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    • 4. 发明授权
    • Methods and apparatus for the on-site production of hydrogen peroxide
    • 用于现场生产过氧化氢的方法和设备
    • US07754064B2
    • 2010-07-13
    • US11536973
    • 2006-09-29
    • Wayne E. BuschmannPatrick I. James
    • Wayne E. BuschmannPatrick I. James
    • C25B1/30
    • C25B1/30C02F1/4672C02F1/722C02F2103/008C02F2201/46115
    • Methods, apparatus, and applications for the on-site production of hydrogen peroxide are described. An embodiment of the apparatus comprises at least one anolyte chamber coupled to at least one anode, at least one catholyte chamber, wherein the at least one catholyte chamber is coupled to at least one cathode, at least one anode membrane and at least one cathode membrane, wherein the anode membrane is adjacent to the at least one anode, wherein the cathode membrane is adjacent to the at least one cathode, at least one central chamber disposed between the at least one anolyte chamber and the at least one catholyte chamber. Hydrogen peroxide is produced by reduction of an oxygen-containing gas at the cathode.
    • 描述了用于现场生产过氧化氢的方法,装置和应用。 该装置的一个实施方案包括至少一个与至少一个阳极耦合的阳极电解液室,至少一个阴极电解液室,其中该至少一个阴极电解液室与至少一个阴极,至少一个阳极膜和至少一个阴极膜 ,其中所述阳极膜与所述至少一个阳极相邻,其中所述阴极膜与所述至少一个阴极相邻,设置在所述至少一个阳极电解液室和所述至少一个阴极电解液室之间的至少一个中心室。 通过在阴极处还原含氧气体产生过氧化氢。
    • 6. 发明申请
    • METHOD FOR ELECTROCHEMICAL MODIFICATION OF LIQUID STREAM CHARACTERISTICS
    • 液体流动特性电化学修饰方法
    • US20150361570A1
    • 2015-12-17
    • US14737827
    • 2015-06-12
    • Patrick I. James
    • Patrick I. James
    • C25C1/02C25C1/08C25C1/10C25C1/16C25C1/06C25C1/12
    • C25C1/00C25B1/00C25B1/21C25B9/168
    • A method for extraction of target components from raw liquid streams includes steps of providing at least one electrochemical cell arranged to support redox reactions resulting in electrochemical change of oxidation states and concentration of at least one ionized target component, and to control at least one pH value of at least one electrolyte in the at least one electrochemical cell; introducing a raw liquid stream comprising a combination of constituent ionic species into the at least one electrochemical cell; operating the at least one electrochemical cell to change concentrations of at least two oxidation states of at least one targeted ionic species from the constituent ionic species; operating the at least one electrochemical cell to maintain a predetermined range of pH of the at least one electrolyte and to eliminate at least one target component pertinent to the at least one oxidation state of the targeted ionic species.
    • 从原液流中提取目标组分的方法包括提供至少一个电化学电池的步骤,所述电化学电池被布置为支持氧化还原反应,导致氧化态的电化学变化和至少一种电离靶组分的浓度,并且控制至少一个pH值 在所述至少一个电化学电池中的至少一种电解质; 将包含组成离子种类的组合的原始液体流引入所述至少一个电化学电池; 操作所述至少一个电化学电池以改变来自所述组成离子物质的至少一种靶向离子物质的至少两种氧化态的浓度; 操作所述至少一个电化学电池以保持所述至少一种电解质的pH的预定范围,并消除与所述目标离子物质的至少一种氧化态相关的至少一种靶组分。
    • 7. 发明授权
    • Method for electrochemical modification of liquid stream characteristics
    • 液流特性的电化学改性方法
    • US09371592B2
    • 2016-06-21
    • US14737827
    • 2015-06-12
    • Patrick I. James
    • Patrick I. James
    • C25B1/00C25C1/00C25B1/21C25B9/16
    • C25C1/00C25B1/00C25B1/21C25B9/168
    • A method for extraction of target components from raw liquid streams includes steps of providing at least one electrochemical cell arranged to support redox reactions resulting in electrochemical change of oxidation states and concentration of at least one ionized target component, and to control at least one pH value of at least one electrolyte in the at least one electrochemical cell; introducing a raw liquid stream comprising a combination of constituent ionic species into the at least one electrochemical cell; operating the at least one electrochemical cell to change concentrations of at least two oxidation states of at least one targeted ionic species from the constituent ionic species; operating the at least one electrochemical cell to maintain a predetermined range of pH of the at least one electrolyte and to eliminate at least one target component pertinent to the at least one oxidation state of the targeted ionic species.
    • 从原液流中提取目标组分的方法包括提供至少一个电化学电池的步骤,所述电化学电池被布置为支持氧化还原反应,导致氧化态的电化学变化和至少一种电离靶组分的浓度,并且控制至少一个pH值 在所述至少一个电化学电池中的至少一种电解质; 将包含组成离子种类的组合的原始液体流引入所述至少一个电化学电池; 操作所述至少一个电化学电池以改变来自所述组成离子物质的至少一种靶向离子物质的至少两种氧化态的浓度; 操作所述至少一个电化学电池以保持所述至少一种电解质的pH的预定范围,并消除与所述目标离子物质的至少一种氧化态相关的至少一种靶组分。
    • 10. 发明授权
    • Method for electrochemical modification of liquid streams
    • 液流电化学修饰方法
    • US08262892B2
    • 2012-09-11
    • US13020447
    • 2011-02-03
    • Patrick I. JamesGeorge Stejic
    • Patrick I. JamesGeorge Stejic
    • C25B9/00C25C7/00
    • C02F1/4672C02F1/46114C02F2001/46119C02F2001/46142C02F2101/20C02F2103/10C02F2201/4618
    • A method for electrochemical modification of liquid streams employing an electrolytic cell which utilizes an oxidation site defined by an anode, an anode compartment comprising liquid electrolyte anolyte where oxidation is effected, a cathode compartment comprising liquid electrolyte catholyte where reduction is effected, a cathode comprising conducting cathode particulates forming a cathode particulates bed and a current feeder device in at least intermittent contact with said cathode particulates where the cathode particulates are in motion and the particulates motion is substantially independent of bulk electrolyte flow, a separator which confines the cathode particulates to the cathode compartment, constrains electrolyte flow through the cathode particulates bed and permits ionic conduction of current between the anode and cathode, a cathode particulates conveyance system that manipulates cathode particulates motion. A separate system circulates the liquid undergoing modification through the electrolytic cell. An unidirectional current driving system drives unidirectional electric current supported by the liquid streams from the anode through the anolyte and the separator and into the catholyte and to the cathode particulates and to the current feeder device during the contact between the cathode particulates and the current feeder device.
    • 一种使用电解池的液体流的电化学改性方法,该方法利用由阳极限定的氧化位点,包含进行氧化的液体电解质阳极电解液的阳极室,包含进行还原的液体电解质阴极电解液的阴极室, 阴极微粒形成阴极颗粒床和电流馈送装置,其中阴极微粒至少与阴极微粒进行间歇接触,阴极颗粒运动,微粒运动基本上与体电解质流动无关,将阴极微粒限制在阴极 隔离层限制电解质流过阴极微粒床并允许阳极和阴极之间的电流的离子传导,阴极微粒输送系统,其操纵阴极微粒运动。 单独的系统通过电解池循环经历改性的液体。 单向电流驱动系统驱动由来自阳极的液体流通过阳极电解液和分离器并且在阴极微粒和当前馈送装置之间的接触期间进入阴极电解液和阴极微粒以及当前馈电装置的单向电流 。