Overview of Technologies Used to Extract Scandium from Secondary Raw Materials

O.S. Baigenzhenov, B. M. Orynbayev, M.D. Turan
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Abstract

The exceptional mechanical and chemical properties exhibited by scandium, characterized by its low density, high strength, and remarkable resistance to corrosion, have positioned it as a sought-after metal in diverse industrial applications. Consequently, a surge in market demand for scandium has been observed, highlighting its unique attributes compared to other metals. The Republic of Kazakhstan has identified potential sources of scandium in the waste generated by the titanium, uranium, and aluminum industries. By implementing efficient processing techniques for these production wastes, the country can effectively address the deficit of scandium while also mitigating man-made emissions, thus significantly improving the environmental landscape. This article aims to explore and evaluate contemporary methodologies that have been employed for the recovery of scandium from the aforementioned secondary sources. By examining and analyzing these techniques, we can gain insights into the most effective and sustainable approaches to harnessing scandium from waste materials in Kazakhstan. This research not only contributes to meeting market demands but also ensures the responsible utilization of scandium, benefiting not just the country's economy but also its environmental sustainability.
从二次原材料中提取钪的技术概览
钪具有低密度、高强度和出色的耐腐蚀性等优异的机械和化学特性,因此在各种工业应用中成为一种抢手金属。因此,钪的市场需求激增,凸显了它与其他金属相比的独特属性。哈萨克斯坦共和国已经从钛、铀和铝工业产生的废料中找到了钪的潜在来源。通过对这些生产废料实施高效的处理技术,该国可以有效地解决钪短缺问题,同时还能减少人为排放,从而显著改善环境面貌。本文旨在探讨和评估从上述二次资源中回收钪的现代方法。通过研究和分析这些技术,我们可以深入了解在哈萨克斯坦从废料中利用钪的最有效和最可持续的方法。这项研究不仅有助于满足市场需求,还能确保负责任地利用钪,不仅有利于国家经济,还有利于环境的可持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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