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Application of Electro-Fenton Oxidation of Refractory Organic Pollution

机译:Fenton氧化在难降解有机污染物中的应用

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In order to eliminate organic pollution contained in waste water of refinery, Electro-Fenton technique is applied to incinerate lubricate additive biocide N,N-methylenebismorpholine (C9H_(18)N2O2). This process is based on a continuous electrogeneration of hydrogen peroxide in acidic solution by reducing the dissolved oxygen using an industrial graphite cathode. The cathodic potential, the electrolysis time and the dissolved oxygen level were systematically studied. The results obtained indicate that the optimal electrochemical conditions to electrogenerate hydrogen peroxide are: cathodic potential of -500 mV/SCE and current density of 1.4 mA/cm~2. The production of hydrogen peroxide increased with the aeration and electrolysis time, then became stationary after approximately 2 h of electrolysis. Optimized parameters (potential, oxygen level and concentration of ferrous ions) were also applied to incinerate N,N-methylenebismorpholine. The incineration efficiency of the optimized parameters (potential, current density, COD/Fe~(2+) ratio and aeration) indicates that 97 % of COD was incinerated at 50 mA and the optimal concentration of catalyst is between 28 and 56 mg/L. The anode electro-activity of N,N-methylenebismorpholine offers other possibilities to oxidize directly this substance.
机译:为了消除炼油厂废水中的有机污染,采用电子芬顿技术焚烧润滑添加剂杀菌剂N,N-亚甲基双吗啉(C9H_(18)N2O2)。该方法基于通过使用工业石墨阴极还原溶解的氧气在酸性溶液中连续产生过氧化氢的方法。系统地研究了阴极电位,电解时间和溶解氧水平。所得结果表明,电生双氧水的最佳电化学条件为:-500 mV / SCE的阴极电位和1.4 mA / cm〜2的电流密度。过氧化氢的产生随着曝气和电解时间的增加而增加,然后在电解约2小时后变得稳定。优化的参数(电位,氧含量和亚铁离子浓度)也用于焚烧N,N-亚甲基双吗啉。优化的参数(电势,电流密度,COD / Fe〜(2+)比和曝气)的焚化效率表明97%的COD在50 mA下被焚化,催化剂的最佳浓度在28至56 mg / L之间。 N,N-亚甲基双吗啉的阳极电活性提供了其他直接氧化该物质的可能性。

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