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Electrochemical Method Applicable To Treatment Of Wastewater From Nitrotriazolone Production

机译:适用于硝化三唑酮生产废水处理的电化学方法

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Laboratory studies show that electrochemical oxidation of acidic nitrotriazolone (NTO) solutions results in complete mineralization, with ammonium nitrate as the only solution product. Other products (carbon dioxide, carbon monoxide, and nitrous oxide) are eliminated as gases from the working electrode. No additional chemical loading is required for the process, and electricity is the only input. The process maytherefore represent a cost-effective and environmentally friendly method of remediation for wastewater from NTO manufacture. Electrolyses were carried out at different applied voltages and at NTO concentrations of 0.01 and 0.05 mol/L, and the results indicate that a higher oxidation rate results in a greater charge passed per mole of NTO oxidized and increased production of nitrous oxide. Mechanisms are proposed on the basis of competing oxidative pathways that account for all products formed and the total charge passed during the reaction.
机译:实验室研究表明,酸性硝基三唑酮(NTO)溶液的电化学氧化可导致完全矿化,而硝酸铵是唯一的溶液产品。其他产物(二氧化碳,一氧化碳和一氧化二氮)作为气体从工作电极中清除。该过程不需要额外的化学负载,并且电力是唯一的输入。因此,该方法可以代表一种经济有效且环保的NTO生产废水的修复方法。在不同的施加电压下,在NTO浓度为0.01和0.05 mol / L的条件下进行电解,结果表明,较高的氧化速率导致每摩尔NTO氧化所通过的电荷更多,并增加一氧化二氮的产生。在竞争性氧化途径的基础上提出了机理,该机理解释了所有形成的产物和反应期间通过的总电荷。

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