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DEVELOPMENT OF AN INTEGRATED ENZYMATIC TREATMENT SYSTEM FOR PHENOLIC WASTE STREAMS

机译:酚类废水综合酶处理系统的开发

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An integrated enzymatic treatment system, which includes Coprinus cinereus peroxidase (CIP) production, processing, and usage in batch or plug flow reactors, is being developed to remove phenolic compounds from the aqueous waste streams. CIP production at bench scale yielded a maximum growth medium activity of approximately 60 U CIP ml~(-1). A CIP enzyme solution was prepared for use in treatment by successive filtration steps. This yielded a 4.5-fold increase in enzyme activity, with 87% enzyme activity recovery, and 83% reduction in the solution's Chemical Oxygen Demand. The purity of CIP was observed to have no effect on the ability of the enzyme to remove phenol from the aqueous solutions within the range of enzyme solution purities tested. Contrary to observations reported for phenol removal from buffered solutions, the addition of polyethylene glycol to non-buffered reaction solutions had no positive effect on the phenol removal accomplished at pH 7 in these experiments. The efficiency of enzyme use in a plug flow reactor was improved by step additions of CIP and H_2O_2.
机译:正在开发一种集成的酶处理系统,其中包括灰粉鬼伞过氧化物酶(CIP)的生产,加工以及在间歇式或活塞流反应器中的使用,以从废水中去除酚类化合物。实验室规模的CIP生产产生了大约60 U CIP ml〜(-1)的最大生长培养基活性。通过连续的过滤步骤制备了用于处理的CIP酶溶液。这使酶活性提高了4.5倍,酶活性恢复了87%,溶液的化学需氧量降低了83%。在所测试的酶溶液纯度范围内,观察到CIP的纯度对酶从水溶液中去除苯酚的能力没有影响。与报道的从缓冲溶液中除去苯酚的观察结果相反,在这些实验中,向非缓冲反应溶液中加入聚乙二醇对在pH 7时完成的苯酚去除没有积极作用。通过逐步添加CIP和H_2O_2,可提高活塞流反应器中酶的使用效率。

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