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    • 2. 发明申请
    • SEMULTANEOUS POLYMERIZATION OF TWO VINYL MONOMER MIXTURES TO OPPOSITE FACES OF A FLAT POROUS SUBTRATE
    • 两种单体单体混合物的平面多孔分散体的相互作用面的SEM文献聚合
    • WO2012091870A1
    • 2012-07-05
    • PCT/US2011/063703
    • 2011-12-07
    • GENERAL ELECTRIC COMPANYMACDONALD, Russell, JamesZHENG, LipingBARBER, JohnYANG, Hai
    • MACDONALD, Russell, JamesZHENG, LipingBARBER, JohnYANG, Hai
    • H01M10/04H01M4/139H01M4/13H01M4/04
    • H01M4/8657H01M2004/029H01M2004/8694
    • A bi-polar electrode having ion exchange polymers on opposite faces of a porous substrate is formed using a method that includes providing an electrode substrate with activated carbon layers on opposite faces of the electrode substrate, wherein said faces have an outer perimeter band void of the activated carbon layers. The electrode substrate is placed in a thermoplastic envelope formed by a pair of polyethylene films. A Mylar sheet is placed in each side of the envelope against the electrode substrate, and the envelope is thermally sealed to the outer perimeter band of the electrode substrate void of activated carbon to form a first pocket on one side of the electrode substrate and a second pocket on the opposite side of the electrode substrate. The method also includes inserting a first polymerizable monomer mixture having an anion exchange group into the first pocket of the envelope and inserting a second polymerizable monomer mixture having a cation exchange group into the second pocket of the envelope. The first and second polymerizable monomers mixtures are then polymerized in an oven.
    • 在多孔基材的相对面上具有离子交换聚合物的双极电极使用包括在电极基板的相对面上提供具有活性碳层的电极基板的方法形成,其中所述面具有空隙的外周边带 活性炭层。 将电极基板放置在由一对聚乙烯膜形成的热塑性外壳中。 将聚酯薄片放置在信封的每一侧面靠着电极基板,并且将外壳热密封到活性炭空隙处的电极基板的外周带上,以在电极基板的一侧上形成第一凹槽, 在电极基板的相对侧上的口袋。 该方法还包括将具有阴离子交换基团的第一可聚合单体混合物插入外壳的第一凹槽中,并将具有阳离子交换基团的第二可聚合单体混合物插入到外壳的第二凹槽中。 然后将第一和第二可聚合单体混合物在烘箱中聚合。
    • 4. 发明申请
    • ELECTRODEIONIZATION DEVICE AND METHOD WITH IMPROVED SCALING RESISTANCE
    • 电化学装置和具有改进的耐蚀性的方法
    • WO2012091863A1
    • 2012-07-05
    • PCT/US2011/063631
    • 2011-12-07
    • GENERAL ELECTRIC COMPANYGREBENYUK, OlegGREBENYUK, VladimirZHANG, LiSIMS, Keith, J.BARBER, John
    • GREBENYUK, OlegGREBENYUK, VladimirZHANG, LiSIMS, Keith, J.BARBER, John
    • B01D61/44B01D61/50C02F1/469
    • B01D61/44B01D61/50B01D2319/02C02F1/4695
    • An electrodeionization apparatus includes an anode compartment provided with an anode and a cathode compartment spaced from the anode compartment and provided with a cathode, wherein the anode and cathode are configured for coupling to a DC power source to effect an electric potential difference between the anode and the cathode and thereby influence transport of ionic material in liquid media and ion exchange media by the influence of the electric potential difference. The electrodeionization apparatus also includes a feed inlet receiving a feed solution, a product water outlet and a plurality of anion exchange membranes and a plurality of cation exchange membranes alternately arranged between the anode compartment and the cathode compartment. The electrodeionization apparatus also includes a plurality of spacers, wherein the spacers and the anion and cation exchange membranes are arranged to form a first diluting compartment receiving feed solution from the feed inlet, a second diluting compartment in series with the first diluting compartment and delivering product water to the product water outlet, a first concentrating compartment and a second concentrating compartment. The first and second diluting compartments are bounded by an anion exchange membrane on the side closest to the anode and by a cation exchange membrane on the side closest to the cathode. The first and second concentrating compartments are bounded by a cation exchange membrane on the side closest to the anode and by an anion exchange membrane on the side closest to the cathode.
    • 电去离子装置包括阳极室,阳极室设置有与阳极室间隔开并具有阴极的阳极室和阴极室,其中阳极和阴极被配置为耦合到直流电源,以实现阳极和阳极间的电位差 阴极,从而通过电位差的影响影响离子物质在液体介质和离子交换介质中的转移。 电去离子装置还包括接收进料溶液,产物水出口和多个阴离子交换膜的进料入口和交替布置在阳极室和阴极室之间的多个阳离子交换膜。 电去离子装置还包括多个间隔物,其中间隔物和阴离子和阳离子交换膜被布置成形成从进料入口接收进料溶液的第一稀释室,与第一稀释室和递送产物串联的第二稀释室 水到产品出水口,第一浓缩室和第二浓缩室。 第一和第二稀释隔室由最靠近阳极的一侧的阴离子交换膜和最靠近阴极的一侧的阳离子交换膜界定。 第一和第二浓缩室由最靠近阳极的一侧的阳离子交换膜和最靠近阴极的一侧的阴离子交换膜界定。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR SHIFTING CURRENT DISTRIBUTION IN ELECTRODEIONIZATION SYSTEMS
    • 电活化系统中电流分布的方法和装置
    • WO2007143296A2
    • 2007-12-13
    • PCT/US2007/067646
    • 2007-04-27
    • GENERAL ELECTRIC COMPANYBARBER, John
    • BARBER, John
    • B01D61/48B01D61/54B01D2313/28B01D2313/30B01D2313/34B01D2325/26C02F1/4695C02F2201/46115C02F2201/46125C02F2209/05
    • An electrodeionization (EDI) apparatus and method comprising an ion-depleting chamber for removing ions from liquids passed therethrough, wherein a resistive component is coupled proximate the outlet region of the chamber so as to increase the electrical resistance of the outlet region of the chamber with respect to the inlet region of the chamber. The resistive component may be coupled to the ion-selective membranes bordering the diluting chamber and/or the concentrate chambers. In an alternative embodiment, the resistive component may be coupled between the ion- exchanging media particles themselves within the ion-depleting chambers. In each embodiment, the electrical resistance of the outlet region is increased with respect to the inlet region of the chamber, with results being that electrical current is shifted from the outlet region toward the inlet region, thus enhancing overall deionization performance of the EDI device.
    • 一种电去离子(EDI)装置和方法,包括用于从通过其中的液体中除去离子的离子消耗室,其中电阻元件在室的出口区域附近耦合,以便增加室的出口区域的电阻, 相对于腔室的入口区域。 电阻元件可以耦合到与稀释室和/或浓缩物室接壤的离子选择膜。 在替代实施例中,电阻部件可以在离子消耗室内的离子交换介质颗粒本身之间耦合。 在每个实施例中,出口区域的电阻相对于室的入口区域增加,结果是电流从出口区域向入口区域移动,从而增强了EDI设备的整体去离子性能。