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超越矿山和废料回收的供应安全:冶金废渣的增值潜力

Supply security beyond mines and scrap recycling: valorization potential of metallurgical residues.

作者信息

Steinlechner Stefan, Witt Kerrin

机构信息

Department of Metallurgy, Chair of Nonferrous Metallurgy, Christian Doppler Laboratory for Selective Recovery of Minor Metals Using Innovative Process Concepts, Montanuniversität Leoben, Franz Josef-St. 18, Leoben 8700, Austria.

出版信息

Philos Trans A Math Phys Eng Sci. 2024 Dec 2;382(2284):20230237. doi: 10.1098/rsta.2023.0237. Epub 2024 Nov 4.

Abstract

In the context of the European Critical Raw Materials Act, this work attempts to demonstrate the potential of residual material flows from non-ferrous metallurgy and their possible contribution to the supply security of metals by locally available new secondary resources, assuming technically and economically viable processing. Based on the aluminium, zinc, copper and lead industries, the resulting waste streams are discussed and, in particular, the complex process consisting of physical, chemical and metallurgical steps is described. Their diversity, be it slags, dusts or even sludges, has a wide variety of morphologies and compositions due to the process of generation. In the past, many concepts for reprocessing were investigated, but the goal was usually only the recovery of one target element or to avoid landfilling by using it, for example, as a building material, whereby the metals contained are completely lost. If the target is the extraction of valuables, the required interdisciplinary process development must be based on an in-depth characterization to understand the behaviour of metals and trace elements in possible extraction steps and also to develop suitable strategies for influencing the behaviour of target elements with the aim of extraction. This starts with an in-depth comprehension of the formation process, which is the subject of this article and has a direct influence on the composition and morphology of the materials, thus forming the basis for understanding the behaviour in potential recycling processes. Furthermore, typical compositions of the residual material streams, sources and, if available, quantities are shown and, in summary, an attempt is made to evaluate the materials in a SWOT analysis and to address the challenges in developing extraction steps for processing. While mine tailings are mostly found outside of Europe, the potential of the residual materials from metallurgy is local due to the processing of the concentrates in Europe. This leads to several potential advantages in a possible reprocessing, such as no or shorter transport routes, which is linked to lower quantity of emissions, defined volume and known composition, no geopolitical risk, conservation of primary resources, and increasing Europe's sustainability through a more comprehensive use of the raw materials.This article is part of the discussion meeting issue 'Sustainable metals: science and systems'.

摘要

在欧洲关键原材料法案的背景下,本研究旨在展示有色金属冶金产生的剩余物料流的潜力,以及在技术和经济上可行的加工条件下,这些物料流通过本地可得的新型二次资源对金属供应安全可能做出的贡献。基于铝、锌、铜和铅行业,讨论了由此产生的废物流,尤其描述了由物理、化学和冶金步骤组成的复杂过程。由于产生过程的原因,它们的多样性,无论是炉渣、粉尘甚至污泥,都具有各种各样的形态和成分。过去,人们研究了许多再加工概念,但目标通常只是回收一种目标元素,或者通过将其用作建筑材料等方式避免填埋,而其中所含的金属则完全损失。如果目标是提取有价成分,那么所需的跨学科工艺开发必须基于深入的特性描述,以了解金属和微量元素在可能的提取步骤中的行为,并制定合适的策略来影响目标元素的行为以实现提取。这始于对形成过程的深入理解,这是本文的主题,它直接影响材料的成分和形态,从而构成理解潜在回收过程中行为的基础。此外,还展示了剩余物料流的典型成分、来源以及(如有)数量,并在总结中尝试通过SWOT分析对这些材料进行评估,并探讨开发加工提取步骤时面临的挑战。虽然矿山尾矿大多在欧洲以外地区,但由于在欧洲对精矿进行加工,冶金剩余物料的潜力是本地的。这在可能的再加工中带来了几个潜在优势,例如没有或较短的运输路线,这与较低的排放量、确定的体积和已知的成分相关,没有地缘政治风险,保护一次资源,以及通过更全面地利用原材料提高欧洲的可持续性。本文是“可持续金属:科学与系统”研讨会论文集的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5572/11541552/f5b58e02951c/rsta.2023.0237.f001.jpg

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