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    • 5. 发明授权
    • Electrolytic cell for producing primary aluminum by using inert anode
    • 用惰性阳极生产原铝的电解槽
    • US09551078B2
    • 2017-01-24
    • US13575952
    • 2010-09-27
    • Jianhong YangWangxing LiPeng Cao
    • Jianhong YangWangxing LiPeng Cao
    • C25B9/00C25C1/02C25C3/00C25C3/06C25C3/08C25C3/10C25C3/12C25C3/14C25C7/00C25C7/02
    • C25C3/08C25C3/06
    • An electrolytic cell for producing primary aluminum by using inert anodes is disclosed, in which an electrolyte system KF—NaF—AlF3 is used and the operating temperature of the cell is 700-850° C. The electrolytic cell comprises a cell shell, heat insulating refractory lining, a melting pot, a heat insulating cover, inert electrodes, electrode stems, anode bus-bars, cathode bus-bars, anode branching bus-bars, heat insulating plates, partitions between anodes and cathodes and a feeding device. The quality of the aluminum product obtained by using the electrolytic cell is not less than 99.7%. The cell is free from emission of carbon dioxide and perfluorinated compounds (PFCs), and hardly has consumption of electrodes, so the distances between anodes and cathodes can be kept stable. The cell is sealed and the volatilization of dust and fluorides can be prevented, and it is useful to recover oxygen gas.
    • 公开了一种通过使用惰性阳极生产原铝的电解槽,其中使用电解质体系KF-NaF-AlF 3,电池的工作温度为700-850℃。电解槽包括电解槽,绝热 耐火衬里,熔池,绝热罩,惰性电极,电极杆,阳极汇流条,阴极汇流条,阳极支路母线,隔热板,阳极和阴极之间的隔板以及馈电装置。 通过使用电解槽得到的铝制品的质量不低于99.7%。 电池没有二氧化碳和全氟化合物(PFCs)的排放,几乎没有电极的消耗,所以阳极和阴极之间的距离可以保持稳定。 电池被密封,可以防止粉尘和氟化物的挥发,并且可以回收氧气。
    • 6. 发明授权
    • Systems and methods for determining alumina properties
    • 用于确定氧化铝性能的系统和方法
    • US09121104B2
    • 2015-09-01
    • US13017557
    • 2011-01-31
    • Jayson TessierGary P. TarcyEliezer BatistaXiangwen Wang
    • Jayson TessierGary P. TarcyEliezer BatistaXiangwen Wang
    • C25C3/20C25C3/14
    • C25C3/20C25C3/14
    • Systems, methods and apparatus relating to evaluation of alumina feedstocks are disclosed. A system may include an alumina storage unit comprising an alumina feedstock, an alumina supply member in communication with the alumina storage unit and an aluminum electrolysis cell. The alumina feedstock of the alumina storage unit may periodically flow through the alumina supply member and to the aluminum electrolysis cell. A measurement device may be in communication with the alumina supply member, and may be configured to measure a supply member property and transmit a first signal to a processor. The processor may be configured to receive the first signal and produce supply member property data based, at least in part, on the first signal.
