Study on separation of nonferrous metal utilizing magneto-Archimedes method

IF 0.2 Q4 PHYSICS, APPLIED
Yusuke Ito, Y. Akiyama
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引用次数: 0

Abstract

In order to improve resource value, separation of nonferrous metals obtained from crushed materials of home appliances is required. In this study, we aimed to develop a continuous separation system by magneto-Archimedes method using magnetic fluid as a medium and the permanent magnet as a magnetic field source. Firstly, the separation conditions were examined in which only copper is settled and the difference in levitation positions between aluminum and other metals are over 1 cm. Based on the results, levitation experiment of each metal and separation experiment from the mixture of nonferrous metals were confirmed. The separation experiment showed that the continuous separation of copper and aluminum from a mixture of nonferrous metals is possible.
磁阿基米德法分离有色金属的研究
为了提高资源价值,需要对家电破碎物料中的有色金属进行分离。本研究以磁流体为介质,永磁体为磁场源,采用磁-阿基米德法研制了一种连续分离系统。首先,考察了仅沉淀铜、铝与其他金属悬浮位置差异大于1 cm的分离条件。在此基础上,确定了各种金属的悬浮实验和有色金属混合物的分离实验。分离实验表明,从有色金属混合物中连续分离铜和铝是可能的。
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来源期刊
CiteScore
0.40
自引率
33.30%
发文量
0
期刊介绍: Progress in Superconductivity and Cryogenics is the official publication of The Korea Institute of Applied Superconductivity and Cryogenics and the Korean Superconductivity Society. It was launched in 1999, and accepts original research articles and review papers on research on superconductivity and related fields of physics, electronic devices, materials science, large-scale applications for magnets, power and energy, and cryogenics. The Journal is published quarterly in March, June, September, and December each year. Supplemental issues are published occasionally. The official title of the journal is ''Progress in Superconductivity and Cryogenics'' and the abbreviated title is ''Prog. Supercond. Cryog.'' All submitted manuscripts are peer-reviewed by two reviewers. The text must be written in English. All the articles in this journal are KCI and SCOPUS as of 2015. The URL address of the journal is http://psac.kisac.org where full text is available. This work was supported by the Korean Federation of Science and Technology Societies grant funded by the Korea government.
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