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从痕量到纯态:从钛酸废料中进行中试规模的钪回收

From Trace to Pure: Pilot-Scale Scandium Recovery from TiO Acid Waste.

作者信息

Hedwig Sebastian, Yagmurlu Bengi, Peters Edward Michael, Misev Victor, Hengevoss Dirk, Dittrich Carsten, Forsberg Kerstin, Constable Edwin C, Lenz Markus

机构信息

FHNW, Institute for Ecopreneurship, Hofackerstrasse 30, 4132 Muttenz, Switzerland.

Department of Chemistry, University of Basel, Mattenstrasse 24a, 4058 Basel, Switzerland.

出版信息

ACS Sustain Chem Eng. 2023 Apr 6;11(15):5883-5894. doi: 10.1021/acssuschemeng.2c06979. eCollection 2023 Apr 17.

Abstract

Scandium (Sc), declared a critical raw material in the European Union (EU), could face further supply issues as the EU depends almost entirely on imports from China, Russia, and Ukraine. In this study, a tandem nanofiltration-solvent extraction procedure for Sc recovery from titania (TiO) acid waste was piloted and then augmented by antisolvent crystallization. The new process, comprising advanced filtration (hydroxide precipitation, micro-, ultra-, and nanofiltration), solvent extraction, and antisolvent crystallization, was assessed in relation to material and energy inputs and benchmarked on ScF production. From ∼1 m of European acid waste containing traces of Sc (81 mg L), ∼13 g of Sc (43% yield, nine stages) was recovered as (NH)ScF with a purity of approximately 95%, demonstrating the technical feasibility of the approach. The production costs per kilogram of ScF were lower than reported market prices, which underscores a competitive process at scale. Although a few technical bottlenecks (e.g., S/L separation and electricity consumption) need to be overcome, combining advanced filtration with solvent extraction and antisolvent crystallization promises a future supply of this critical raw material from European secondary sources.

摘要

钪(Sc)在欧盟被列为关键原材料,由于欧盟几乎完全依赖从中国、俄罗斯和乌克兰进口,钪可能面临进一步的供应问题。在本研究中,对从二氧化钛(TiO₂)酸性废料中回收钪的串联纳滤-溶剂萃取工艺进行了中试,并通过反溶剂结晶进行了强化。新工艺包括先进过滤(氢氧化物沉淀、微滤、超滤和纳滤)、溶剂萃取和反溶剂结晶,对其物料和能量输入进行了评估,并以ScF₃生产为基准进行了比较。从约1立方米含痕量钪(81毫克/升)的欧洲酸性废料中,回收了约13克钪(产率43%,九个阶段),得到纯度约为95%的(NH₄)₃ScF₆,证明了该方法的技术可行性。每千克ScF₃的生产成本低于报告的市场价格,这突出了该工艺在规模化生产时的竞争力。尽管一些技术瓶颈(如固液分离和电力消耗)需要克服,但将先进过滤与溶剂萃取和反溶剂结晶相结合有望从欧洲二次资源中实现这种关键原材料的未来供应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dd9/10114082/e5a89ec94f36/sc2c06979_0002.jpg

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