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Electrochemical studies of packed iron powder electrodes: Effects of common constituents of natural waters on corrosion potential

机译:填充铁粉电极的电化学研究:天然水的常见成分对腐蚀电位的影响

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Using a powder disk electrode (PDE) made with micron-sized, high purity iron metal we investigated how the corrosion of this material is affected by solution conditions that are relevant to the degradation of contaminants in environmental remediation applications. Changes in corrosion potential (E_(corr)) with time showed that low pH, high concentrations of chloride, and natural organic matter led to breakdown of the passive film. Bicarbonate caused E_(corr) to decline rapidly into the active potential region, but then E_(corr) rose back into the passive region over 10s of hours. The rate of decline in E_(corr) was greatest at higher pHs, suggesting a specific effect of HCO_3 rather than a general effect of pH.
机译:使用由微米级,高纯度铁金属制成的粉末圆盘电极(PDE),我们研究了这种材料的腐蚀如何受到与环境修复应用中污染物降解相关的溶液条件的影响。腐蚀电位(E_(corr))随时间的变化表明,低pH,高浓度的氯化物和天然有机物会导致钝化膜破裂。碳酸氢盐使E_(corr)迅速下降到主动电位区域,但随后在10s小时内E_(corr)上升回到被动区域。 E_(corr)的下降速率在较高的pH值下最大,表明HCO_3的特定作用而不是pH的一般作用。

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