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Chromate reduction in highly alkaline groundwater by zerovalent iron: Implications for its use in a permeable reactive barrier

机译:零价铁对高碱性地下水中铬酸盐的还原:对其在渗透性反应性屏障中的应用的影响

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摘要

It is not currently known if the widely used reaction of zerovalent iron (ZVI) and Cr(VI) can be used in a permeable reactive barrier (PRB) to immobilize Cr leaching from hyperalkaline chromite ore processing residue (COPR). This study compares Cr(VI) removal from COPR leachate and chromate solution by ZVI at high pH. Cr(VI) removal occurs more rapidly from the chromate solution than from COPR leachate. The reaction is first order with respect to both [Cr(VI)] and the iron surface area, but iron surface reactivity is lost to the reaction. Buffering pH downward produces little change in the removal rate or the specific capacity of iron until acidic conditions are reached. SEM and XPS analyses confirm that reaction products accumulate on the iron surface in both liquors, but that other surface precipitates also form in COPR leachate. Leachate from highly alkaline COPR contains Ca, Si, and Al that precipitate on the iron surface and significantly reduce the specific capacity of iron to reduce Cr(VI). This study suggests that, although Cr(VI) reduction by ZVI will occur at hyperalkaline pH, other solutes present in COPR leachate will limit the design life of a PRB.
机译:目前尚不知道广泛使用的零价铁(ZVI)和Cr(VI)的反应是否可用于渗透性反应阻挡层(PRB)中以固定从高碱性亚铬铁矿矿石加工残渣(COPR)中浸出的Cr。这项研究比较了在高pH下ZVI从COPR渗滤液和铬酸盐溶液中去除Cr(VI)的情况。从铬酸盐溶液中去除铬(VI)的速度比从COPR渗滤液中去除铬的速度更快。对于[Cr(VI)]和铁表面积而言,该反应均为一阶反应,但是反应中铁表面反应性丧失。向下缓冲pH值直至达到酸性条件,铁的去除率或比容量几乎不变。 SEM和XPS分析证实两种液体的反应产物都在铁表面积聚,但是在COPR渗滤液中也形成了其他表面沉淀物。高碱性COPR产生的渗滤液包含Ca,Si和Al,它们沉淀在铁表面,并显着降低铁还原Cr(VI)的比容量。这项研究表明,尽管ZVI还原Cr(VI)会在高碱性pH下发生,但COPR渗滤液中存在的其他溶质将限制PRB的设计寿命。

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