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首页> 外文期刊>Enzyme and Microbial Technology >Taguchi design-assisted immobilization of Candida rugosa lipase onto a ternary alginate/nanocellulose/montmorillonite composite: Physicochemical characterization, thermal stability and reusability studies
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Taguchi design-assisted immobilization of Candida rugosa lipase onto a ternary alginate/nanocellulose/montmorillonite composite: Physicochemical characterization, thermal stability and reusability studies

机译:Taguchi设计辅助固定的念珠菌脂肪酶脂肪酶在三元藻酸盐/纳米纤维素/蒙脱石复合材料上:物理化学表征,热稳定性和可重用性研究

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摘要

Biomass from oil palm frond leaves (OPFL) is an excellent reservoir of lignocellulosic material which full potential remains untapped. This study aimed to statistically optimize the covalent immobilization of Candida rugosa lipase (CRL) onto a ternary support comprised of OPFL derived nanocellulose (NC) and montmorillonite (MMT) in alginate (ALG) (CRL-ALG/NC/MMT). The coarser topology and the presence of characteristic spherical globules in the field emission scanning electron micrographs and atomic force micrographs, respectively, supported the existence of CRL on ALG/NC/MMT. In addition, amide peaks at 3478 and 1640 cm(-1) in the fourier transform infrared spectra affirmed that CRL was covalently bonded to ALG/NC/MMT. The optimized Taguchi Design-assisted immobilization of CRL onto ALG/NC/MMT (7 h of immobilization, 35 degrees C, pH 5, 7 mg/mL protein loading) gave a production yield of 92.89 % of ethyl levulinate (EL), as proven by gas chromatography-mass spectrometric ([M](+) m/z 144, C7H12O3), FTIR and nuclear magnetic resonance (CAS-539-88-8) data. A higher optimal reaction temperature (50 degrees C) and the reusability of CRL-ALG/NC/MMT for up to 9 esterification cycles substantiated the appreciable structural rigidification of the biocatalyst by ALG/NC/MMT, which improved the catalytic activity and thermal stability of the lipase.
机译:来自油棕榈叶叶(OPFL)的生物量是一种优秀的木质纤维素材料储层,其全潜力仍未开发。本研究旨在统计上优化念珠菌脂肪酶(CRL)在藻酸盐(ALG)(ALG)(CRL-ALG / NC / MMT)中包含OPFL衍生的纳米纤维素(NC)和蒙脱石(MMT)的三元载体上的共价固定。分别较粗糙的拓扑和特征球球的存在,分别在场发射扫描电子显微照片和原子力显微照片中支持ALG / NC / MMT上的CRL。另外,傅立叶变换红外光谱中3478和1640cm(-1)的酰胺峰确认CRL与ALG / NC / MMT共价键合。优化的Taguchi设计辅助将CRL的固定体固定到ALG / NC / MMT上(7小时,35℃,pH5,7mg / mL蛋白质负载)给出了92.89%的乙酰硫酸乙酯(EL)的产率,如通过气相色谱 - 质谱([M](+)M / Z 144,C7H12O3),FTIR和核磁共振(CAS-539-88-8)数据证明。较高的最佳反应温度(50℃)和CRL-ALG / NC / MMT的可重用性,最多9个酯化循环证实了通过ALG / NC / MMT的生物催化剂的可观结构刚性,这改善了催化活性和热稳定性脂肪酶。

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