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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Sustainability evaluation of essential critical raw materials: cobalt, niobium, tungsten and rare earth elements
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Sustainability evaluation of essential critical raw materials: cobalt, niobium, tungsten and rare earth elements

机译:基本关键原料的可持续性评估:钴,铌,钨和稀土元素

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The criticality of raw materials has become an important issue in recent years. As the supply of certain raw materials is essential for technologically-advanced economies, the European Commission and other international counterparts have started several initiatives to secure reliable and unhindered access to raw materials. Such efforts include the EU Raw Materials Initiative, European Innovation Partnership on Raw Materials, US Critical Materials Institute, and others. In this paper, the authors present a multi-faceted and multi-national review of the essentials for the critical raw materials (CRMs) Co, Nb, W, and rare earth elements (REEs). The selected CRMs are of specific interest as they are considered relevant for emerging technologies and will thus continue to be of increasing major economic importance. This paper presents a 'sustainability evaluation' for each element, including essential data about markets, applications and recycling, and possibilities for substitution have been summarized and analysed. All the presented elements are vital for the advanced materials and processes upon which modern societies rely. These elements exhibit superior importance in 'green' applications and products subject to severe conditions. The annual production quantities are quite low compared to common industrial metals. Of the considered CRMs, only Co and REE gross production exceed 100 000 t. At the same time, the prices are quite high, with W and Nb being in the range of 60 USD kg(-1) and some rare earth compounds costing almost 4000 USD kg(-1). Despite valiant effort, in practice some of the considered elements are de facto irreplaceable for many specialized applications, at today's technological level. Often, substitution causes a significant loss of quality and performance. Furthermore, possible candidates for substitution may be critical themselves or available in considerably low quantities. It can be concluded that one preferred approach for the investigated element
机译:近年来原材料的关键性已成为一个重要问题。由于某些原材料供应对于技术先进的经济,欧洲委员会和其他国际同行是必须有几项举措,以确保可靠和无阻碍的原材料获得。这种努力包括欧盟原料倡议,欧洲创新伙伴关系对原材料,美国关键材料研究所等。在本文中,作者对关键原料(CRMS)CO,NB,W和稀土元素(REES)的必需品提供了多方面和多国的审查。所选CRM具有特定兴趣,因为它们被认为对新兴技术有关,因此将继续越来越大的经济重要性。本文为每个元素提出了“可持续性评估”,包括有关市场,申请和回收的基本数据,汇总和分析了替代的可能性。所有所提出的元素对现代社会依赖的先进材料和流程至关重要。这些元素在“绿色”应用和经过严重条件的产品中表现出优异的重要性。与普通工业金属相比,年生产量相当低。考虑到CRMS,只有CO和REE总产量超过100 000吨。与此同时,价格相当高,W和NB在60美元的范围内(-1),一些稀土化合物耗时跌幅近4000美元(-1)。尽管有勇敢的努力,但在实践中,一些被认为的元素对于当今的技术水平来说,一些被认为是对许多专业应用的事实不可替代。通常,替代导致质量和性能的显着损失。此外,替代的可能候选者可以是关键的本身或以相当低的量可用。可以得出结论,调查元素的一个优选方法

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