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On the Feasibility of Plasma Separation of Spent Nuclear Fuel Components in a Nonuniform Magnetic Field

机译:关于非均匀磁场中花费核燃料组分等离子体分离的可行性

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摘要

A new concept of plasma separation of spent nuclear fuel components in a variable-cross-section chamber with a nonuniform magnetic field is proposed. Numerical simulation performed in axisymmetric geometry in the single-particle approximation have shown that, in a nonuniform magnetic field of <1.6 kG, at voltages of up to 100 V, and for a chamber radius varying from 20 cm to 60 cm over a distance of up to 1 m, spent nuclear fuel components can be spatially separated into three mass groups: actinides with masses of m similar to 240 amu, used for subsequent recovery of the fuel; fission products with amu; and light elements with amu, which primarily include the structural materials and associated gases (nitrogen, oxygen). Separation of the latter two groups is important for practical use, because it potentially reduces the cost of the further treatment of separated radioactive waste.
机译:提出了一种具有非均匀磁场的可变横截面腔室中废核燃料分量的等离子体分离的新概念。 在单粒子近似下在轴对称几何形状中执行的数值模拟表明,在<6千克的不均匀磁场中,在高达100V的电压下,并且对于在远处距离的20cm至60cm的腔室半径。 最多1米,废核燃料组分可以在空间上分为三种质量组:具有类似于240 AMU的M质量的散光,用于随后恢复燃料; 裂变产品与AMU; 和AMU的光元素,主要包括结构材料和相关气体(氮气,氧气)。 后两组的分离对于实际使用是重要的,因为它可能降低了进一步处理分离的放射性废物的成本。

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