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Removal and recovery of vanadium from alkaline steel slag leachates with anion exchange resins

机译:用阴离子交换树脂从碱性钢渣沥滤液中去除和回收钒

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摘要

Leachable vanadium (V) from steel production residues poses a potential environmental hazard due to its mobility and toxicity under the highly alkaline pH conditions that characterise these leachates. This work aims to test the efficiency of anion exchange resins for vanadium removal and recovery from steel slag leachates at a representative average pH of 11.5. Kinetic studies were performed to understand the vanadium sorption process. The sorption kinetics were consistent with a pseudo-first order kinetic model. The isotherm data cannot differentiate between the Langmuir and Freundlich models. The maximum adsorption capacity (Langmuir value qmax) was 27 mg V g−1 resin. In column anion exchange, breakthrough was only 14% of the influent concentration after passing 90 L of steel slag leachate with 2 mg L−1 V through the column. When eluting the column 57–72% of vanadium was recovered from the resin with 2 M NaOH. Trials on the reuse of the anion exchange resin showed it could be reused 20 times without loss of efficacy, and on average 69% of V was recovered during regeneration. The results document for the first time the use of anion exchange resins to remove vanadium from steel slag leachate. As an environmental contaminant, removal of V from leachates may be an obligation for long-term management requirements of steel slag repositories. Vanadium removal coupled with the recovery can potentially be used to offset long-term legacy treatment costs.
机译:钢铁生产残余物中的可浸出钒(V)在高渗滤条件下具有很高的碱性pH值,因此具有迁移性和毒性,对环境构成潜在的危害。这项工作旨在测试阴离子交换树脂在代表性平均pH为11.5时从钢渣浸出液中去除和回收钒的效率。进行动力学研究以了解钒的吸附过程。吸附动力学与拟一级动力学模型一致。等温线数据无法区分Langmuir模型和Freundlich模型。最大吸附容量(朗缪尔值qmax)为27 mg V g-1树脂。在色谱柱阴离子交换中,只有90 L的钢渣浸出液(2 mg L-1 V)通过色谱柱后,穿透量仅为进水浓度的14%。洗脱时,用2 M NaOH从树脂中回收57-72%的钒。关于阴离子交换树脂再利用的试验表明,它可以再利用20次而不会损失功效,并且在再生过程中平均回收了69%的V。结果首次证明使用阴离子交换树脂从钢渣浸出液中去除钒。作为环境污染物,从沥滤液中去除V可能是钢渣库长期管理要求的一项义务。除钒和回收钒可以潜在地抵消长期的传统处理费用。

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