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    • 6. 发明申请
    • METHOD FOR IONTOPHORETIC FLUID DELIVERY
    • 用于静电流体输送的方法
    • WO2008091671A2
    • 2008-07-31
    • PCT/US2008000943
    • 2008-01-23
    • CERAMATEC INCJOSHI ASHOK
    • JOSHI ASHOK
    • A61N1/30
    • A61N1/325A61N1/0436A61N1/044A61N1/0444A61N1/0448A61N1/306
    • A method is provided for low cost, accurate, iontophoretic fluid delivery. The method includes providing an electronic circuit coupling a plurality of electrodes (1804), charging a chargeable electromotive cell (1807) to a selected potential and/or charge in response to a selected quantity of beneficial agent to be delivered, the chargeable electromotive cell being electronically coupled with the electronic circuit, applying the selected quantity of beneficial agent to at least one electrode (1806), placing the at least one electrode in contact with skin (1810), and delivering the selected quantity of beneficial agent. The method may also include preparing the skin (1808) using a skin preparation device in order to enhance the delivery of the beneficial agent.
    • 提供了一种用于低成本,精确的离子电渗液输送的方法。 所述方法包括提供耦合多个电极(1804)的电子电路,响应于所选择的待传递的有益试剂量将可充电电动电池(1807)充电至所选择的电位和/或电荷,所述可充电电动电池为 与所述电子电路电子耦合,将选择量的有益试剂施加到至少一个电极(1806),将所述至少一个电极置于与皮肤接触(1810)上,并递送所选择量的有益试剂。 该方法还可以包括使用皮肤制备装置制备皮肤(1808),以增强有益剂的递送。
    • 7. 发明申请
    • ELECTROCHEMICAL PRODUCTION OF HYDROGEN
    • 电化学生产
    • WO2012097167A3
    • 2012-10-26
    • PCT/US2012021099
    • 2012-01-12
    • CERAMATEC INCJOSHI ASHOKBHAVARAJU SAI
    • JOSHI ASHOKBHAVARAJU SAI
    • C25B1/02C01B3/02C25B9/08C25B13/04
    • C25B1/10C25B1/04C25B1/20C25B1/24C25B9/08C25B9/10C25B13/04C25B15/08Y02E60/366Y02P20/134
    • Electrochemical systems and methods for producing hydrogen. Generally, the systems and methods involve providing an electrochemical cell (10) that includes an anolyte compartment (15) holding an anode (25) in contact with an anolyte (20), wherein the anolyte (20) includes an oxidizable substance having a higher standard oxidation potential than water. The cell (10) further comprises a catholyte compartment (30) holding a cathode (40) in contact with a catholyte (35) that includes a substance that reduces to form hydrogen. Additionally, the cell (10) includes an alkali cation conductive membrane (45) that separates the anolyte compartment (15) from the catholyte compartment (30). As an electrical potential passes between the anode (25) and cathode (40), the reducible substance reduces to form hydrogen and the oxidizable substance oxidizes to form an oxidized product.
    • 电化学系统和生产氢的方法。 通常,系统和方法包括提供一种电化学电池(10),其包括保持与阳极电解液(20)接触的阳极(25)的阳极电解液室(15),其中阳极电解液(20)包括具有较高 标准氧化电位比水。 电池(10)还包括阴极电解液室(30),其保持阴极(40)与阴极电解液(35)接触,阴极电解液(35)包括减少形成氢的物质。 另外,电池(10)包括将阳极电解液室(15)与阴极电解液隔室(30)分离的碱性阳离子导电膜(45)。 当电极通过阳极(25)和阴极(40)之间时,可还原物质减少形成氢气,可氧化物质氧化形成氧化产物。