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A calcite permeable reactive barrier for the remediation of Fluoride from spent potliner (SPL) contaminated groundwater

机译:方解石可渗透反应性屏障,用于修复废旧衬砌(SPL)污染的地下水中的氟化物

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摘要

The use of calcite (CaCO_3) as a substrate for a permeable reactive barrier (PRB) for removing fluoride from contaminated groundwater is proposed and is illustrated by application to groundwater contaminated by spent potliner leachate (SPL), a waste derived from the aluminium smelting process. The paper focuses on two issues in the implementation of calcite permeable reactive barriers for remediating fluoride contaminated water: the impact of the groundwater chemical matrix and CO_2 addition on fluoride removal. Column tests comparing pure NaF solutions, synthetic SPL solutions, and actual SPL leachate indicate that the complex chemical matrix of the SPL leachate can impact fluoride removal significantly. For SPL contaminant mixtures, fluoride removal is initially less than expected from idealized, pure, solutions. However, with time, the effect of other contaminants on fluoride removal diminishes. Column tests also show that pH control is important for optimizing fluoride removal with the mass removed increasing with decreasing pH. Barrier pH can be regulated by CO_2 addition with the point of injection being critical for optimising the remediation performance. Experimental and model results show that approximately 99% of 2300 mg/L fluoride can be removed when CO_2 is injected directly into the barrier. This can be compared to approximately 30-50% removal when the influent solution is equilibrated with atmospheric CO_2 before contact with calcite.
机译:提出使用方解石(CaCO_3)作为可渗透反应性屏障(PRB)的基质,以从受污染的地下水中去除氟化物,并通过应用于废铝衬里浸出液(SPL)污染的地下水中得到说明,该废液是铝熔炼过程产生的废物。本文着眼于实现方解石可渗透反应性屏障来修复氟化物污染水的两个问题:地下水化学基质和添加CO_2对除氟的影响。比较纯NaF溶液,合成SPL溶液和实际SPL渗滤液的柱测试表明,SPL渗滤液的复杂化学基质会显着影响除氟效果。对于SPL污染物混合物,氟化物的去除最初比理想的纯溶液的预期少。但是,随着时间的流逝,其他污染物对氟化物去除的影响会减弱。色谱柱测试还表明,pH控制对于优化除氟效果至关重要,因为随着pH的降低,去除的质量会增加。可以通过添加CO_2来调节屏障的pH值,注入点对于优化修复性能至关重要。实验和模型结果表明,当将CO_2直接注入隔离层中时,可以去除大约99%的2300 mg / L氟化物。这可以与在与方解石接触之前用大气CO_2平衡进水溶液时大约30-50%的去除率相比。

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