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Ammonia Wastewater Treatment by Hydroxy Radical Oxidation at PbO2 Powder Porous Electrode

机译:PbO2粉末多孔电极羟基自由基氧化法处理氨氮废水。

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ammonia wastewater was treated by hydroxyl radical oxidation generated from electrolysis using homemade PbO2 powder porous electrode as anode and stainless steel as cathode.The effect of the percentage of mixed power added,current density,initial ammonia concentration on ammonia removal was investigated.The results showed that the optimum mass percentage of graphite and activated carbon powder added was 20%,in which the electrode could produce a higher hydroxyl radicals,and completely oxidized ammonia in a relatively short period of time; the time of ammonia completely oxidized decreased with the increasing current density,but the anode efficiency decreased significantly when the current density was more than 40mA/cm2,though the concentration of hydroxyl radical generated was still higher; the ammonia oxidation rate could be a constant which was independent of the initial concentration of ammonia; besides,the concentration of hydroxyl radicals affected the product of ammonia oxidization,to improve the generation of hydroxyl radicals could reduce the generation of nitrogen compounds,and enhance the efficiency of ammonia being oxidized to N2.
机译:以自制的PbO2粉末多孔电极为阳极,不锈钢为阴极,通过电解产生的羟基自由基氧化处理氨废水。研究了混合功率百分比,电流密度,初始氨浓度对氨去除的影响。石墨和活性炭粉的最佳质量百分比为20%,其中电极可产生较高的羟基自由基,并在较短的时间内完全氧化氨。氨完全氧化的时间随电流密度的增加而降低,但当电流密度大于40mA / cm2时,阳极效率显着下降,尽管产生的羟自由基浓度仍较高。氨氧化速率可以是一个常数,与氨的初始浓度无关。此外,羟基自由基的浓度影响氨氧化的产物,提高羟基自由基的产生可以减少氮化合物的生成,并提高氨被氧化为N2的效率。

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