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    • 1. 发明授权
    • Chlor-alkali cell control system based on mass flow analysis
    • 基于质量流量分析的氯碱电池控制系统
    • US4532018A
    • 1985-07-30
    • US529309
    • 1983-09-06
    • David B. WrightRichard W. Ralston, Jr.James M. Ford
    • David B. WrightRichard W. Ralston, Jr.James M. Ford
    • C25B15/02C25B1/26
    • C25B15/02
    • Method and means for automatically controlling chlor-alkali cells are described. Control is exercised on the basis of a mass flow analysis, starting from a target caustic concentration for the catholyte output, to establish individual set points for optimum cell system operating conditions so as to achieve said target output value. Such control is accomplished by a central automatic control unit which is adapted to monitor the operation of the cell and its associated brine and caustic output subsystems and to institute appropriate corrective actions whenever a tolerance band around one or more of said set points is exceeded.The control unit is further adapted to provide daily and weekly operating summaries and to store said summaries for trends analyses to establish the scope and significance of any long-term degradative processes which might be occurring.
    • 描述了自动控制氯碱电池的方法和手段。 基于从阴极电解液输出的目标苛性碱浓度开始的质量流量分析来执行控制,以建立用于最佳细胞系统操作条件的单独设定点,以实现所述目标输出值。 这种控制由中央自动控制单元来实现,该中央自动控制单元适于监测小区及其相关联的盐水和苛性输出子系统的操作,并且每当超出所述设定点的一个或多个周围的公差带时,进行适当的校正动作。 控制单元还适用于提供每日和每周的操作摘要,并存储用于趋势分析的所述摘要,以确定可能发生的任何长期降解过程的范围和意义。
    • 3. 发明授权
    • Adjustable electrode
    • 可调电极
    • US4028214A
    • 1977-06-07
    • US653144
    • 1976-01-28
    • James M. FordElmer N. Macken
    • James M. FordElmer N. Macken
    • C25B11/02C25B11/10C25B9/02
    • C25B11/02
    • An adjustable electrode for use in electrolytic cells is provided. The electrode comprises two rectangular electrode surfaces positioned in parallel and having a space between them. Two electrode posts are located in this space and have resilient conductive means to attach one electrode post to one electrode surface. Contractible means are attached along two non-adjacent edges of the electrode surfaces positioned outside of the space between the electrode surfaces. Clamping means are attached to the contractible means to vary the space between the electrode surfaces.The adjustable electrode, employed for example in the electrolysis of alkali metal chlorides, has adjusting means which are readily accessible and where the inter-electrode spacing can be conveniently changed.
    • 提供了一种用于电解池的可调节电极。 电极包括两个平行定位的矩形电极表面,并且在它们之间具有空间。 两个电极柱位于该空间中并且具有弹性导电装置以将一个电极柱附接到一个电极表面。 可收缩的装置沿着位于电极表面之间的空间外部的电极表面的两个不相邻的边缘附着。 夹紧装置连接到可收缩装置以改变电极表面之间的空间。
    • 5. 发明授权
    • Membrane cell jumper switch
    • 膜电池跳线开关
    • US4589966A
    • 1986-05-20
    • US783709
    • 1985-10-03
    • James M. Ford
    • James M. Ford
    • C25B9/04H01H33/00
    • C25B9/045
    • An electrolytic cell jumper switch system is disclosed which eliminates all damaging reverse currents without utilizing any additional rectifiers, power supply or auxiliary power or current sources by loading the electrical current flow through resistor modules around the cell to be disconnected, bypassing the current flow around the bus bar connection between the adjacent cells and the cell to be disconnected by closing a connecting switch and finally reopening the connecting switch to transfer the total current load in the switch back to the resistor modules.
