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Titlebook: Rare Metal Technology 2022; Takanari Ouchi,Gisele Azimi,Hong Peng Conference proceedings 2022 The Minerals, Metals & Materials Society 202

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发表于 2025-3-21 17:11:49 | 显示全部楼层 |阅读模式
书目名称Rare Metal Technology 2022
编辑Takanari Ouchi,Gisele Azimi,Hong Peng
视频video
丛书名称The Minerals, Metals & Materials Series
图书封面Titlebook: Rare Metal Technology 2022;  Takanari Ouchi,Gisele Azimi,Hong Peng Conference proceedings 2022 The Minerals, Metals & Materials Society 202
描述This collection presents papers from a symposium on extraction of rare metals from primary and secondary materials and residues as well as rare extraction processing techniques used in metal production. Authors cover the extraction of less common or minor metals including elements such as antimony, bismuth, barium, beryllium, boron, calcium, chromium, gallium, germanium, hafnium, indium, manganese, molybdenum, platinum group metals, rare earth metals, rhenium, scandium, selenium, sodium, strontium, tantalum, tellurium, and tungsten. Contributions also discuss rare metals of low-tonnage sales compared to high-tonnage metals (iron, copper, nickel, lead, tin, zinc, or light metals such as aluminum, magnesium, or titanium and electronic metalloid silicon). Authors also cover biometallurgy, hydrometallurgy, and electrometallurgy while novel high-temperature processes such as microwave heating, solar-thermal reaction synthesis, and cold crucible synthesis of rare metals are addressed. Also included in this collection is the design of extraction equipment used in these processes from suppliers as well as laboratory and pilot plant studies.
出版日期Conference proceedings 2022
关键词Rare metals; Critical metals; Rare-earth elements; Energy storage materials; Alloy elements; Materials fo
版次1
doihttps://doi.org/10.1007/978-3-030-92662-5
isbn_softcover978-3-030-92664-9
isbn_ebook978-3-030-92662-5Series ISSN 2367-1181 Series E-ISSN 2367-1696
issn_series 2367-1181
copyrightThe Minerals, Metals & Materials Society 2022
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Conference proceedings 2022tion processing techniques used in metal production. Authors cover the extraction of less common or minor metals including elements such as antimony, bismuth, barium, beryllium, boron, calcium, chromium, gallium, germanium, hafnium, indium, manganese, molybdenum, platinum group metals, rare earth me
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Rare-Earth Element Adsorption to Gypsum in Hydrometallurgical Processeshis study, the mechanism of REE co-precipitation with gypsum as well as the effect of two main impurities (Fe and Al), on the REE uptake from the pregnant leach solutions, during the impurity removal step, are discussed.
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Low-Cost Distillation Technology for Rare-Earth Recyclingltiple effect thermal system (G-METS) metal distillation technology on energy use and overall cost. The G-METS system can potentially reduce the energy consumption of the overall process to 64 kWh/kg, which is about 30% less than metal production from ore, and 61–67% less than the process using conventional distillation.
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Separation of Scandium by Phosphinic Acid Extractant from Sulfuric Acid Solutiontanium. Results have demonstrated that the pH does not affect scandium separation, while temperature, organic extractant concentration, and TBP affect the separation. Experiments were carried out for 15 min under magnetic stirring, and samples were analyzed in EDXRF and ICP-OES.
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Solvent Extraction Separation of Tungsten and Vanadium from Simulated Leaching Solution of Spent SCR it was found that vanadium can be easily extracted over tungsten by methyl trioctyl ammonium chloride (Aliquat 336). More than 93.5% of vanadium was extracted, while most of the tungsten remained in raffinates under the optimal conditions (initial pH 8.4, 10 vol.% N263, contact time 30 min, temperature 25 ℃ and phase ratio (O/A) 1/6).
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