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- W2327322421 abstract "In this paper, we developed a new volume reduction method for contaminated soil by magnetic separation. We succeeded in selective separation of paramagnetic 2:1-type clay minerals, which strongly adsorb Cs, from 1:1-type clay minerals. As a result, it was shown that the radiation dose of 1:1-type clay minerals can be reduced. We examined magnetic separation conditions for efficient separation of 2:1-type clay minerals. First, the separation rate of each particle size of 2:1-type clay minerals was calculated by particle trajectory simulation because magnetic separation rate largely depends on the objective size. According to the calculation, 93.8% of 2:1-type of clay minerals could be separated at 7 T. Next, high-gradient magnetic separation experiment was conducted using superconducting magnet. Ninety-seven percent of 2:1-type clay minerals were separated under the condition of 7 T and 3 cm/s of flow rate. The separation experiment of 2:1-type clay minerals from the mixture of 1:1- and 2:1-type clay minerals was performed at 7 T. Ninety-seven percent of 2:1-type clay minerals were selectively separated from the model soil. It was shown that magnetic separation with superconducting magnet would contribute to the volume reduction of contaminated soil." @default.
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- W2327322421 date "2016-06-01" @default.
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- W2327322421 title "Study on Volume Reduction of Cesium Contaminated Soil by Magnetic Separation" @default.
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- W2327322421 doi "https://doi.org/10.1109/tasc.2016.2526030" @default.
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