    • 公开了一种电解槽跳线开关系统,其消除了所有有害的反向电流,而不需要利用任何额外的整流器,电源或辅助电源或电流源,通过将电流流过负载待连接的电池单元周围的电阻模块,绕过电流 通过关闭连接开关,最后重新打开连接开关,使交换机中的总电流负载返回到电阻模块,使相邻电池和电池之间的母线连接被断开。
    • 7. 发明授权
    • Electrolytic cell
    • 电解池
    • US5340457A
    • 1994-08-23
    • US53743
    • 1993-04-29
    • James M. FordDavid W. Cawlfield
    • James M. FordDavid W. Cawlfield
    • C25B9/04C25B9/08C25B9/20C25B9/00
    • C25B9/08C25B9/04C25B9/20
    • An electrolytic cell construction in which the cell includes at least one anode and cathode, and a separator therebetween held under a compressive force by a frame assembly. The anodes and cathode are provided with a portion for electrical connection to an electric connector plate. The electric connector plate is positioned in contact with a respective anode and cathode. The compressive force of the frame assembly which holds the components of the cell in compression to provide a fluid tight seal simultaneously serves to apply a force between the electrical connector plates and their respective anode or cathode to hold the electrical connector plates in contact therewith. Preferably spring means are provided for biasing the electrical connector plates and the portions of the anode and cathode for connection to the plate into engagement with each other. The spring means is compressed simultaneously with the frame assembly placing the components of the cell under compression so that the spring means forces the anode and cathode electrical connection portions into contact with their respective electrical connector plate.
    • 一种电池单元结构,其中电池包括至少一个阳极和阴极,以及其间通过框架组件在压缩力下保持的隔板。 阳极和阴极设置有用于电连接到电连接器板的部分。 电连接器板与相应的阳极和阴极定位成接触。 同时,将电池组件保持在压缩状态以提供流体密封的框架组件的压缩力用于在电连接器板和它们各自的阳极或阴极之间施加力,以将电连接器板与其接触。 优选地,提供弹簧装置用于偏置电连接器板以及用于连接到板的阳极和阴极的部分彼此接合。 弹簧装置与框架组件同时压缩,将电池的部件压缩,使得弹簧装置迫使阳极和阴极电连接部分与它们各自的电连接器板接触。
    • 9. 发明授权
    • Sealing means for filter press cells
    • 压滤机的密封装置
    • US4431502A
    • 1984-02-14
    • US329092
    • 1981-12-09
    • James M. Ford
    • James M. Ford
    • C25B9/00C25B9/20H01M8/02C25B11/10C25B13/08
    • C25B9/206C25B9/00H01M8/0273
    • The invention relates to an electrolytic cell which is comprised of a first frame member housing an electrode and a second frame member housing an electrode. A separator is positioned between the first frame member and the second frame member. A first sealing means contacts a side of the first frame member and one side of the separator. Contacting the second frame member and the opposite side of the separator is a second sealing means. The first sealing means and the second sealing means are elastomeric solids having a substantially rectangular cross-sectional area where the first sealing means is from about 1.1 to about 3 times the width of the second sealing means. Pressing means are provided which press the frames together against the sealing means and the separator to form a substantially fluid-tight seal. The novel electrolytic cells provide the advantages of simultaneously:a. controlling gasket compression pressures,b. controlling gasket frame surface structural forces,c. efficiently forming a seal, andd. preventing gasket slippage.
    • 本发明涉及一种电解池,其包括容纳电极的第一框架构件和容纳电极的第二框架构件。 分隔件位于第一框架构件和第二框架构件之间。 第一密封装置接触第一框架构件的一侧和分离器的一侧。 接触第二框架构件和分离器的相对侧是第二密封装置。 第一密封装置和第二密封装置是具有基本矩形横截面积的弹性体固体,其中第一密封装置是第二密封装置的宽度的约1.1至约3倍。 提供了压紧装置,其将框架一起压靠在密封装置和分离器上以形成基本上流体密封的密封。 新型电解槽同时提供了以下优点:a。 控制垫片压缩压力,b。 控制垫片框架表面结构力,c。 有效地形成密封件,以及d。 防止垫片滑动。