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    • 82. 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。
    • 83. 发明申请
    • CABLE MANAGEMENT PANEL
    • 电缆管理面板
    • WO2009138029A1
    • 2009-11-19
    • PCT/CN2009/071753
    • 2009-05-12
    • ADC COMMUNICATIONS (SHANGHAI) CO., LTD.ZHANG, LiLENG, ZongshengCUI, PengCHAN, Thomas
    • ZHANG, LiLENG, ZongshengCUI, PengCHAN, Thomas
    • H02B1/20
    • H04Q1/06H04Q1/023
    • A cable management panel has a chassis (12) and a sliding drawer (30). The drawer has a cable storage region, a cable splice region, and a cable termination region. The cable management panel includes cable guides (92, 94) that define an incoming cable pathway to the cable storage region and then to the cable splice region, an intermediate cable pathway to the cable termination region, and an outgoing cable pathway. The outgoing cable pathway has an S-curved cable routing configuration when the sliding drawer is closed. The chassis of the cable management panel defines an interior (32) sized for receipt of one two-rack-unit drawer, or in the alternative, two one-rack-unit drawers. Cables can enter into or exit from the interior of the chassis.
    • 电缆管理面板具有底盘(12)和滑动抽屉(30)。 抽屉具有电缆存储区域,电缆接头区域和电缆端接区域。 电缆管理面板包括电缆引导件(92,94),其限定到电缆存储区域的输入电缆路径,然后限定到电缆接合区域,到电缆终端区域的中间电缆路径以及输出电缆路径。 当滑动抽屉关闭时,输出电缆通道具有S形弯曲的电缆布线配置。 电缆管理面板的底盘定义了一个内部(32),其尺寸用于接收一个双机架单元抽屉,或者替代地,两个单架单元抽屉。 电缆可以进入或离开机箱内部。