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    • 2. 发明申请
    • METHOD AND APPARATUS FOR MINERAL RECOVERY
    • 矿物回收方法与装置
    • WO1994002663A1
    • 1994-02-03
    • PCT/AU1993000361
    • 1993-07-19
    • MALLONBURY PTY. LTD.TREASURE, Patrick, Anthony
    • MALLONBURY PTY. LTD.
    • C25C01/12
    • C25C5/02C25C1/12C25C7/00
    • A method of electrowinning a mineral from an ore body is disclosed, the method including recirculating a leaching solution (36) through leaching means (18) and solvent extraction means (58) whereby soluble mineral is leached from the ore body and dissolved into the leaching solution; recirculating a solvent (37) through the solvent extraction means (56) and stripping means (57) whereby selected soluble mineral dissolved in the leaching solution is extracted into the solvent from the leaching solution; recirculating an electrolyte (38) through the stripping means (57) and a mineral extraction cell assembly (10) whereby the selected soluble mineral is stripped from the solvent into the electrolyte (38), and applying an electric current to the mineral extraction cell assembly (10) and wherein said mineral extraction cell assembly (10) includes a stationary elongate housing (11) having a conductive inner surface (12), closure assemblies (13, 14) removably mounted to each end of the stationary housing (11), an electrode (21) extending from at least one the closure assembly into the housing to form an annular cavity (24) between the housing and the electrode, a fluid inlet to the annular cavity in one of the closure assemblies and formed whereby, in use, fluid is introduced to the mineral extraction cell assembly offset from the elongate axis of the stationary elongate housing, a fluid outlet to the cell assembly formed in the other of the closure assemblies, and electrical terminations for connecting the electrical current to the electrode and the conductive surface to cause the selected soluble mineral to be electro-deposited on the conductive surface. The mineral extraction cell assembly (10) preferably further includes separation means dividing the annular cavity into an electrolyte chamber with which the fluid inlet and the fluid outlet are in fluid connection and a process fluid chamber, a process inlet to the process fluid chamber and a process outlet to the process fluid chamber, in which case the method includes circulating process fluid through the process inlet and the process outlet.
    • 公开了一种从矿体中电解矿物的方法,所述方法包括通过浸出装置(18)和溶剂萃取装置(58)再循环浸出溶液(36),由此可溶矿物从矿体中浸出并溶解到浸出中 解; 将溶剂(37)再循环通过溶剂提取装置(56)和汽提装置(57),由此将溶解在浸出溶液中的选择的可溶性矿物质从浸出溶液中萃取到溶剂中; 使电解质(38)通过汽提装置(57)和矿物提取电池组件(10)再循环,由此将所选择的可溶性矿物质从溶剂中汽提到电解质(38)中,并将电流施加到矿物提取电池组件 (10),并且其中所述矿物提取电池组件(10)包括具有导电内表面(12)的静止细长壳体(11),可移除地安装到固定壳体(11)的每个端部的封闭组件(13,14) 从所述封闭组件中的至少一个延伸到所述壳体中以在所述壳体和所述电极之间形成环形腔(24)的电极(21),所述封闭组件中的一个中的所述环形空腔的流体入口, 将流体引入矿物提取单元组件,从固定细长壳体的细长轴线偏移,将流体出口流到形成在另一封闭组件中的电池组件,以及电终端f 或将电流连接到电极和导电表面以使所选择的可溶性矿物电沉积在导电表面上。 矿物提取电池组件(10)优选地还包括分离装置,将环形空腔分成电解液室,流体入口和流体出口与流体连通,电解液室,过程流体室的工艺入口和 过程出口到过程流体室,在这种情况下,该方法包括使过程流体循环通过过程入口和过程出口。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR ELECTROWINNING POWDER METAL FROM SOLUTION
    • 用于从溶液中电解粉末金属的方法和装置
    • WO0107684A3
    • 2002-07-11
    • PCT/AU0000877
    • 2000-07-21
    • ELECTROMETALS TECHNOLOGIES LTDTREASURE PATRICK ANTHONYTARRANT DAVID BRUCE
    • TREASURE PATRICK ANTHONYTARRANT DAVID BRUCE
    • C25C5/02C25C7/00C25C1/00
    • C25C7/00C25C5/02
    • A cell (1) for electrowinning a metal in powder form from solution is disclosed. The cell (1) includes a housing (2) having an inlet (3) towards one end thereof and an outlet (4) towards an opposed end. The cell has a cylindrical anode (6) extending substantially axially through the housing (2) and a cathode (7) surrounding the anode (6) spaced outwardly away therefrom. The anode (6) and cathode (7) define a flow passage (8) therebetween having a gap of 5 to 25 millimetres. In use the cell has a substantially vertical orientation with the inlet (3) at the bottom and the outlet (4) at the top. During the flow of process solution through the cell (1) metal powder is deposited on the cathode (7). Periodically the flow process solution is interrupted and flush solution is passed in a reverse direction through the cell to remove powder metal from the cathode (7). A bank of cells in which the individual cells are connected in parallel to respectively an inlet main and an outlet main is also disclosed.