    • 公开了与氧化铝原料评估有关的系统,方法和设备。 系统可以包括氧化铝存储单元,其包括氧化铝原料,与氧化铝存储单元连通的氧化铝供应构件和铝电解池。 氧化铝储存单元的氧化铝原料可以周期性地流过氧化铝供应构件和铝电解池。 测量装置可以与氧化铝供应构件连通,并且可以被配置为测量供应构件性质并将第一信号发送到处理器。 处理器可以被配置为至少部分地基于第一信号来接收第一信号并产生供应成员属性数据。
    • 7. 发明授权
    • Device for controlling the travel distance of a chisel in a feeding system for an aluminium production electrolytic cell
    • 用于控制用于铝生产电解槽的供料系统中凿子行进距离的装置
    • US07429314B2
    • 2008-09-30
    • US11220905
    • 2005-09-08
    • Sebastien CouvreurJerome BosSilvino CaetanoChristian Dreyer
    • Sebastien CouvreurJerome BosSilvino CaetanoChristian Dreyer
    • C25C3/14
    • C25C3/14
    • Device for equipment of a cell (1) comprising an electrolytic bath (4) covered with a crust (5), with a chisel (13) that can be moved vertically between a high position in which it is above the crust (5) and a low position in which the crust (5) is perforated and in which contact is made with the bath (4), the device (11) comprising means of detecting electrical contact between the chisel (13) and the bath (4), these means comprising an electrical circuit (19) capable of making an electrical measurement between the chisel (13) and a point (20) in the cell used as an electrical reference, and taking immediate action on the actuator to cause vertical upwards displacement of the chisel when a predetermined value of an electrical measurement is reached. The electrical circuit (19) is connected to the chisel (13), to the rod (14) of the chisel (13) or to the actuator rod (17) through connecting means capable of creating a point contact (24) at least one point between the circuit (19) and the chisel (13), the rod (14) of the chisel (13) or the actuator rod, these connecting means (23) being acted upon by elastic means (25) pushing them towards the chisel (13), the rod (14) of the chisel (13) or the actuator rod (17) respectively.
    • 1.一种电池设备(1),包括被地壳(5)覆盖的电解槽(4),凿子(13)能够在高于地壳(5)上方的高位置和 所述装置(11)包括检测所述凿子(13)和所述沐浴(4)之间的电接触的装置,所述装置(11)包括用于检测所述地壳(5)穿孔的低位置,并且所述装置(11) 装置包括能够在凿子(13)和用作电气参考的电池中的点(20)之间进行电气测量的电路(19),并且立即对致动器作用以引起凿子的垂直向上位移 当达到电测量的预定值时。 电路(19)通过能够形成点接触(24)的连接装置连接到凿子(13),连接到凿子(13)的杆(14)或致动器杆(17) 电路(19)和凿子(13)之间,凿子(13)的杆(14)或致动器杆的这些连接装置(23)由弹性装置(25)作用,将它们推向凿子 (13),凿子(13)的杆(14)或致动器杆(17)。
    • 8. 发明授权
    • Method and device for measuring the temperature and the level of the
molten electrolysis bath in cells for aluminum production
    • 用于测量铝生产的电池中熔融电解槽的温度和水平的方法和装置
    • US6065867A
    • 2000-05-23
    • US570496
    • 1995-12-11
    • Benoit SulmontPierre HomsiOlivier Granacher
    • Benoit SulmontPierre HomsiOlivier Granacher
    • C25C3/20G01K13/00C25C3/14G01F23/24
    • C25C3/20
    • A method for measuring temperature and electrolyte level of a molten electrolysis bath in a cell for production of aluminum by electrolysis of alumina includes the steps of: (a) piercing the crust of a solidified bath with a crust breaker and immersing into the electrolyte, an extremity of a temperature probe to a sufficient depth until an initial temperature reading of at least 850.degree. C. is measured, then maintaining the immersion of the probe, in said electrolyte for a length of time which is less than the time taken to establish the thermal equilibrium of the probe in the electrolyte, (b) withdrawing the probe and determining a temperature of the electrolyte by extrapolation of the temperature values measured by the probe, (c) measurement of the level of electrolyte in the cell by moving the lower extremity of the probe into contact with the electrolyte while recording potential signals between the cathodic substrate and the probe, and recording position signals corresponding to the position of the probe, and (d) determining the level of the electrolyte by comparison of recorded potential and position signals.
    • 用于通过电解氧化铝来测量用于生产铝的电池中的熔融电解槽的温度和电解质水平的方法包括以下步骤:(a)用地壳破碎机刺穿固化浴的外壳并浸入电解液中, 测量温度探针的极端至足够的深度,直到测量至少850℃的初始温度读数,然后将探针浸没在所述电解质中的时间长度小于建立所述时间所需的时间 探针在电解质中的热平衡,(b)取出探针并通过推测由探针测量的温度值来确定电解质的温度,(c)通过移动下肢来测量细胞中的电解质水平 的探针与电解质接触,同时在阴极基底和探针之间记录潜在信号,并记录与th相对应的位置信号 e位置;(d)通过比较记录的电位和位置信号来确定电解质的水平。