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Wet oxidation as a pretreatment method for wastewaters contaminated by bioresistant organics

机译:湿式氧化作为生物抗性有机物污染废水的预处理方法

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The partial wet air oxidation of aqueous solutions of polyethylene glycol, a model organic pollutant typically found in wastewaters of polymer-manufacturing, has been investigated at temperatures from 383 K to 513 K and oxygen partial pressures from 2 MPa to 3 MPa. The progress of the reaction was investigated in terms of COD and TOC removal, while fragmentation of the original polymer to lower molecular weight compounds was followed by means of liquid chromatography. The impact of various heterogeneous and homogeneous catalysts on the kinetics and mechanisms of the reaction has also been studied. Conversion of the model compound through various oxidation intermediates to end-products, such as carboxylic acids and oligomers, could be easily achieved even under mild operating conditions, while further total oxidation proved to be difficult even under more severe conditions. Catalysts were found to be, in general, capable of increasing the rates of total uncatalysed oxidation, The implications for complete removal of bioresistant organic pollutants by partial wet oxidation followed by a biological treatment step are also discussed.
机译:聚乙二醇水溶液的局部湿空气氧化是一种典型的有机污染物,通常在聚合物制造废水中发现,已在383 K至513 K的温度和2 MPa至3 MPa的氧分压下进行了研究。根据COD和TOC的去除研究了反应的进程,同时通过液相色谱法将原始聚合物裂解为低分子量化合物。还研究了各种非均相和均相催化剂对反应动力学和机理的影响。即使在温和的操作条件下,也可以很容易地将模型化合物通过各种氧化中间体转化为最终产物,例如羧酸和低聚物,而即使在更苛刻的条件下,进一步的完全氧化也很困难。人们发现,催化剂通常能够提高总的未催化氧化速率。还讨论了通过部分湿式氧化再进行生物处理步骤完全去除生物抗性有机污染物的意义。

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