Aluminum Patents (Class 205/372)
  • Patent number: 7378009
    Abstract: A method of controlling an aluminum reduction cell including the following steps: maintaining alumina concentration within preset limits by alternating base, underfeed and overfeed modes; measuring cell voltage and potline amperage; calculating current normalized voltage value and a rate of changing thereof in time; comparing the calculated values of the normalized voltage with preset values thereof and correcting anode-cathode distance when passing from the base mode to the overfeed or underfeed modes; and measuring a number of alumina feed doses in the underfeed mode and overfeed mode over a time period sufficient for the alumina to dissolve.
    Type: Grant
    Filed: May 4, 2005
    Date of Patent: May 27, 2008
    Assignee: Russian Engineering Company, LLC
    Inventors: Alexey V. Svoevskiy, Oleg O. Rodnov, Alexander I. Berezin, Victor Y. Buzunov
  • Publication number: 20070278107
    Abstract: A method of producing aluminum in an electrolytic cell containing alumina dissolved in an electrolyte, the method comprising the steps of providing a molten salt electrolyte at a temperature of less than 900° C. having alumina dissolved therein in an electrolytic cell having a liner for containing the electrolyte, the liner having a bottom and walls extending upwardly from said bottom. A plurality of non-consumable Cu—Ni—Fe—Sn anodes and cathodes are disposed in a vertical direction in the electrolyte, the cathodes having a plate configuration and the anodes having a flat configuration to compliment the cathodes. The anodes contain apertures therethrough to permit flow of electrolyte through the apertures to provide alumina-enriched electrolyte between the anodes and the cathodes. Electrical current is passed through the anodes and through the electrolyte to the cathodes, depositing aluminum at the cathodes and producing gas at the anodes.
    Type: Application
    Filed: May 30, 2006
    Publication date: December 6, 2007
    Inventors: Robert J. Barnett, James R. Ballinger
  • Patent number: 7282133
    Abstract: A method of protecting an inert anode assembly (16) operating in an electrolysis cell (10) for producing metal when an adjacent assembly (16?) is removed exposing remaining assemblies to low ambient temperatures (40) by utilizing heat radiation shields (24) which can circumscribe every inert anode assembly (16), where the shields (24) remain intact and in place in the cell (10) while operating in molten electrolyte (15) at about 850° C.
    Type: Grant
    Filed: March 8, 2004
    Date of Patent: October 16, 2007
    Assignee: Alcoa Inc.
    Inventors: James T. Burg, LeRoy E. D'Astolfo
  • Patent number: 7255894
    Abstract: A method of manufacturing a component, in particular an aluminium electrowinning anode, for use at elevated temperature in an oxidising and/or corrosive environment comprises: applying onto a metal-based substrate layers of a particle mixture containing iron oxide particles and particles of a reactant-oxide selected from titanium, yttrium, ytterbium and tantalum oxides; and heat treating the applied layers to consolidate by reactive sintering of the iron oxide particles and the reactant-oxide particles to turn the applied layer into a protective coating made of a substantially continuous reacted oxide matrix of one or more multiple oxides of iron and the metal from the reactant-oxide. The metal-based substrate comprises at its surface during the heat treatment an integral anchorage-oxide of at least one metal of the substrate.
    Type: Grant
    Filed: April 15, 2003
    Date of Patent: August 14, 2007
    Assignee: Moltech Invent S.A.
    Inventors: Thinh T. Nguyen, Vittorio De Nora
  • Patent number: 7255893
    Abstract: A method of forming a dense and crack-free hematite-containing protective layer on a metal-based substrate for use in a high temperature oxidising and/or corrosive environment comprises applying onto the substrate a particle mixture consisting of: 60 to 99 95 weight %, in particular 70 to 95 weight % such as 75 to 85 weight %, of hematite with or without iron metal and/or ferrous oxide; 1 to 25 weight %, in particular 5 8 to 20 weight % such as 8 to 15 weight %, of nitride and/or carbide particles, such as boron nitride, aluminium nitride or zirconium carbide particles; and 0 to 15 weight %, in particular 5 to 15 weight %, of one or more further constituents that consist of at least one metal or metal oxide or a heat-convertible precursor thereof.
