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通过粉末零价铁/活性炭界面的微电解增强硝酸盐还原的机理。

Mechanism of enhanced nitrate reduction via micro-electrolysis at the powdered zero-valent iron/activated carbon interface.

机构信息

School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai 200444, PR China.

School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai 200444, PR China.

出版信息

J Colloid Interface Sci. 2014 Dec 1;435:21-5. doi: 10.1016/j.jcis.2014.08.043. Epub 2014 Aug 30.

Abstract

Nitrate reduction by zero-valent iron (Fe(0)) powder always works well only at controlled pH lower than 4 due to the formation of iron (hydr)oxides on its surface. Fe(0) powder combined with activated carbon (AC), i.e., Fe(0)/AC micro-electrolysis system, was first introduced to enhance nitrate reduction in aqueous solution. Comparative study was carried out to investigate nitrate reduction by Fe(0)/AC system and Fe(0) under near-neutral conditions, showing that the Fe(0)/AC system successfully reduced nitrate even at initial pH 6 with the reduction efficiency of up to 73%, whereas for Fe(0) only ∼10%. The effect of Fe(0) to AC mass ratio on nitrate reduction efficiency was examined. Easier nitrate reduction was achieved with more contact between Fe(0) and AC as the result of decreasing Fe(0) to AC mass ratio. Ferrous ion and oxidation-reduction potential were measured to understand the mechanism of enhanced nitrate reduction by Fe(0)/AC micro-electrolysis. The results suggest that a relative potential difference drives much more electrons from Fe(0) to AC, thus generating adsorbed atomic hydrogen which makes it possible for nitrate to be reduced at near-neural pH. Fe(0)/AC micro-electrolysis thus presents a great potential for practical application in nitrate wastewater treatment without excessive pH adjustment.

摘要

零价铁(Fe(0))粉末的硝酸盐还原作用仅在控制 pH 值低于 4 的情况下才有效,这是由于其表面形成了铁(氢)氧化物。Fe(0)粉末与活性炭(AC)结合,即 Fe(0)/AC 微电解系统,首先被引入以增强水溶液中的硝酸盐还原作用。进行了比较研究,以研究近中性条件下 Fe(0)/AC 系统和 Fe(0)的硝酸盐还原作用,结果表明,即使初始 pH 值为 6,Fe(0)/AC 系统也能成功还原硝酸盐,还原效率高达 73%,而 Fe(0)的还原效率仅约为 10%。考察了 Fe(0)与 AC 质量比对硝酸盐还原效率的影响。随着 Fe(0)与 AC 之间接触的增加,即随着 Fe(0)与 AC 质量比的减小,硝酸盐的还原变得更容易。测量了亚铁离子和氧化还原电位,以了解 Fe(0)/AC 微电解增强硝酸盐还原的作用机制。结果表明,相对电位差促使更多的电子从 Fe(0)转移到 AC,从而产生吸附原子氢,使得硝酸盐在近中性 pH 值下得以还原。因此,Fe(0)/AC 微电解在无需过度调节 pH 值的情况下,具有在实际应用中处理硝酸盐废水的巨大潜力。

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