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    • 2. 发明申请
    • INSOLUBLE CESIUM GLASS
    • 不溶性玻璃
    • WO2015183351A1
    • 2015-12-03
    • PCT/US2015/015458
    • 2015-02-11
    • ILLINOIS TOOL WORKS INC.
    • VOSE, Mark W.
    • G21G4/00
    • G21G4/04G21G4/00G21Y2004/10
    • The present disclosure relates to an insoluble cesium mixed multimetal oxide, ceramic, glass-ceramic or glass which is intended to be a replacement for cesium chloride or similar materials used as radiation sources. Additionally, this insoluble compound could replace other insoluble lower specific activity cesium compounds used in industrial, underwater, and underground/downhole application because it would allow the use of older lower specific activity cesium stock solutions. The disclosure further provides a method for the cesium to be recovered from cesium chloride sources.
    • 本公开内容涉及一种不溶性铯混合多金属氧化物,陶瓷,玻璃陶瓷或玻璃,其旨在替代氯化铯或用作辐射源的类似材料。 此外,这种不溶性化合物可以替代工业,水下和地下/井下应用中使用的其他不溶性较低比活性铯化合物,因为它将允许使用较老的较低比活性铯储备溶液。 本公开进一步提供了一种从氯化铯源回收铯的方法。
    • 6. 发明申请
    • ELECTROCHEMICAL 18F EXTRACTION, CONCENTRATION AND REFORMULATION METHOD FOR RADIOLABELING
    • 电化学18F提取,浓缩和改性方法
    • WO2008028260A3
    • 2008-07-10
    • PCT/BE2007000102
    • 2007-09-05
    • TRASIS S AMORELLE JEAN-LUCVOCCIA SAMUELPHILIPPART GAUTHIER
    • MORELLE JEAN-LUCVOCCIA SAMUELPHILIPPART GAUTHIER
    • G21G4/00
    • G21G4/08G21G2001/0015G21H5/02
    • The present invention relates to a method to extract out of water, concentrate and reformulate [18F] fluorides, said method comprising the successive steps of : - passing a dilute aqueous [18F] fluoride solution entering by an inlet (1) in a cavity (6) embodying an electrochemical cell with at least two electrodes (3, 4, 5), flowing in the cavity (6) and coming out of the cavity (6) by an outlet (2), an external voltage being applied to said electrodes, one electrode (4) being used as an extraction electrode, another one (3) being used for polarizing the solution, and configured so that at least the extraction electrode (4), either used as a cathode or as an anode, is in contact with and polarizes a large specific surface area conducting material (7), contained in the cavity (6); - releasing the extracted ions from the surface of the large specific surface area conducting material (7) by turning off the applied external voltage, wherein, during its passage in the cavity (6), the dilute aqueous [18F] fluoride solution entirely crosses and internally soaks the large specific surface area conducting material (7).
    • 本发明涉及一种提取水,浓缩和重整[18 F]氟化物的方法,所述方法包括以下连续步骤:将通过入口(1)进入的稀释的[18 F]氟化钠水溶液通入空腔 6)体现电化学电池具有至少两个在空腔(6)中流动并通过出口(2)从空腔(6)流出的电极(3,4,5),外部电压施加到所述电极 使用一个电极(4)作为引出电极,另一个电极(4)用于使溶液偏振,并且构造成使得至少用作阴极或阳极的引出电极(4)处于 与容纳在空腔(6)中的大比表面积导电材料(7)接触并极化; - 通过关闭施加的外部电压,从大比表面积导电材料(7)的表面释放提取的离子,其中在空腔(6)通过期间,稀的氟化水溶液完全穿过, 内部浸泡大比表面积导电材料(7)。
    • 7. 发明申请
    • SUPERCRITICAL FLUID ENRICHMENT OF ISOTOPES
    • 超临界流体富集同位素
    • WO2008054548A2
    • 2008-05-08
    • PCT/US2007012897
    • 2007-05-31
    • SWCE
    • SCHROEDER TERRENCE K
    • G21G4/00
    • B01D59/20
    • A system and method for supercritical fluid enrichment of radioactive isotope/s are disclosed. The method involves pressurizing an outer chamber and an inner centrifugal chamber of a stage to supercritical pressure; supplying material including target isotope/s at supercritical pressure to the inner chamber; spinning the inner chamber to centrifuge the material including target isotope/s; providing a differential pressure between the inner chamber and the outer chamber; wherein windows in the inner chamber enable passage of the target isotope from the inner chamber to the outer chamber in response to the differential pressure.
    • 公开了用于超临界流体富集放射性同位素的系统和方法。 该方法涉及将台的外室和内离心室加压至超临界压力; 将包含超临界压力下的目标同位素的材料供应至内室; 旋转内室以离心含有目标同位素的材料; 在内室和外室之间提供差压; 其中所述内室中的窗口响应于所述压差能够使所述目标同位素从所述内室通到所述外室。