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The use of Ebonex electrodes for the electrochemical removal of nitrate ion from water

机译:使用Ebonex电极电化学去除水中的硝酸根离子

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This work addresses the remediation of nitrate-contaminated water using electrodes made of Ebonex (a titanium oxide ceramic with a wide range of potential stability). The objective was the complete denitrification of solutions containing nitrate ion. Denitrification was achieved in about 50% yield with unreactive supporting electrolytes when Ebonex was used as both cathode and anode, the remaining product being ammonia. Ammonia could be re-oxidized at the Ebonex anode, but this was much less efficient than the reduction step. A more efficient electrolytic denitrification was possible for solutions containing chloride; mis is oxidized anodically to hypochlorite, which then oxidizes ammonia chemically to N2. The overall rate of denitrification was highest at moderate concentrations of chloride ion, because hypochlorite also re-oxidizes reduction intermediates such as nitrite back to nitrate. Complete denitrification was achieved at all stages of the reaction using Ebonex cathode and a dimensionally stable anode based on Ti/IrO2 or Ti/RuO2, because the DSA oxidizes chloride ion more efficiently than Ebonex. Cathode fouling by water sources that are high in hardness cations can be prevented by using one DSA and a pair of Ebonex electrodes that undergo periodic polarity reversal.
机译:这项工作致力于解决由Ebonex(具有广泛的电位稳定性范围的氧化钛陶瓷)制成的电极对硝酸盐污染水的修复。目的是使含硝酸根离子的溶液完全脱氮。当Ebonex既用作阴极又用作阳极时,使用未反应的支持电解质可实现约50%的脱氮率。氨可以在Ebonex阳极重新氧化,但这比还原步骤效率低得多。含有氯化物的溶液可以进行更有效的电解反硝化。氨被阳极氧化成次氯酸盐,然后将其化学氧化成N2。在中等浓度的氯离子下,反硝化的总速率最高,因为次氯酸盐还会将还原性中间体(例如亚硝酸盐)重新氧化为硝酸盐。使用Ebonex阴极和基于Ti / IrO2或Ti / RuO2的尺寸稳定的阳极,可以在反应的所有阶段实现完全脱氮,因为DSA比Ebonex更有效地氧化氯离子。通过使用一个DSA和一对经历周期性极性反转的Ebonex电极,可以防止高硬度阳离子的水对阴极的污染。

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