    Type: Grant
    Filed: September 9, 2003
    Date of Patent: August 14, 2007
    Assignee: Moltech Invent S.A.
    Inventors: Thinh T. Nguyen, Vittorio De Nora
  • Patent number: 7192511
    Abstract: The invention relates to a regulation method for an electrolytic cell for the production of aluminium by means of reduction of alumina dissolved in a molten cryolite bath, wherein a solidified bath ridge is formed on the internal walls of the pot, a quantity B, referred to as the “ridge variation indicator”, which is sensitive to the variation of said solidified bath ridge, is determined and at least one of the setting means of the pot (such as the anode-metal distance) and/or at least one control operation (such as the addition of AlF3) is modified as a function of the value obtained for said indicator. The indicator may be determined from electrical measurements on the pot and/or from measurements of the liquid metal surface area. The method according to the invention makes it possible to regulate an electrolytic cell effectively at currents of up to 500 kA with an electrolyte bath with an AlF3 content greater than 11% and reduce the number of AlF3 content measurements in the bath considerably.
    Type: Grant
    Filed: February 26, 2002
    Date of Patent: March 20, 2007
    Assignee: Aluminum Pechiney
    Inventors: Oliver Bonnardel, Claude Vanvoren
  • Patent number: 7135104
    Abstract: The invention relates to a regulation method for an electrolytic cell for the production of aluminium by means of reduction of alumina dissolved in a molten cryolite bath and comprises the addition, in the electrolyte bath, during pre-determined time intervals p referred to as “periods”, of a determined quantity Q(p) of aluminium trifluoride (AlF3) determined by the following equation: Q(p)=Qint(p)?Qc1(p)+Qt(p), where Qint(p) is an integral (or “self-adaptive”) term which represents the total actual AlF3 requirements of the cell and which is calculated from a mean Qm(p) of the actual AlF3 supplies made during the last N periods, Qc1 is a compensating term corresponding to the so-called “equivalent” quantity of AlF3 contained in the alumina added to the cell during the period p, and Qt(p) is a corrective term which is a typically increasing function of the difference between the measured bath temperature T(p) and the set-point temperature To.
    Type: Grant
    Filed: February 27, 2002
    Date of Patent: November 14, 2006
    Assignee: Aluminum Pechiney
    Inventors: Oliver Bonnardel, Claude Vanvoren
  • Patent number: 7118666
    Abstract: A method for protecting anode assemblies in an electrolytic cell from thermal shock is disclosed. The method generally involves applying a thermal insulating layer (8, 16) to the anode (2) prior to preheating the anode assembly in a furnace, where the layer (8, 16) protects the anode (2) from thermal shock during transfer from the preheat furnace to the electrolytic cell. In a preferred embodiment the anode (2) is attached to a castable plate (4) that is also protected from thermal shock by an insulating layer.
    Type: Grant
    Filed: February 25, 2003
    Date of Patent: October 10, 2006
    Assignee: Alcoa Inc.
    Inventors: Alfred F. LaCamera, Leroy E. D'Astolfo, James T. Burg
  • Patent number: 7077945
    Abstract: A method of producing aluminum in an electrolytic cell containing alumina dissolved in an electrolyte, the method comprising the steps of providing a molten salt electrolyte at a temperature of less than 900° C. having alumina dissolved therein in an electrolytic cell having a liner for containing the electrolyte, the liner having a bottom and walls extending upwardly from said bottom. A plurality of non-consumable Cu—Ni—Fe anodes and cathodes are disposed in a vertical direction in the electrolyte, the cathodes having a plate configuration and the anodes having a flat configuration to compliment the cathodes. The anodes contain apertures therethrough to permit flow of electrolyte through the apertures to provide alumina-enriched electrolyte between the anodes and the cathodes. Electrical current is passed through the anodes and through the electrolyte to the cathodes, depositing aluminum at the cathodes and producing gas at the anodes.
