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    • 5. 发明授权
    • Method and apparatus for separating isotopes
    • 分离同位素的方法和装置
    • US5805972A
    • 1998-09-08
    • US808642
    • 1997-02-28
    • Goro MiyamotoYoshio MurakamiSeiji HirokiKenji Katsuki
    • Goro MiyamotoYoshio MurakamiSeiji HirokiKenji Katsuki
    • B01D59/34B01D59/48H01J49/26B01J19/12
    • B01D59/34B01D59/48
    • The improved isotope separator comprises a vacuum vessel, a plasma generator located substantially in the center of the vacuum vessel, an electrode bounded by a hyperboloid of one sheet and a pair of electrodes bounded by a hyperboloid of two sheets, said electrodes being located within the vacuum vessel in such a way as to surround the plasma generator, a power source for supplying said electrodes with a fixed voltage and a pulsating voltage, and magnetic field generating means located outside the vacuum vessel. The apparatus is implemented by a method for isotope separation that achieves high separation factor per stage (process), that enables the process throughput to be increased with ease and which yet is applicable to the isotopic separation of many elements.
    • 改进的同位素分离器包括真空容器,基本上位于真空容器中心的等离子体发生器,由一片双曲面界定的电极和由两片双曲面界定的一对电极,所述电极位于 真空容器,以围绕等离子体发生器的方式,用于向固定电压和脉动电压供应所述电极的电源,以及位于真空容器外部的磁场产生装置。 该装置通过一种同步分离方法来实现,该方法在每个阶段达到高的分离因子(工艺),这使得能够容易地提高工艺流程并且还适用于许多元素的同位素分离。
    • 6. 发明授权
    • Method and apparatus for separating isotopes
    • 分离同位素的方法和装置
    • US5653854A
    • 1997-08-05
    • US607467
    • 1996-02-27
    • Goro MiyamotoYoshio MurakamiSeiji HirokiKenji Katsuki
    • Goro MiyamotoYoshio MurakamiSeiji HirokiKenji Katsuki
    • B01D59/34B01D59/48H01J49/26C25B5/00
    • B01D59/34B01D59/48
    • The improved isotope separator comprises a vacuum vessel, a plasma generator located substantially in the center of the vacuum vessel, an electrode bounded by a hyperboloid of one sheet and a pair of electrodes bounded by a hyperboloid of two sheets, said electrodes being located within the vacuum vessel in such a way as to surround the plasma generator, a power source for supplying said electrodes with a fixed voltage and a pulsating voltage, and magnetic field generating means located outside the vacuum vessel. The apparatus is implemented by a method for isotope separation that achieves high separation factor per stage (process), that enables the process throughput to be increased with ease and which yet is applicable to the isotopic separation of many elements.
    • 改进的同位素分离器包括真空容器,基本上位于真空容器中心的等离子体发生器,由一片双曲面界定的电极和由两片双曲面界定的一对电极,所述电极位于 真空容器,以围绕等离子体发生器的方式,用于向固定电压和脉动电压供应所述电极的电源,以及位于真空容器外部的磁场产生装置。 该装置通过一种同步分离方法来实现,该方法在每个阶段达到高的分离因子(工艺),这使得能够容易地提高工艺流程并且还适用于许多元素的同位素分离。