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Study on COD removal mechanism and reaction kinetics of oilfield wastewater

机译:油田废水鳕鱼去除机理及反应动力学研究

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The chemical oxygen demand (COD) removal mechanism and reaction kinetics were mainly studied in the treatment of oilfield oily sewage containing polymer by three-dimensional electrode reactor. The results proved that the residual active oxides O-3, H2O2, center dot OH and active chlorine in the system of electrochemical reaction could be effectively detected, and the COD removal mechanism was co-oxidation of active oxides; Under these experimental conditions: the electrolysis current of 6 A, surface/volume ratio of 6/25(cm(2).L-1), the reaction time of 50 min, the CODcr of treated sewage was no more than 50 mg.L-1; the removal reaction of COD conformed to apparent second-order reaction kinetic model, the correlation coefficient R-2 was 0.9728, and the apparent reaction rate constant was k = 3: 58 x 10(-4) (L.min(-1).mg(-1).m(-2)). To reach the goal, the CODcr was no more than 50 mg.L-1 in treated sewage, and the theory minimum processing time was 45.73 min. The verification of experimental results was consistent with kinetic equations.
机译:化学需氧量(COD)去除机理和反应动力学主要研究了三维电极反应器的含有聚合物的油田油田污水。结果证明,可以有效地检测到电化学反应系统中的残留活性氧化物O-3,H 2 O 2,中心点OH和活性氯,COD去除机理是活性氧化物的共氧化;在这些实验条件下:6/25(cm(2).l-1)的6a,表面/体积比的电解电流,50分钟的反应时间,处理过的污水的CODCR不超过50mg。 L-1; COD的去除反应符合表观二阶反应动力学模型,相关系数R-2为0.9728,表观反应速率常数为k = 3:58×10(-4)(L.min(-1) .mg(-1).m(-2))。为了达到目标,治疗污水中的CODCR不超过50 mg.L-1,理论最低处理时间为45.73分钟。实验结果的验证与动力学方程一致。

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