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    • 57. 发明申请
    • EcoFloc Advanced Electro-coagulation Liquid Waste Treatment System and Process
    • EcoFloc高级电凝液体废物处理系统及工艺
    • US20130180857A1
    • 2013-07-18
    • US13735673
    • 2013-01-07
    • Tim HeffernanBruce REA
    • Tim HeffernanBruce REA
    • C02F1/463
    • C02F1/463C02F2001/46119C02F2103/007C02F2103/06C02F2103/12C02F2103/20C02F2103/327
    • An electro-coagulation system to convert impurities and dissolved metal contaminants to suspended particles where upon associated dissolved gases help the suspended particles to rise to the surface and facilitate the contaminants to be removed. The system and process, known as Eco-Floc, are used for the treatment of various types of liquid streams by electrolysis for removal of undesirable substances from a treatment stream. The unique features of the electrolysis system permit a continuous cleaning of the electrode plates by moving, non-conductive scrapers located between electrodes in order that the movement of the scrapers can clean each electrode. The system also has full electrical controls to “tune in” power for the removal of specific impurities. The sacrificial anodes are easily replaced. The applications of Eco-Floc anticipate a plethora of applications and adapts well both to existing operations and new installations.
    • 将杂质和溶解的金属污染物转化成悬浮颗粒的电凝系统,其中在相关联的溶解气体帮助悬浮颗粒上升到表面并促进污染物被去除。 称为Eco-Floc的系统和方法用于通过电解处理各种类型的液体流以从处理流中除去不需要的物质。 电解系统的独特特征允许通过移动位于电极之间的非导电刮板来连续清洁电极板,以便刮刀的运动可以清洁每个电极。 该系统还具有完整的电气控制以“调谐”电力,以去除特定的杂质。 牺牲阳极很容易更换。 Eco-Floc的应用预计会有大量应用,并且适应现有的操作和新的安装。
    • 58. 发明授权
    • Method for electrode renewal
    • 电极更新方法
    • US08419925B2
    • 2013-04-16
    • US12193057
    • 2008-08-18
    • David Sherzer
    • David Sherzer
    • C25F1/02B01D59/40C02F1/461
    • C02F1/4602C02F1/46109C02F2001/46119C02F2103/08C02F2201/46125
    • A method for electrode renewal, for use in an electrolytic processing chamber for a liquid therein wherein the processing includes, for a pair of electrodes in the chamber, placing a positive voltage on one electrode in the chamber and placing a like negative voltage on another electrode in the chamber. It has been common practice to reverse the voltage between these electrodes in order to re-dissolve the buildup thereon. Now, the present inventor has observed that a voltage passing through or across an electrode will cause some minor cavitations on the electrode surface between the contact junctures of the voltage, and apparently the cavitations results in the buildup there-on detaching in bulk; which is much faster than the heretofore known re-dissolve processes of electrode renewal.
    • 一种用于电解液处理室的电极更新方法,其中,所述处理包括:对于所述室中的一对电极,在所述室中的一个电极上放置正电压,并将相同的负电压放置在另一电极上 在房间里 通常的做法是反转这些电极之间的电压,以便重新溶解其上的积聚。 现在,本发明人已经观察到,通过电极或穿过电极的电压将在电压的接触接合点之间的电极表面上产生一些小的空穴,并且明显地,空化导致在其上的积聚 - 在体内分离; 这比迄今为止已知的电极更新的再溶解过程快得多。
    • 59. 发明申请
    • Electrodeionization Method And Device With Hydrodynamic Flow Splitting
    • 水动力流动分流的电离方法和装置
    • US20130081948A1
    • 2013-04-04
    • US13653667
    • 2012-10-17
    • EMD MILLIPORE CORPORATION
    • Andrej Grabowski
    • B01D57/02
    • B01D57/02B01D61/48C02F1/44C02F1/4695C02F2001/46119C02F2201/4611C02F2201/46115C02F2301/043
    • Method for the removal of ions and ionizable substances from a polar liquid (10) comprising at least one process wherein said polar liquid (10) is split into a first stream (F1) and a second stream (F2), Said first stream (F1) passing through an electrochemically regenerable ion-exchange material (2) located where an electric field between two electrodes (4, 5) is applied, said first stream (F1) flowing from one electrode (4) to the other electrode (5) so that the ions to be removed are migrating in the direction reverse to the first stream flow through said ion-exchange material (2), Said second stream (F2) rinsing said one electrode (4), and said material is regenerated by the ions which are formed at the other electrode (5). Device in particular for the implementation of said method.
    • 用于从极性液体(10)中去除离子和可离子化物质的方法,包括至少一种方法,其中所述极性液体(10)被分裂为第一流(F1)和第二流(F2),所述第一流 )通过位于两个电极(4,5)之间的电场的电化学再生的离子交换材料(2),所述第一流(F1)从一个电极(4)流到另一个电极(5),所以 要除去的离子在与通过所述离子交换材料(2)的第一物流相反的方向上移动,所述第二流(F2)冲洗所述一个电极(4),并且所述材料由离子 形成在另一个电极(5)。 设备特别用于实现所述方法。