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首页> 外文期刊>Enzyme Research >Assessment of the Morphological, Biochemical, and Kinetic Properties forCandida rugosaLipase Immobilized on Hydrous Niobium Oxide to Be Used in the Biodiesel Synthesis
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Assessment of the Morphological, Biochemical, and Kinetic Properties forCandida rugosaLipase Immobilized on Hydrous Niobium Oxide to Be Used in the Biodiesel Synthesis

机译:固定在含水氧化铌上用于生物柴油合成的皱纹假丝酵母脂肪酶的形态,生化和动力学性质的评估

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Lipase fromCandida rugosa(CRL) was immobilized by covalent attachment on hydrous niobium oxide. The matrix could effectively be attached to the enzyme with high retention of activity and prevent its leakage. Following immobilization, CRL exhibited improved storage stability and performed better at higher incubation temperatures. In addition, the enzyme retained most of its catalytic efficiency after successive operational cycles. The immobilized derivative was also fully characterized with respect to its morphological properties: particle size, surface specific area, and pore size distribution. Structural integrity and conformational changes, such as surface cavities in the support, set by the lipase procedure, were observed by Scanning Electron Microscopy. Additionally, a comparative study between free and immobilized lipases was provided in terms of pH, temperature, and thermal stability. CRL derivative was evaluated for the synthesis of biodiesel employing babassu oil and short chain alcohols. The process was feasible only for oil and butanol reaction system.
机译:通过将共价结合物固定于皱纹念珠菌(CRL)的脂肪酶上。基质可以有效保留活性,并有效地附着在酶上,并防止其泄漏。固定后,CRL表现出改善的储存稳定性,并在较高的培养温度下表现更好。另外,在连续的操作循环后,该酶保留了大部分催化效率。固定化衍生物的形态特征也得到了充分表征:粒径,比表面积和孔径分布。通过扫描电子显微镜观察到的结构完整性和构象变化,例如通过脂肪酶程序设定的载体表面的空腔。另外,就pH,温度和热稳定性提供了游离和固定化脂肪酶之间的比较研究。使用巴巴苏油和短链醇评估了CRL衍生物用于生物柴油的合成。该方法仅对油和丁醇反应系统可行。

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