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公开(公告)号:US20060083789A1
公开(公告)日:2006-04-20
申请号:US10541704
申请日:2004-01-09
IPC分类号: A61K33/00
CPC分类号: A61K49/1815 , C01B23/0036 , C01B2210/0037 , C01B2210/0043
摘要: The present invention provides producing method and producing apparatus in which polarized xenon gas of high concentration is obtained without being frozen, and polarized xenon gas can be produced continuously. A glass cell having solid rubidium and solid xenon filled in vacuum is heated to be gas xenon and gas-liquid mixed rubidium, to which a magnetic field is applied to irradiate a laser beam thereby obtaining polarized xenon gas of high concentration.
摘要翻译: 本发明提供了在不冷冻的情况下获得高浓度的偏振氙气的制造方法和制造装置,并且能够连续生产偏振氙气。 将具有固体铷和填充真空的固体氙的玻璃电池加热成为气体氙气和气液混合铷,施加磁场以照射激光束,从而获得高浓度的偏振氙气。
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公开(公告)号:US08217293B2
公开(公告)日:2012-07-10
申请号:US10541704
申请日:2004-01-09
CPC分类号: A61K49/1815 , C01B23/0036 , C01B2210/0037 , C01B2210/0043
摘要: The present invention provides producing method and producing apparatus in which polarized xenon gas of high concentration is obtained without being frozen, and polarized xenon gas can be produced continuously. A glass cell having solid rubidium and solid xenon filled in vacuum is heated to be gas xenon and gas-liquid mixed rubidium, to which a magnetic field is applied to irradiate a laser beam thereby obtaining polarized xenon gas of high concentration.
摘要翻译: 本发明提供了在不冷冻的情况下获得高浓度的偏振氙气的制造方法和制造装置,并且能够连续生产偏振氙气。 将具有固体铷和填充真空的固体氙的玻璃电池加热成为气体氙气和气液混合铷,施加磁场以照射激光束,从而获得高浓度的偏振氙气。
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公开(公告)号:US20080107580A1
公开(公告)日:2008-05-08
申请号:US11631985
申请日:2005-07-19
CPC分类号: C01B21/0411 , B01D53/02 , B01D2253/10 , B01D2253/104 , B01D2253/106 , B01D2253/108 , B01D2257/60 , B01D2258/0216 , C01B3/56 , C01B6/34 , C01B7/0718 , C01B7/0743 , C01B7/093 , C01B7/096 , C01B7/197 , C01B7/20 , C01B13/00 , C01B13/0244 , C01B21/0427 , C01B23/0057 , C01B23/0068 , C01B2203/042 , C01B2203/0465 , C01B2210/0031 , C01B2210/0034 , C01B2210/0043
摘要: The invention is a method and apparatus for removing metal compounds from ultra-high purity gases using a purifier material comprising a high surface area inorganic oxide, so that the metals do not deposit on a sensitive device and cause device failure.
摘要翻译: 本发明是一种使用包含高表面积无机氧化物的净化剂材料从超高纯度气体中除去金属化合物的方法和装置,使得金属不会沉积在敏感装置上并导致装置故障。
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公开(公告)号:US4996030A
公开(公告)日:1991-02-26
申请号:US200886
申请日:1988-06-01
CPC分类号: C01B23/00 , B01D53/46 , B01D53/8671 , C01B21/0427 , C01B3/56 , C01B2203/042 , C01B2203/0465 , C01B2210/0043
摘要: A method for cleaning an exhaust gas comprising a base gas and at least one toxic component selected from the group consisting of arsine, phosphine, diborane and hydrogen selenide is disclosed. The method comprises contacting the exhaust gas with a molded cleaning agent having a composition consisting essentially of (1) cupric oxide, (2) manganese dioxide, and (3) at least one metal oxide selected from the group consisting of silicon oxide, aluminum oxide and zinc oxide and having a density of from 0.6 to 1.5 g/ml, said composition having a metal atomic ratio M/(M+Cu+Mn) in the range of from 0.02 to 0.70 and a metal atomic ratio Cu/(Cu+Mn) in the range of from 0.1 to 0.9; wherein Cu represents a number of gram atom of copper; Mn represents a number of gram atom of manganese; and M represents a total number of gram atom of silicon, aluminum and/or zinc, to remove the toxic component from the exhaust gas. The method is effective even at low temperatures below 10.degree. C.
