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Towards in situ electro-generation of ferrate for drinking water treatment: A comparison of three low-cost sacrificial iron electrodes

机译:朝向原位电气产生饮用水处理:三种低成本牺牲铁电极的比较

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摘要

This work studied the mechanisms governing the electrode processes along with the structure and impact of the passivation layer on the electro-generation of ferrate using three low-cost sacrificial iron materials: mild steel (MS), grey cast iron (GCI) and white cast iron (WCI) electrodes in highly alkaline media. Cyclic voltammetry studies showed that the mechanisms controlling the electrode reactions depend on its alloy composition as it influences the iron species formed in the passivation layer. The presence of silicon in the GCI electrode reduced the stability of the latter, significantly enhancing the ferrate electro-generation due to the persistence of γ-FeOOH in the passivation layer. The instability/dissolution of this layer contributed to a 54%-higher generation of ferrate with GCI when compared to the other electrodes, reaching a maximum titre of 37?mM of ferrate in 10?M NaOH solution with a current efficiency of 45% and the lowest specific energy consumption of 8 kWh kg?1.
机译:本工作研究了在高碱性介质中使用三种低成本牺牲铁材料:软钢(MS)、灰铸铁(GCI)和白口铸铁(WCI)电极时,电极过程的控制机制以及钝化层的结构和影响。循环伏安法研究表明,控制电极反应的机制取决于其合金成分,因为它影响钝化层中形成的铁物种。硅在GCI电极中的存在降低了后者的稳定性,由于γ-FeOOH在钝化层中的持续存在,显著增强了高铁酸盐的发电。与其他电极相比,这一层的不稳定性/溶解导致使用GCI的高铁酸盐的生成量增加了54%,达到37?的最大滴定度?10毫米高铁酸盐?M NaOH溶液,电流效率为45%,最低比能耗为8 kWh kg?1.

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