Study on Volume Reduction of Cesium Contaminated Soil by High Gradient Magnetic Separation: Design of Magnetic Filters

被引:8
|
作者
Nishimoto, Yuki [1 ]
Akiyama, Yoko [1 ]
Tsujimoto, Hiroshi [2 ]
Kawano, Maiko [2 ]
Miura, Kazuhiko [2 ]
机构
[1] Osaka Univ, Suita, Osaka 5650871, Japan
[2] Kajima Corp, Minato Ku, Minato City, Tokyo 1078388, Japan
关键词
Magnetic separation; Soil; Wires; Superconducting filters; Magnetic susceptibility; Superconducting magnets; Minerals; radioactive pollution; soil properties; superconducting magnets; volume relaxation; RADIOCESIUM; FUKUSHIMA;
D O I
10.1109/TASC.2021.3051110
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The superconducting magnetic separation was examined to reduce the volume of cesium contaminated soil by the Fukushima Daiichi nuclear power plant accident. By using superconducting high gradient magnetic separation, silt and clay with high radioactive concentration due to the large particle surface area per unitmass can be further separated into high-dose 2:1 type and low-dose 1:1 type clay minerals selectively. Here, we examined filter conditions to improve themagnetic separation performance in farmland soil that is rich in organic matter. The results of magnetic separation of uncontaminated soil suggested that the separation selectivity of 1:1 and 2:1 type clay minerals was larger with the filters with smaller wire diameter. On the other hand, it was found that it was difficult to magnetically separate 0-20 mu m particles even with the filters with small wire diameter and high selectivity. To solve this problem, magnetic separation was performed under the same conditions on actual contaminated soil that was highly classified into 0-20 mu m and 20-75 mu m particles. As the result, it was found that the radioactivity can be further reduced by removed high-dose 0-20 mu mparticles and targeting the 20-75 mu mparticles.
引用
收藏
页数:5
相关论文
共 50 条
  • [31] HIGH-GRADIENT MAGNETIC SEPARATION (HGMS) IN SOIL CLAY MINERAL STUDIES
    RUSSELL, JD
    BIRNIE, A
    FRASER, AR
    CLAY MINERALS, 1984, 19 (05) : 771 - 778
  • [32] Recovery of metallic copper by integrated chemical reduction and high gradient magnetic separation
    Wu, Wan-I
    Panchangam, Sri Chandana
    Wu, Chung-Hsin
    Hong, Andy P. K.
    Lin, Cheng-Fang
    ENVIRONMENTAL TECHNOLOGY, 2011, 32 (08) : 817 - 824
  • [33] THEORY AND DESIGN OF AXIALLY ORDERED FILTERS FOR HIGH-INTENSITY MAGNETIC SEPARATION
    BIRSS, RR
    GERBER, R
    PARKER, MR
    IEEE TRANSACTIONS ON MAGNETICS, 1976, 12 (06) : 892 - 894
  • [34] Decontamination of Cesium From Contaminated Water Using a Selective Adsorbent and Magnetic Separation
    Kwon, Hee-Won
    Kim, JeeEun
    Ha, Dong-Woo
    Kim, Young-Hun
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2016, 26 (04)
  • [35] Study on Decontamination of Contaminated Soils by Magnetic Separation
    Sekiya, Kazuki
    Kuwahara, Hiroki
    Yoshida, Yuki
    Igarashi, Susumu
    Nomura, Naoki
    Mishima, Fumihito
    Iyama, Yoko
    Nishijima, Shigehiro
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2014, 24 (03)
  • [36] Microfluidic high gradient magnetic cell separation
    Inglis, DW
    Riehn, R
    Sturm, JC
    Austin, RH
    JOURNAL OF APPLIED PHYSICS, 2006, 99 (08)
  • [37] SEEDING PRINCIPLES OF HIGH GRADIENT MAGNETIC SEPARATION
    DELATOUR, C
    JOURNAL AMERICAN WATER WORKS ASSOCIATION, 1976, 68 (08): : 443 - 446
  • [38] HIGH-GRADIENT MAGNETIC SEPARATION OF CELLS
    DUNLOP, EH
    MATTIONE, M
    DAUER, R
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1985, 189 (APR-): : 75 - INDE
  • [39] HIGH-GRADIENT MAGNETIC SEPARATION OF YEAST
    DAUER, RR
    DUNLOP, EH
    BIOTECHNOLOGY AND BIOENGINEERING, 1991, 37 (11) : 1021 - 1028
  • [40] CELL SORTING BY HIGH GRADIENT MAGNETIC SEPARATION
    OWEN, CS
    FEDERATION PROCEEDINGS, 1977, 36 (03) : 854 - 854