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Method for the stabilization and immobilization of enzymatic extracts and its application to the decolorization of textile dyes

机译:稳定和固定化酶提取物的方法及其在纺织品染料脱色中的应用

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Peroxidases from Pleurotus eryngii have been investigated for their ability to degrade recalcitrant, phenolic pollutants. The use of crude enzymatic extracts can reduce the high costs associated with enzyme purification, and enzyme immobilization can enhance enzyme stability and recovery. The present study tests the effectiveness of various conditions for crude enzyme stabilization in polyethylene glycol and glycine solutions, and immobilization on monofunctional and heterofunctional agarose solid supports. Glycine at 0.5 M at 4 A degrees C and pH 4 was most effective stabilization agent for the crude enzymatic extracts, and enzyme immobilization efficiency was greatest for heterofunctional supports. MANA-glyoxyl heterofunctional supports were demonstrated to have the greatest enhancement of decolorization (1.3-fold) and velocity of substrate consumption (fivefold). Therefore, the application of crude enzymatic extracts to industrial processes, such as dye decolorization, represents a cost-effective alternative to purified enzymes
机译:已经研究了杏鲍菇的过氧化物酶降解难降解的酚类污染物的能力。粗酶提取物的使用可以减少与酶纯化有关的高成本,酶固定化可以增强酶的稳定性和回收率。本研究测试了在聚乙二醇和甘氨酸溶液中稳定粗酶并固定在单功能和杂功能琼脂糖固体支持物上的各种条件的有效性。在4 A的温度和pH 4下,0.5 M的甘氨酸对粗酶提取物是最有效的稳定剂,而异功能支持物的酶固定效率最高。事实证明,MANA-乙醛基异功能性载体具有最大的脱色增强(1.3倍)和底物消耗速度(5倍)。因此,将粗酶提取物应用于工业过程(例如染料脱色)代表了纯化酶的经济高效的替代品

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