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公开(公告)号:US4564509A
公开(公告)日:1986-01-14
申请号:US509871
申请日:1983-06-30
申请人: James R. Shealy , Lester F. Eastman
发明人: James R. Shealy , Lester F. Eastman
IPC分类号: B01D53/18 , B01D53/26 , B01J10/00 , C01B3/52 , C01B6/06 , C01B6/10 , C01B6/34 , C01B7/07 , C01B17/16 , C01B17/45 , C01B19/00 , C01B19/04 , C01B21/04 , C01B25/06 , C01B25/10 , C01B33/04 , C01B33/107 , C01B35/06 , C01C1/02 , C01G19/08 , C01G28/00 , C07F5/00 , C30B25/02 , B01D47/02
CPC分类号: C30B25/02 , C01B17/168 , C01B19/00 , C01B19/04 , C01B21/0411 , C01B25/06 , C01B25/10 , C01B3/52 , C01B33/046 , C01B33/10778 , C01B35/061 , C01B6/06 , C01B6/065 , C01B6/10 , C01B6/34 , C01B7/07 , C01B7/0706 , C01B7/0743 , C01C1/024 , C01G19/08 , C01G28/007 , C07F5/00 , C01B2203/0415 , C01B2203/0465 , C01B2203/0495 , C01B2210/0043 , C01P2002/84 , C01P2006/80
摘要: A method of removing oxygen and water vapor and other oxygen bearing gas species from reactant gases comprising the use of an appropriate solution containing an active gettering metal, selected from the group of aluminum, magnesium, calcium and lithium in liquid phase through a moderate temperature range, including room temperature and above as an oxygen gettering step, through the formation of an oxide of said metal wherein the said metal becomes continuously available for oxidation by exposing the said unreacted metal to the gas by bubbling the reactant gas through a ternary melt of gallium-indium and the said metal in a nonreactive container and maintaining in solid phase an excess of the active gettering method so that the capacity for removing the oxygen and water vapor and other oxygen bearing gas species may be extended by the active metal going into solution in the melt from the solid as the metal oxide is formed and goes out of solution.
摘要翻译: 一种从反应气体中除去氧气和水蒸汽等含氧气体物质的方法,包括使用含有选自铝,镁,钙和锂的活性吸气金属的合适溶液,液相中的中等温度范围 ,包括室温以上作为吸氧步骤,通过形成所述金属的氧化物,其中所述金属通过将反应气体鼓泡通过镓的三元熔体而使所述未反应的金属暴露于气体中而连续可用于氧化 所述金属在非反应性容器中并保持固相过量的主动吸气方法,使得除去氧气和水蒸汽等含氧气体物质的能力可以通过进入溶液中的活性金属来延长 形成作为金属氧化物的固体的熔体,并从溶液中脱出。
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公开(公告)号:US06723153B2
公开(公告)日:2004-04-20
申请号:US09988820
申请日:2001-11-20
IPC分类号: B01D5322
CPC分类号: C01B17/453 , B01D53/22 , C01B21/0438 , C01B2210/0043 , H01B3/16 , Y02P20/151
摘要: Gas mixtures of SF6 and N2 which have been used as an insulating filler gas for underground cables can be separated by use of a membrane separation in order to recover the SF6.
摘要翻译: 已经用作地下电缆绝缘填料气体的SF6和N2的气体混合物可以通过使用膜分离来分离,以便回收SF6。
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公开(公告)号:US20020062734A1
公开(公告)日:2002-05-30
申请号:US09988820
申请日:2001-11-20
IPC分类号: B01D053/22
CPC分类号: C01B17/453 , B01D53/22 , C01B21/0438 , C01B2210/0043 , H01B3/16 , Y02P20/151
摘要: Gas mixtures of SF6 and N2 which have been used as an insulating filler gas for underground cables can be separated by use of a membrane separation in order to recover the SF6.
摘要翻译: 已经用作地下电缆绝缘填料气体的SF6和N2的气体混合物可以通过使用膜分离来分离,以便回收SF6。
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