mM和757.4 M-1 s(-1)。观察到,固定的BCA在4℃下直到30天都可以保留其初始活性的约91%,这显示出比游离BCA更高的储存稳定性。可重用性研究表明,固定的BCA在20次碳酸化反应后可以保持较高的活性。固定在GFS上的BCA(BCA-GFS)用于水合二氧化碳。通过有机元素分析来量化以CO 2转化为碳酸钙的形式的CO 2隔离能力。通过GFS-BCA沉淀的CaCO3的量与通过游离BCA沉淀的227 mg CaCO3 / mg BCA-GFS的沉淀几乎相同,而241 mg CaCO3 / mg BCA的CO2螯合能力则相同。 (C)2015由Elsevier B.V.发布

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