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迈向“精准开采”废水:在硅藻土负载纳米零价铁颗粒上选择性回收酸性矿山排水中的铜。

Towards "Precision Mining" of wastewater: Selective recovery of Cu from acid mine drainage onto diatomite supported nanoscale zerovalent iron particles.

机构信息

Camborne School of Mines, University of Exeter, Penryn Campus, Penryn, Cornwall, TR10 9FE, United Kingdom.

School of Engineering, Cardiff University, Queen's Building, The Parade, Cardiff, CF24 3AA, United Kingdom.

出版信息

Chemosphere. 2018 Jul;202:339-348. doi: 10.1016/j.chemosphere.2018.03.042. Epub 2018 Mar 7.

DOI:10.1016/j.chemosphere.2018.03.042
PMID:29574387
Abstract

This paper introduces the concept of 'Precision Mining' of metals which can be defined as a process for the selective in situ uptake of a metal from a material or media, with subsequent retrieval and recovery of the target metal. In order to demonstrate this concept nanoscale zerovalent iron (nZVI) was loaded onto diatomaceous earth (DE) and tested for the selective uptake of Cu from acid mine drainage (AMD) and subsequent release. Batch experiments were conducted using the AMD and nZVI-DE at 4.0-16.0 g/L. Results demonstrate nZVI-DE as highly selective for Cu removal with >99% uptake recorded after 0.25 h when using nZVI-DE concentrations ≥12.0 g/L, despite appreciable concentrations of numerous other metals in the AMD, namely: Co, Ni, Mn and Zn. Cu uptake was maintained in excess of 4 and 24 h when using nZVI-DE concentrations of 12.0 and 16.0 g/L respectively. Near-total Cu release from the nZVI-DE was then recorded and attributed to the depletion of the nZVI component and the subsequent Eh, DO and pH recovery. This novel Cu uptake and release mechanism, once appropriately engineered, holds great promise as a novel 'Precision Mining' process for the rapid and selective Cu recovery from acidic wastewater, process effluents and leach liquors.

摘要

本文介绍了金属的“精准开采”概念,该概念可以被定义为一种从材料或介质中选择性原位摄取金属的过程,随后再对目标金属进行提取和回收。为了验证这一概念,本文将纳米零价铁(nZVI)负载到硅藻土(DE)上,用于从酸性矿山排水(AMD)中选择性地摄取铜,并随后进行释放。在 4.0-16.0 g/L 的 AMD 和 nZVI-DE 条件下进行了批量实验。结果表明,nZVI-DE 对 Cu 的去除具有很高的选择性,当使用浓度≥12.0 g/L 的 nZVI-DE 时,在 0.25 h 后即可记录到超过 99%的 Cu 摄取量,尽管 AMD 中存在大量其他金属,如 Co、Ni、Mn 和 Zn。当使用 12.0 和 16.0 g/L 的 nZVI-DE 浓度时,Cu 的摄取量分别维持在 4 小时和 24 小时以上。随后,nZVI-DE 中的近全部 Cu 被释放,这归因于 nZVI 成分的耗尽以及随后的 Eh、DO 和 pH 值的恢复。这种新颖的 Cu 摄取和释放机制一旦得到适当的工程设计,有望成为一种从酸性废水、工艺废水和浸出液中快速选择性回收 Cu 的新型“精准开采”工艺。

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