Ujaczki Éva, Feigl Viktória, Molnár Mónika, Cusack Patricia, Curtin Teresa, Courtney Ronan, O'Donoghue Lisa, Davris Panagiotis, Hugi Christoph, Evangelou Michael Wh, Balomenos Efthymios, Lenz Markus
School of Engineering University of Limerick Limerick Ireland.
The Bernal Institute University of Limerick Limerick Ireland.
J Chem Technol Biotechnol. 2018 Sep;93(9):2498-2510. doi: 10.1002/jctb.5687. Epub 2018 Jun 29.
Since the world economy has been confronted with an increasing risk of supply shortages of critical raw materials (CRMs), there has been a major interest in identifying alternative secondary sources of CRMs. Bauxite residues from alumina production are available at a multi-million tonnes scale worldwide. So far, attempts have been made to find alternative re-use applications for bauxite residues, for instance in cement / pig iron production. However, bauxite residues also constitute an untapped secondary source of CRMs. Depending on their geological origin and processing protocol, bauxite residues can contain considerable amounts of valuable elements. The obvious primary consideration for CRM recovery from such residues is the economic value of the materials contained. However, there are further benefits from re-use of bauxite residues in general, and from CRM recovery in particular. These go beyond monetary values (e.g. reduced investment / operational costs resulting from savings in disposal). For instance, benefits for the environment and health can be achieved by abatement of tailing storage as well as by reduction of emissions from conventional primary mining. Whereas certain tools (e.g. life-cycle analysis) can be used to quantify the latter, other benefits (in particular sustained social and technological development) are harder to quantify. This review evaluates strategies of bauxite residue re-use / recycling and identifies associated benefits beyond elemental recovery. Furthermore, methodologies to translate risks and benefits into quantifiable data are discussed. Ultimately, such quantitative data are a prerequisite for facilitating decision-making regarding bauxite residue re-use / recycling and a stepping stone towards developing a zero-waste alumina production process. © 2018 The Authors. published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
由于世界经济面临关键原材料供应短缺风险增加的问题,人们对确定关键原材料的替代二次来源产生了浓厚兴趣。全球范围内,氧化铝生产产生的铝土矿残渣可达数百万吨规模。到目前为止,人们已尝试为铝土矿残渣寻找其他再利用途径,例如用于水泥/生铁生产。然而,铝土矿残渣也是一种未开发的关键原材料二次来源。根据其地质来源和加工工艺,铝土矿残渣可能含有大量有价值的元素。从这些残渣中回收关键原材料最明显的首要考虑因素是所含材料的经济价值。然而,一般而言,铝土矿残渣的再利用,特别是关键原材料的回收还有其他益处。这些益处超出了货币价值(例如因处置成本节省而降低的投资/运营成本)。例如,通过减少尾矿储存以及减少传统原生采矿的排放,可以实现环境和健康方面的益处。虽然某些工具(如生命周期分析)可用于量化后者,但其他益处(特别是持续的社会和技术发展)则更难量化。本综述评估了铝土矿残渣再利用/回收的策略,并确定了除元素回收之外的相关益处。此外,还讨论了将风险和益处转化为可量化数据的方法。最终,此类定量数据是促进铝土矿残渣再利用/回收决策的先决条件,也是朝着开发零废物氧化铝生产工艺迈出的一步。© 2018作者。由John Wiley & Sons Ltd代表化学工业协会出版。