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副产品金属在技术上至关重要,但供应存在问题。

By-product metals are technologically essential but have problematic supply.

作者信息

Nassar N T, Graedel T E, Harper E M

机构信息

Center for Industrial Ecology, Yale University, New Haven, CT, USA.

出版信息

Sci Adv. 2015 Apr 3;1(3):e1400180. doi: 10.1126/sciadv.1400180. eCollection 2015 Apr.

Abstract

The growth in technological innovation that has occurred over the past decades has, in part, been possible because an increasing number of metals of the periodic table are used to perform specialized functions. However, there have been increasing concerns regarding the reliability of supply of some of these metals. A main contributor to these concerns is the fact that many of these metals are recovered only as by-products from a limited number of geopolitically concentrated ore deposits, rendering their supplies unable to respond to rapid changes in demand. Companionality is the degree to which a metal is obtained largely or entirely as a by-product of one or more host metals from geologic ores. The dependence of companion metal availability on the production of the host metals introduces a new facet of supply risk to modern technology. We evaluated companionality for 62 different metals and metalloids, and show that 61% (38 of 62) have companionality greater than 50%. Eighteen of the 38-including such technologically essential elements as germanium, terbium, and dysprosium-are further characterized as having geopolitically concentrated production and extremely low rates of end-of-life recycling. It is this subset of companion metals-vital in current technologies such as electronics, solar energy, medical imaging, energy-efficient lighting, and other state-of-the-art products-that may be at the greatest risk of supply constraints in the coming decades.

摘要

过去几十年间发生的技术创新增长,部分原因在于元素周期表中越来越多的金属被用于执行特定功能。然而,人们对其中一些金属的供应可靠性越来越担忧。这些担忧的一个主要原因是,许多此类金属仅作为副产品从数量有限且地缘政治集中的矿床中回收,这使得它们的供应无法应对需求的快速变化。伴生性是指一种金属在很大程度上或完全作为地质矿石中一种或多种主金属的副产品而获得的程度。伴生金属供应对主金属生产的依赖给现代技术带来了供应风险的新层面。我们评估了62种不同金属和类金属的伴生性,结果表明61%(62种中的38种)的伴生性大于50%。这38种金属中的18种——包括锗、铽和镝等技术上不可或缺的元素——进一步被认定为生产在地缘政治上集中且报废回收率极低。正是这部分伴生金属——在电子、太阳能、医学成像、节能照明及其他先进产品等当前技术中至关重要——在未来几十年可能面临最大的供应受限风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/684f/4640630/181290989c54/1400180-F5.jpg

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