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Degradation of Polyacrylamide in Oil Wastewater by Electrocatalytic Oxidation

机译:电催化氧化降解含油废水中的聚丙烯酰胺

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Electrocatalytic oxidation of polyacrylamide (PAM) at Ti/PbO2 anode was studied in a three-electrode cell without any diaphragm but with a sandwich bath by galvanostatic electrolysis.Turbidimetry was used to determine the concentration of PAM.The change of degradation ratio with current density and reaction temperature was studied through single factor experiment in order to determine the optimal conditions.The optimal conditions of PAM degradation by electrocatalytic oxidation were:current density was 200 mA·cm-2,and reaction temperature was 60 °C.Under these conditions,the degradation ratio of PAM reached 88% after 3.0 h electrolysis.The total dissolved salts (TDS) and different ions affected on the degradation ratio of PAM by changing the size of PAM molecule and the viscosity of solution.The results of experiments showed that the degradation ratio increased firstly then decreased with the increasing of ion concentration.When TDS was 3000 mg·L-1,the degradation ratio reached the highest level.The high valence cation promoted the degradation of PAM.Cl-and HCO3-promoted the degradation of PAM because of the direct and indirect electrocatalytic oxidation and hydrolysis in alkaline solution respectively.
机译:研究了在三电极电解池中没有膜片但带有夹层浴的三电极电解槽中Ti / PbO2阳极上聚丙烯酰胺(PAM)的电催化氧化,用比浊法测定PAM的浓度,降解率随电流密度的变化。通过单因素实验研究反应温度,确定最佳条件。电催化氧化降解PAM的最佳条件为:电流密度为200 mA·cm-2,反应温度为60°C。电解3.0 h后PAM的降解率达到88%。通过改变PAM分子的大小和溶液的黏度,总溶解盐(TDS)和不同离子对PAM的降解率产生影响。 TDS为3000 mg·L-1时,降解率达到hig。高价阳离子促进了PAM的降解。Cl-和HCO3-分别由于在碱性溶液中的直接和间接电催化氧化和水解而促进了PAM的降解。

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