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Features of gas excretion in wastewater treatment processes by the method of electroflotation

机译:电浮法处理废水过程中的气体排泄特征

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The method of wastewater treatment by electroflotation is based on the electrochemical process of obtaining a gas dispersion. Features of the chemical composition of wastewater affect the electrochemical processes of water decomposition and the excretion of electrolysis gases. The aim of the research was to study the regularities of the separation of electrolysis gases from the ratio of the areas of polar electrodes and the value of the active reaction of the treated water (pH). It is established that the optimum value of the ratio of the electrode areas (f_(a): f_(c)) close to 1. The value of the current density at the electrodes is recommended to take in 150 – 200 A/m~(2). An increase in the current density leads to heating of the liquid and an over-expenditure of electricity. The greatest influence of the pH of wastewater on the process of gas excretion is noted in the acidic medium. The gas yield is independent of the pH value in neutral and alkaline media. The gas yield remains practically unchanged with a current density of more than 150 A/m~(2)over the entire range of pH changes from 2 to 12.
机译:通过电浮选处理废水的方法基于获得气体分散体的电化学过程。废水化学成分的特征影响水分解和电解气体排泄的电化学过程。该研究的目的是研究从极性电极面积比和处理后的水的活性反应值(pH)分离电解气体的规律。已经确定,电极面积比(f_(a):f_(c))的最佳值接近1。建议电极上的电流密度值取150 – 200 A / m〜。 (2)。电流密度的增加导致液体的加热和电的过度消耗。在酸性介质中,废水的pH值对气体排出过程的影响最大。气体产量与中性和碱性介质中的pH值无关。在pH值从2到12的整个变化范围内,电流密度大于150 A / m〜(2)时,气体产率几乎保持不变。

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