含铝固废和低品位铝土矿制备Al-Si和Al-Si-Fe合金及其应用  被引量:1

Preparation and Application of Al-Si and Al-Si-Fe Alloys from Al-Si Minerals

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作  者:黄钰尧 王耀武 桓书星 狄跃忠 彭建平 HUANG Yuyao;WANG Yaowu;HUAN Shuxing;DI Yuezhong;PENGJianping(School of Metallurgy,Northeastern University,Shenyang 110189,Liaoning,China)

机构地区:[1]东北大学冶金学院,辽宁沈阳110189

出  处:《矿产保护与利用》2021年第3期25-33,共9页Conservation and Utilization of Mineral Resources

基  金:国家重点研发计划项目(2018YFC1901905)。

摘  要:我国每年产生的大量工业含铝固废与逐渐枯竭的优质铝土矿资源,给我国的铝工业发展带来了新的挑战。为减轻工业含铝固废对自然环境的污染与缓解铝矿石大量依赖进口的现状,以含铝固废与低品位铝矿回收利用为目的的碳电热还原法制备Al-Si和Al-Si-Fe合金的技术受到了广泛的关注。碳电热还原法制备Al-Si和Al-Si-Fe合金的应用技术也是当前研究热点。综述了国内外以低品位铝矿资源和含铝固废为原料碳电热还原制备Al-Si和Al-Si-Fe合金的研究及工业现状,并对碳电热还原法制备的Al-Si和Al-Si-Fe合金的应用途径进行了详细的分析。根据当前碳电热还原制备Al-Si和Al-Si-Fe合金的最新研究进展,对碳电热还原制备Al-Si和Al-Si-Fe合金的前景进行了展望。A large number of industrial solid waste containing aluminum and gradually depleted high-quality bauxite resources have brought new challenges to the development of the Chinese aluminum industries.In order to reduce the pollution of industrial solid waste containing aluminum on the natural environment and alleviate the current situation that aluminum ores are heavily dependent on imports,the preparation of Al-Si and Al-Si-Fe alloys by carbothermal reduction method of recycling solid waste containing aluminum and low-grade bauxite has attracted wide attention.The application of carbothermal reduction method to prepare Al-Si and Al-Si-Fe alloys is also a hot research topic.This paper reviews the research and industrial status of Al-Si and Al-Si-Fe alloys prepared by carbothermal reduction using low-grade bauxite resources and aluminum-containing solid waste as raw materials at home and abroad,and analyzes in detail the application ways of Al-Si and Al-Si-Fe alloys prepared by carbothermal reduction.According to the latest research progress in preparation of Al-Si and Al-Si-Fe alloys by carbothermal reduction,the prospect of preparation of Al-Si and Al-Si-Fe alloys by carbothermal reduction is prospected.

关 键 词:含铝固废 低品位铝土矿 铝硅合金 铝硅铁合金 

分 类 号:X758[环境科学与工程—环境工程]

 

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