首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Co-metabolic degradation of iomeprol by a Pseudomonas sp. and its application in biological aerated filter systems
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Co-metabolic degradation of iomeprol by a Pseudomonas sp. and its application in biological aerated filter systems

机译:假单胞菌(Pseudomonas sp。)代谢iomeprol。及其在曝气生物滤池系统中的应用

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摘要

The non-ionic water-soluble X-ray contrast agent iomeprol (IOM) enters the water supply through sewage treatment plants, which can cause considerable environmental harm. In this study, Pseudomonas sp. I-24 (I-24) was tested for its ability to remove IOM from water via co-metabolic pathways. The optimum removal rate of IOM by I-24 was 38.43% +/- 3.70% when starch served as the source of external carbon, and its co-metabolism of IOM conformed to the first-order kinetics. The highest activity of intracellular enzyme (degrading enzyme) extracted from I-24 was 0.143 +/- 0.005 mU in starch condition. The Michaelis constant of the degrading enzyme was found to be 91.08 mu mol L-1. However, glucose and maltose showed the best promotive effects on the growth and electron transport activity of I-24, indicating that overgrowth may result in competitive inhibition and a reduced degradation rate of IOM. Adding I-24 and degrading enzymes to biological aerated filters increased IOM removal rates without affecting CODMn removal.
机译:非离子型水溶性X射线造影剂iomeprol(IOM)通过污水处理厂进入供水系统,会对环境造成严重危害。在这项研究中,假单胞菌属。测试了I-24(I-24)通过共代谢途径从水中去除IOM的能力。当淀粉作为外部碳源时,I-24的IOM最佳去除率为38.43%+/- 3.70%,其IOM的共代谢符合一级动力学。在淀粉条件下,从I-24提取的细胞内酶(降解酶)的最高活性为0.143 +/- 0.005 mU。发现降解酶的米氏常数为91.08μmolL-1。然而,葡萄糖和麦芽糖对I-24的生长和电子传输活性表现出最好的促进作用,表明过度生长可能导致竞争性抑制和IOM降解速率降低。在曝气生物滤池中添加I-24和降解酶可提高IOM去除率,而不会影响CODMn去除。

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