    Type: Grant
    Filed: May 8, 2003
    Date of Patent: July 18, 2006
    Assignee: Northwest Aluminum Technologies
    Inventors: S. Craig Bergsma, Craig W. Brown, Donald R Bradford, Robert J. Barnett, Michael B. Mezner
  • Patent number: 7033469
    Abstract: Ceramic inert anodes useful for the electrolytic production of aluminum are disclosed. The inert anodes comprise oxides of Ni, Fe and Al. The Ni—Fe—Al oxide inert anode materials have sufficient electrical conductivity at operation temperatures of aluminum production cells, and also possess good mechanical stability. The Ni—Fe—Al oxide inert anodes may be used to produce commercial purity aluminum.
    Type: Grant
    Filed: November 8, 2002
    Date of Patent: April 25, 2006
    Assignee: Alcoa Inc.
    Inventors: Douglas A. Weirauch, Jr., Joseph M. Dynys, Robert A. DiMilia, Siba P. Ray, Xinghua Liu, Frankie E. Phelps
  • Patent number: 6974534
    Abstract: Process for preparing highly purified silicon and optionally aluminum and silumin (aluminum silicon alloy) in the same cell, wherein silicate and/or quartz containing rocks are subjected to electrolysis in a salt melt containing fluoride, whereby silicon and aluminum are formed in the same bath, and aluminum formed, which may be low alloyed, flow to the bottom and is optionally drawn off, and deposit formed on the cathode is removed from the cathode and crushed, optionally together with the remaining electrolysis bath, concentrated sulfuric acid and then hydrochloric acid and water are added to the crushed material, liberated Si-grains float to the surface and are taken out and treated further as desired.
    Type: Grant
    Filed: February 21, 2002
    Date of Patent: December 13, 2005
    Assignee: Norwegian Silicon Refinery AS
    Inventor: Jan Reidar Stubergh
  • Patent number: 6921473
    Abstract: A method of removing oxygen from a solid metal, metal compound or semi-metal M1O by electrolysis in a fused salt of M2Y or a mixture of salts, which comprises conducting electrolysis under conditions such that reaction of oxygen rather than M2 deposition occurs at an electrode surface and that oxygen dissolves in the electrolyte M2Y and wherein, M1O is in the form of (sintered) granules or is in the form of a powder which is continuously fed into the fused salt. Also disclosed is a method of producing a metal foam comprising the steps of fabricating a foam-like metal oxide preform, removing oxygen from said foam structured metal oxide preform by electrolysis in a fused salt of M2Y or a mixture of salts, which comprises conducting electrolysis under conditions such that reaction of oxygen rather than M2 deposition occurs at an electrode surface. The method is advantageously applied for the production of titanium from Ti-dioxide.
    Type: Grant
    Filed: February 20, 2001
    Date of Patent: July 26, 2005
    Assignee: Qinetiq Limited
    Inventors: Charles M Ward-Close, Alistair B Godfrey
  • Patent number: 6866766
    Abstract: Methods and apparatus are disclosed for reducing sulfur impurities in aluminum electrolytic production cells in order to significantly increase current efficiency of the cells. An impurity reduction zone may be created in the bath of an inert anode cell by submerging a purifying electrode in the bath. In another embodiment, an oxygen barrier tube may be disposed in a portion of the bath. In a further embodiment, reductants such as aluminum, CO and/or CO2 are added to the bath. In another embodiment, electrode current is interrupted or electrodes are removed from selected regions of the cell in order to allow gaseous impurities to escape from the bath. Sulfur impurity levels may also be reduced in inert anode cells by scrubbing bath emissions from the cell before they are reintroduced into the cell, and by controlling sulfur impurity contents of materials added to the cell.
    Type: Grant
    Filed: August 5, 2002
    Date of Patent: March 15, 2005
    Assignee: Alcoa Inc.
    Inventors: Alfred F. LaCamera, Siba P. Ray, Xinghua Liu, Robert L. Kozarek, Jerry L. Roddy
  • Patent number: 6855241
    Abstract: An apparatus for the smelting of aluminum includes a melting furnace that is separate from and free of permanent interconnection with an electrolytic cell. The melting furnace is preferably an induction melting furnace that is designed for optimum heating and intermixing of a cryolite electrolyte and alumina, and the electrolytic cell is preferably designed for electrolysis of alumina without regard for heating, mixing or dissolving requirements. Methods for operating the apparatus are also described.
