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    • 5. 发明申请
    • GAS STREAM PURIFICATION METHOD
    • 气流净化方法
    • WO2006115916A3
    • 2009-04-16
    • PCT/US2006014639
    • 2006-04-19
    • PRAXAIR TECHNOLOGY INCLANE JONATHAN ANDREWBONAQUIST DANTE PSHREIBER ERICARMAN BAYRAM
    • LANE JONATHAN ANDREWBONAQUIST DANTE PSHREIBER ERICARMAN BAYRAM
    • C25B1/02B01D53/32
    • B01D53/32B01D53/226B01D2256/10B01D2256/18B01D2257/104F25J3/04733F25J2205/80F25J2230/58
    • A method of purifying a gas stream (12) by removing oxygen from the gas stream in which the gas stream (12) is introduced into a series of electrically driven oxygen separation zones (16, 18, 20) that separate the oxygen from the gas stream (12) . Each of the electrically driven oxygen separation zones (16, 18, 20) has an electrolyte (34) that conducts oxygen ions upon the application of the voltage (38, 39, 40) to electrodes (22, 24; 26, 28; 30, 32) sandwiching the electrolyte (34) . The voltage (38, 39, 40) applied to each of the electrodes (22, 24; 26, 28; 30, 32) of the separation zones (16, 18, 20) is selected such that an ionic current induced in the electrolyte (34) within a particular zone (16, 18, 20) that is no greater than a limiting current. When voltage (38, 39, 40) is applied in such manner, the electrical power that is consumed is reduced over the power that would otherwise be consumed had a constant voltage been applied to all zones (16, 18, 20) . The gas stream (12) can be a crude argon stream (60) obtained from a crude argon column or a crude nitrogen stream (90) obtained from a pressure swing adsorption unit or a polymeric membrane unit .
    • 通过从气流中除去氧气来纯化气流(12)的方法,其中将气流(12)引入一系列电驱动的氧分离区(16,18,20),其将氧与气体分离 流(12)。 电驱动氧分离区(16,18,20)中的每一个具有电解质(34),其在将电压(38,39,40)施加到电极(22,24; 26,28; 30)上时传导氧离子 ,32)夹持电解质(34)。 施加到分离区(16,18,20)的每个电极(22,24; 26,28; 30,32)上的电压(38,39,40)被选择为使得在电解质中引起的离子电流 (16),18,20,其不大于限制电流。 当以这种方式施加电压(38,39,40)时,消耗的电功率相对于将恒定电压施加到所有区域(16,18,20)否则将消耗的功率减小。 气流(12)可以是从粗氩塔或从变压吸附单元或聚合物膜单元获得的粗氮流(90)获得的粗氩流(60)。
    • 6. 发明申请
    • GAS STREAM PURIFICATION METHOD
    • 气道净化方法
    • WO2006115916A2
    • 2006-11-02
    • PCT/US2006/014639
    • 2006-04-19
    • PRAXAIR TECHNOLOGY, INC.LANE, Jonathan, AndrewBONAQUIST, Dante, P.SHREIBER, EricARMAN, Bayram
    • LANE, Jonathan, AndrewBONAQUIST, Dante, P.SHREIBER, EricARMAN, Bayram
    • F25J3/00
    • B01D53/32B01D53/226B01D2256/10B01D2256/18B01D2257/104F25J3/04733F25J2205/80F25J2230/58
    • A method of purifying a gas stream (12) by removing oxygen from the gas stream in which the gas stream (12) is introduced into a series of electrically driven oxygen separation zones (16, 18, 20) that separate the oxygen from the gas stream (12) . Each of the electrically driven oxygen separation zones (16, 18, 20) has an electrolyte (34) that conducts oxygen ions upon the application of the voltage (38, 39, 40) to electrodes (22, 24; 26, 28; 30, 32) sandwiching the electrolyte (34) . The voltage (38, 39, 40) applied to each of the electrodes (22, 24; 26, 28; 30, 32) of the separation zones (16, 18, 20) is selected such that an ionic current induced in the electrolyte (34) within a particular zone (16, 18, 20) that is no greater than a limiting current. When voltage (38, 39, 40) is applied in such manner, the electrical power that is consumed is reduced over the power that would otherwise be consumed had a constant voltage been applied to all zones (16, 18, 20) . The gas stream (12) can be a crude argon stream (60) obtained from a crude argon column or a crude nitrogen stream (90) obtained from a pressure swing adsorption unit or a polymeric membrane unit .
    • 通过从气流中除去氧气来纯化气流(12)的方法,其中将气流(12)引入一系列电驱动的氧分离区(16,18,20),其将氧与气体分离 流(12)。 每个电驱动氧分离区(16,18,20)具有电解质(34),其在施加到电极(22,24; 26,28,30)上的电压(38,39,40)时传导氧离子 ,32)夹持电解质(34)。 施加到分离区(16,18,20)的每个电极(22,24; 26,28; 30,32)上的电压(38,39,40)被选择为使得在电解质中引起的离子电流 (16),18,20,其不大于限制电流。 当以这种方式施加电压(38,39,40)时,消耗的电功率相对于将恒定电压施加到所有区域(16,18,20)否则将消耗的功率减小。 气流(12)可以是从粗氩塔或由变压吸附单元或聚合物膜单元获得的粗氮气流(90)获得的粗氩气流(60)。