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    • 5. 发明授权
    • Electrolytic cell and method of reducing gamma ray emissions
    • 电解槽和减少伽马射线辐射的方法
    • US08114257B2
    • 2012-02-14
    • US12148889
    • 2008-04-23
    • John A. Thompson
    • John A. Thompson
    • C25B9/00G01T1/00
    • G21F5/015
    • An electrolytic cell and a method for accelerating the reduction of gamma ray emissions from a radioactive substance. The cell includes a non-conductive housing and a conductive end member sealingly positioned in and extending from each open end of the housing. Gamma ray emitting material such as powder, granules or gases in an admixture with palladium black powder or particles are closely packed into the chamber. A longitudinal gas passage extends through each end member in gas communication with the chamber. Each gas passage is sealably closeable, one gas passage being connectable to a source of pressurized hydrogen or deuterium gas deliverable under pressure into the chamber to charge the catalytic particles. A distal end of each end member is connected to an electric power source wherein, when electric current flows through the chamber, the gamma ray emission count decays at an abnormally high rate.
    • 电解槽和加速放射性物质的γ射线的减少的方法。 电池包括非导电壳体和密封地定位在壳体的每个开口端中并从壳体的每个开口端延伸的导电端部构件。 与钯黑粉末或颗粒混合的γ射线发射材料如粉末,颗粒或气体紧密地包装在室中。 纵向气体通道延伸穿过与腔室气体连通的每个端部构件。 每个气体通道可密封地关闭,一个气体通道可连接到加压氢气或氘气的压力下进入腔室以对催化剂颗粒进行充电。 每个端部构件的远端连接到电源,其中当电流流过腔室时,伽马射线发射计数以异常高的速率衰减。
    • 6. 发明申请
    • Electrolytic cell and method of reducing gamma ray emissions
    • 电解槽和减少伽马射线辐射的方法
    • US20090266708A1
    • 2009-10-29
    • US12148889
    • 2008-04-23
    • John A. Thompson
    • John A. Thompson
    • C25B9/00
    • G21F5/015
    • An electrolytic cell and a method for accelerating the reduction of gamma ray emissions from a radioactive substance. The cell includes a non-conductive housing and a conductive end member sealingly positioned in and extending from each open end of the housing. Gamma ray emitting material such as powder, granules or gases in an admixture with palladium black powder or particles are closely packed into the chamber. A longitudinal gas passage extends through each end member in gas communication with the chamber. Each gas passage is sealably closeable, one gas passage being connectable to a source of pressurized hydrogen or deuterium gas deliverable under pressure into the chamber to charge the catalytic particles. A distal end of each end member is connected to an electric power source wherein, when electric current flows through the chamber, the gamma ray emission count decays at an abnormally high rate.
    • 电解槽和加速放射性物质的γ射线的减少的方法。 电池包括非导电壳体和密封地定位在壳体的每个开口端中并从壳体的每个开口端延伸的导电端部构件。 与钯黑粉末或颗粒混合的γ射线发射材料如粉末,颗粒或气体紧密地包装在室中。 纵向气体通道延伸穿过与腔室气体连通的每个端部构件。 每个气体通道可密封地关闭,一个气体通道可连接到加压氢气或氘气的压力下进入腔室以对催化剂颗粒进行充电。 每个端部构件的远端连接到电源,其中当电流流过腔室时,伽马射线发射计数以异常高的速率衰减。