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Electrochemical reduction of nitrate and nitrite in alkaline media at CuNi alloy electrodes

机译:CuNi合金电极上碱性介质中硝酸盐和亚硝酸盐的电化学还原

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摘要

The performances of electrodeposited CuNi alloys in the electrochemical reduction of nitrates and nitrites in alkaline electrolyte have been studied and compared with those of the individual metals. CuNi alloys have been deposited from a citrate bath and characterized by SEM-EDS: a large range of compositions (30-95 Cu at.%) was prepared by varying the deposition potential. Application to the electrochemical reduction of nitrate (and nitrite) shows that Cu-rich alloys (Cu = 70-95 at.%) work better than Cu: voltammetric waves show a lower overpotential in the order of 120-150 mV at fresh electrodes; chronoamperometries show higher initial currents and less severe current decay during prolonged polarization; electrolyses reduce more rapidly and with a better selectivity nitrate to ammonia.
机译:研究了电沉积CuNi合金在碱性电解液中电化学还原硝酸盐和亚硝酸盐的性能,并与每种金属进行了比较。 CuNi合金已从柠檬酸盐浴中沉积,并通过SEM-EDS进行了表征:通过改变沉积电势制备了范围广泛的成分(30-95 Cu at。%)。在硝酸盐(和亚硝酸盐)的电化学还原中的应用表明,富铜合金(Cu = 70-95 at。%)比Cu更好地工作:伏安波在新鲜电极上显示出较低的过电势,约为120-150 mV。计时电流法在长时间极化期间显示出较高的初始电流和较小的电流衰减;电解还原速度更快,硝酸盐对氨的选择性更高。

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