铝土矿
红土
刚玉
冶金
莫来石
材料科学
生产成本
原材料
萃取冶金
过程(计算)
铝
陶瓷
废物管理
工艺工程
工程类
计算机科学
机械工程
镍
操作系统
有机化学
化学
作者
D. M. S. N. Dissanayake,M.M.M.G.P.G. Mantilaka,R.T. De Silva,K.M.N. De Silva,H.M.T.G.A. Pitawala
标识
DOI:10.1016/j.clema.2021.100016
摘要
Aluminium-related materials play a significant role in the current industrial applications, including metallurgy, ceramics, medicine, dentistry, automobile, and construction. Al is extracted from bauxite ore which will be extinct sooner than expected as the demand for Al is ever-increasing. Thus, a low-grade alternative ore called laterite was used for the production of Al-related advanced materials. The process includes the optimization study of the element extraction from laterites, followed by utilizing the extract to produce sustainable, energy-saving advanced materials. The ultimate outcomes of the process are the synthesis of alumina powder and its advanced materials by a cost-effective and industrially viable method. The products were characterized by several microscopic and chemical tests, which revealed the alumina powder contains a mixture of corundum and θ-Al2O3 and nano-sized alumina had nano-spherical morphology having corundum structure. This process is a highly sustainable and energy-saving process than the conventional production of Al-related materials and the cost for the production of these materials is less. Hence this study is a successful attempt in utilizing laterites as an alternative for bauxite, and the products can be used for many nano-technological applications which will give rise to many new-age industries and startups.
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