A novel method for alumina preparation by electrotransformation AlCl3 solution under NH4Cl-catalyzed and CO2-injected conditions

IF 0.9 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING Journal of Mining and Metallurgy Section B-Metallurgy Pub Date : 2022-01-01 DOI:10.2298/jmmb220305021h
X. Han, Y.M. Liu, L.X. Yang, Y. Lu, R.-T. Wang, T.-A. Zhang
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Abstract

As a refractory industrial solid waste, high-alumina fly ash is discharged into nature in large quantities, causing serious environmental harm. The extraction of valuable components, such as aluminum, from high-alumina fly ash has become a research hotspot at home and abroad. The shortcomings of traditional alumina extraction from high-alumina fly ash include long technological processes, large amounts of waste acid and alkali, and serious equipment corrosion. A novel method for alumina preparation by electrotransformation AlCl3 solution(EAS) under NH4Cl catalysis with injected CO2 has been proposed by Northeastern University. The process has advantages, such as short flow and no waste acid discharge. In this study, the influence of initial NH4Cl concentration in the cathodic chamber on solution pH, phase and morphology of electrotransformation products, phase, D(50) and D(90) of roasting products, and Al recovery rate were examined. Simultaneously, EAS was examined and compared with and without injected CO2 as well as EAS under NH4Cl catalysis with and without injected CO2. The results showed that, when the solution in the cathodic chamber was NH4Cl with CO2 injection, with electrotransformation time extension, pH increased slowly and the morphology of electrotransformation products were all rough and fluffy block structures. Increasing initial NH4Cl concentration effectively improved the product crystallization states, roasting products D(50) and D(90), and Al recovery rate.
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在nh4cl催化和co2注入条件下电转化AlCl3溶液制备氧化铝的新方法
高铝粉煤灰作为一种难处理的工业固体废弃物,大量排放到大自然中,造成了严重的环境危害。从高铝粉煤灰中提取铝等有价成分已成为国内外的研究热点。传统的高铝粉煤灰提氧化铝工艺流程长、废酸废碱量大、设备腐蚀严重等缺点。东北大学提出了一种在NH4Cl催化下电转化AlCl3溶液(EAS)制备氧化铝的新方法。该工艺具有流程短、无废酸排放等优点。本研究考察了阴极室初始NH4Cl浓度对溶液pH、电转化产物的相和形貌、焙烧产物的相、D(50)和D(90)以及铝回收率的影响。同时,对注入CO2和未注入CO2下的EAS以及注入CO2和未注入CO2下NH4Cl催化下的EAS进行了检测和比较。结果表明:当阴极室溶液为NH4Cl并注入CO2时,随着电转化时间的延长,pH升高缓慢,电转化产物形貌均为粗糙蓬松的块状结构;提高初始NH4Cl浓度可有效改善产物结晶状态,改善焙烧产物D(50)和D(90),提高铝回收率。
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来源期刊
CiteScore
2.00
自引率
40.00%
发文量
19
审稿时长
2 months
期刊介绍: University of Belgrade, Technical Faculty in Bor, has been publishing the journal called Journal of Mining and Metallurgy since 1965 and in 1997 it was divided in two independent journals dealing with mining and metallurgy separately. Since 2009 Journal of Mining and Metallurgy, Section B: Metallurgy has been accepted in Science Citation Index Expanded. Journal of Mining and Metallurgy, Section B: Metallurgy presents an international medium for the publication of contributions on original research which reflect the new progresses in theory and practice of metallurgy. The Journal covers the latest research in all aspects of metallurgy including hydrometallurgy, pyrometallurgy, electrometallurgy, transport phenomena, process control, solidification, mechanical working, solid state reactions, materials processing, surface treatment and relationships among processing, structure, and properties of materials.
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