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    • 6. 发明授权
    • Isotopes separation and purification in an electrolytic medium
    • 电解质中同位素分离和纯化
    • US09056272B2
    • 2015-06-16
    • US11307947
    • 2006-02-28
    • Tarek A. Z. Farag
    • Tarek A. Z. Farag
    • B01D59/38B01D59/42B01D53/22B01D53/24B01D53/32B01D61/44
    • B01D59/42B01D53/226B01D53/229B01D53/24B01D53/326B01D61/44B01D2259/814B01D2311/2603B01D2311/2676
    • A system and method for continuously separating different isotopes of a particular element, such as Uranium, Zirconium, or Hydrogen, in an electrolytic medium. The ions of the isotopes to be separated are moved in the electrolytic medium using electric field. As the lighter ions will move faster than the heavier ions, the separation will happen and the lighter ions will be ahead of the heavier ions by a separation distance. To improve the separation, other forces (either proportional to the mass or not) are generated on the ions in directions that add additional separation factors. These forces could be centrifugal, electromagnetic, resistive dragging, mechanical (flow), etc. The invented separation process and device is simple and less expensive than other comparable devices, providing outstanding separation at low cost, and could be built using the already available materials and technologies that exist in any country in the world.
    • 用于在电解介质中连续分离特定元素如铀,锆或氢的不同同位素的系统和方法。 待分离的同位素的离子使用电场在电解介质中移动。 由于较轻的离子将比较重的离子移动得更快,所以分离将发生,较轻的离子将在较重的离子之前通过间隔距离。 为了改善分离,在离子上产生另外的力(与质量成比例的)与添加附加分离因子的方向相反。 这些力可以是离心式,电磁式,电阻式拖动,机械(流动)等。本发明的分离方法和装置比其他可比较的装置简单且便宜,以低成本提供优异的分离,并且可以使用已经提供的材料 和世界任何国家都存在的技术。