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用于稀土元素绿色回收的聚合物基萃取材料:综述

Polymer-Based Extracting Materials in the Green Recycling of Rare Earth Elements: A Review.

作者信息

Croft Charles F, Nagul Edward A, Almeida M Inês G S, Kolev Spas D

机构信息

School of Chemistry, The University of Melbourne, Victoria 3010, Australia.

Department of Chemical Engineering, The University of Melbourne, Victoria 3010, Australia.

出版信息

ACS Omega. 2024 Sep 19;9(39):40315-40328. doi: 10.1021/acsomega.4c06990. eCollection 2024 Oct 1.

Abstract

Rare earth elements (REEs) are becoming increasingly important in the development of modern and green energy technologies with the demand for REEs predicted to grow in the foreseeable future. The importance of REEs lies in their unique physiochemical properties, which cannot be reproduced using other elements. REEs are sourced through mining, with global exploration of additional commercially viable mining sites still ongoing. However, there is a growing need for recycling of REEs due to the current supply of REEs not matching the growing demand, the environmental impact of REE mining and processing (the so-called "balance problem"), and the generation of large volumes of harmful electronic waste (e-waste). Industrial REE processing is mainly carried out by hydrometallurgy processes, particularly solvent extraction (SX) and ion exchange (IX) technologies. However, these methods have a significant environmental impact due to their intensive use of harmful and nonsustainable reagents. This Review highlights the development of approaches involving polymer-based extracting materials for REE manufacturing as more sustainable alternatives to current industrial REE processing methods. These materials include supported liquid membranes (SLMs), solvent impregnated resins (SIRs), macro and micro capsules, polymer inclusion membranes (PIMs), and micro polymer inclusion beads (μPIBs). Polymer-based extracting materials have the advantage of more economical regent usage while applying the same extractants used in commercial SX, enabling applications analogous to the current industrial process. These materials can be fabricated by a variety of methods in a diverse range of physical formats, with the advantages and disadvantages of each material type described and discussed in this Review along with their applications to REE processing, including e-waste recycling and mineral processing.

摘要

稀土元素(REEs)在现代绿色能源技术的发展中变得越来越重要,预计在可预见的未来对稀土元素的需求将会增长。稀土元素的重要性在于其独特的物理化学性质,这些性质无法用其他元素复制。稀土元素通过采矿获取,全球范围内仍在持续勘探更多具有商业可行性的矿场。然而,由于目前稀土元素的供应与不断增长的需求不匹配、稀土开采和加工对环境的影响(即所谓的“平衡问题”)以及大量有害电子废物(电子垃圾)的产生,对稀土元素进行回收利用的需求日益增加。工业上稀土元素的加工主要通过湿法冶金工艺进行,特别是溶剂萃取(SX)和离子交换(IX)技术。然而,这些方法由于大量使用有害且不可持续的试剂,对环境有重大影响。本综述重点介绍了用于稀土元素制造的基于聚合物的萃取材料的发展,作为当前工业稀土加工方法更具可持续性的替代方案。这些材料包括支撑液膜(SLMs)、溶剂浸渍树脂(SIRs)、宏观和微观胶囊、聚合物包容膜(PIMs)以及微聚合物包容珠(μPIBs)。基于聚合物的萃取材料具有更经济地使用试剂的优势,同时使用与商业溶剂萃取相同的萃取剂,能够实现与当前工业工艺类似的应用。这些材料可以通过多种方法制成各种物理形式,本综述描述并讨论了每种材料类型的优缺点以及它们在稀土加工中的应用,包括电子垃圾回收和矿物加工。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fed/11447746/92bec38cd27e/ao4c06990_0001.jpg

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