    • 公开了一种用于从溶液中电解提取粉末状金属的电池(1)。 电池(1)包括具有朝向其一端的入口(3)和朝向相对端的出口(4)的壳体(2)。 电池具有基本轴向延伸穿过壳体(2)的圆柱形阳极(6)和围绕阳极(6)的阴极(7),其间隔开向外。 阳极(6)和阴极(7)在其间限定有5至25毫米的间隙的流动通道(8)。 在使用中,电池具有基本垂直的取向,入口(3)位于底部,出口(4)位于顶部。 在通过电池(1)的工艺溶液流动期间,金属粉末沉积在阴极(7)上。 周期性地,流动过程溶液被中断,并且冲洗溶液沿相反方向通过电池以从阴极(7)去除粉末金属。 还公开了其中各个电池分别与入口主体和出口主体并联连接的电池组。
    • 6. 发明申请
    • MINERAL RECOVERY APPARATUS
    • 矿物回收装置
    • WO1996038602A1
    • 1996-12-05
    • PCT/AU1996000332
    • 1996-06-03
    • ELECTROMETALS MINING LIMITEDTREASURE, Patrick, Anthony
    • ELECTROMETALS MINING LIMITED
    • C25C01/12
    • C25C1/12C25C7/00
    • A cell assembly (10) is described for extracting mineral from a flowing electrolyte, including a housing having an inlet (23) and an outlet (22) for passing electrolyte through the housing. The housing confines the flow of electrolyte through a removable sleeve-like cathode (13) and is also provided with an anode (21) extending into the housing, and electrical connecting means for connecting an electrical circuit to the cathode (13) and the anode (21). The housing is preferably a fixed cylindrical housing and includes a removable top cap supporting an anode assembly for removal therewith. The anode (21) is supported concentrically and is part of an anode assembly which extends fully through the housing to be located concentrically in the housing with a bottom support (31) in the housing by locating means provided on the distal end of the anode (21). It is also proferred that the anode (21) includes an exposed conductive portion (29) within end extremities of the sleeve-like cathode.
    • 描述了用于从流动的电解质中提取矿物的电池组件(10),包括具有用于使电解质通过壳体的入口(23)和出口(22)的壳体。 壳体通过可移除的套筒状阴极(13)限制电解质流动,并且还设置有延伸到壳体中的阳极(21),以及用于将电路连接到阴极(13)和阳极的电连接装置 (21)。 壳体优选地是固定的圆柱形壳体,并且包括支撑阳极组件的可移除的顶盖以便与其一起移除。 阳极(21)同心地支撑,并且是阳极组件的一部分,阳极组件完全延伸穿过壳体,以通过设置在阳极的远端上的定位装置将壳体中的底部支撑件(31)同心地定位在壳体中, 21)。 还假设阳极(21)在套筒状阴极的端部末端包括露出的导电部分(29)。