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用于工业废水中丙烯酰胺生物降解的氧化亚铁钩端螺旋菌 ICTDB921 丙烯酰胺酶的磁性交联酶聚集体

Magnetic cross-linked enzyme aggregates of acrylamidase from Cupriavidus oxalaticus ICTDB921 for biodegradation of acrylamide from industrial waste water.

机构信息

Department of Food Engineering and Technology, Institute of Chemical Technology, Nathalal Parekh Marg, Matunga, Mumbai 400 019, India.

Department of Food Engineering and Technology, Institute of Chemical Technology, Nathalal Parekh Marg, Matunga, Mumbai 400 019, India.

出版信息

Bioresour Technol. 2019 Jan;272:137-145. doi: 10.1016/j.biortech.2018.10.015. Epub 2018 Oct 6.

Abstract

Acrylamidase from Cupriavidus oxalaticus ICTDB921 was immobilized on magnetic nanoparticles (MNPs) for degradation of acrylamide (a group 2A carcinogen and an environmental contaminant) from industrial waste water. Acrylamidase-MNPs were prepared (maximum recovery ∼94%) at optimized process parameters viz. 1.5:1 (v/v) of acetone: crude acrylamidase/5 mM of glutaraldehyde/90 min/1.5:1 of enzyme: MNP ratio. MNPs and acrylamidase-MNPs were characterized by particle size analysis, FTIR, XRD, SEM and vibrating sample magnetometer. Acrylamidase-MNPs showed a shift in optimum pH (8-8.5) and temperature (60-65 °C) with higher pH/thermal stability vis-à-vis free enzyme. A significant increase in kinetic constants, thermal inactivation constants and thermodynamic parameters were noted for acrylamidase-MNPs. A complete degradation of acrylamide ∼2100 mg/L was achieved in industrial waste water under optimized conditions for batch process and the kinetics was best represented by Haldane model. Acrylamidase-MNPs retained >80% of its initial activity after 4 cycles for both pure acrylamide and industrial waste water.

摘要

从 Oxalobacter oxalaticus ICTDB921 中提取的丙烯酰胺酶被固定在磁性纳米颗粒 (MNPs) 上,用于降解工业废水中的丙烯酰胺(一种 2A 类致癌物质和环境污染物)。在优化的工艺参数下(丙酮:粗丙烯酰胺的比例为 1.5:1(v/v)/5 mM 戊二醛/90 分钟/酶:MNP 比例为 1.5:1),丙烯酰胺酶-MNPs 的最大回收率约为 94%。通过粒径分析、傅里叶变换红外光谱、X 射线衍射、扫描电子显微镜和振动样品磁强计对 MNPs 和丙烯酰胺酶-MNPs 进行了表征。与游离酶相比,丙烯酰胺酶-MNPs 的最适 pH(8-8.5)和温度(60-65°C)发生了偏移,具有更高的 pH/热稳定性。丙烯酰胺酶-MNPs 的动力学常数、热失活动力学常数和热力学参数显著增加。在批处理过程的优化条件下,实现了工业废水中约 2100mg/L 的丙烯酰胺的完全降解,动力学最好由 Haldane 模型表示。丙烯酰胺酶-MNPs 在纯丙烯酰胺和工业废水的 4 个循环后,仍保留了初始活性的 80%以上。

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