    Type: Grant
    Filed: April 22, 2002
    Date of Patent: February 15, 2005
    Inventor: Forrest M. Palmer
  • Publication number: 20040216995
    Abstract: An anode of a cell for the electrowinning of aluminium has a nickel-iron alloy outer portion which during use is covered with an integral iron-based oxide surface layer. The nickel-iron alloy outer portion comprises one or more rare earth metals that are substantially insoluble in nickel and iron. These rare earth metals are present in the outer portion in an amount which provides during use controlled diffusion of iron from the outer portion to the integral iron-based oxide surface layer.
    Type: Application
    Filed: June 15, 2004
    Publication date: November 4, 2004
    Inventors: Thinh T Nguyen, Vittorio De Nora
  • Patent number: 6800191
    Abstract: A method of producing aluminum in an electrolytic cell containing alumina dissolved in an electrolyte, the method comprising providing a molten salt electrolyte having alumina dissolved therein in an electrolytic cell. A plurality of anodes and cathodes having planar surfaces are disposed in a generally vertical orientation in the electrolyte, the anodes and cathodes arranged in alternating or interleaving relationship to provide anode planar surfaces disposed opposite cathode planar surfaces, the anode comprised of carbon. Electric current is passed through anodes and through the electrolyte to the cathodes depositing aluminum at the cathodes and forming carbon containing gas at the anodes.
    Type: Grant
    Filed: March 15, 2002
    Date of Patent: October 5, 2004
    Assignee: Northwest Aluminum Technologies
    Inventors: Robert J. Barnett, Michael B. Mezner, Donald R Bradford
  • Patent number: 6783655
    Abstract: A refractory boride body or coating made of a boride of titanium, chromium, vanadium, ziconium, hafnium, niobium, tantalum, molybednum and cerium is produced from a slurry of the refractory boride or a precursor in a collidal carrier preferably composed of two more different grades of the same colloidal carrier selected from colloidal alumina, yttria, ceria, thoria, zirconia, magnesia, lithia, monoaluminum phosphate and cerium acetate. The slurry can also comprise an organic additive selected from polyvinyl alcohol; polyacrylic acid; hydroxyy propyl methyl cellulose; polythylene glycol; ethylene glycol, butyl benzyl phthalate; ammonium polymethacrylate and mixtures thereof. The retractory boride body or coated body is useful as a component of aluminum electrowinning cells.
    Type: Grant
    Filed: June 27, 2002
    Date of Patent: August 31, 2004
    Assignee: Moltech Invent S.A.
    Inventors: Jainagesh Akkaraju Sekhar, Jean-Jacques Duruz, James Jenq Liu
  • Patent number: 6758991
    Abstract: Ceramic inert anodes useful for the electrolytic production of aluminum are disclosed. The inert anodes comprise an oxide of Ni and Fe having a controlled Ni/(Ni+Fe) mole ratio which results in a single-phase structure at the operation temperatures of aluminum production cells. The Ni and Fe oxide material may also have a single-phase structure at the sintering temperature of the material. The single-phase inert anode materials maintain sufficient electrical conductivity at the operating temperatures of the cell, and also possess good mechanical stability.
    Type: Grant
    Filed: November 8, 2002
    Date of Patent: July 6, 2004
    Assignee: Alcoa Inc.
    Inventors: Robert A. DiMilia, Joseph M. Dynys, Douglas A. Weirauch, Jr., Siba P. Ray, Xinghua Liu, Frankie E. Phelps
  • Publication number: 20040112757
    Abstract: The present invention relates to a method for production of molten aluminium by electrolysis of an aluminous ore. preferably alumina, in a molten salt mixture, preferably a sodium fluoride—aluminium fluoride-based electrolyte. The invention describes an electrolysis cell for said production of aluminium by use of essentially inert electrodes in a vertical an/or inclined position, where said cell design facilitates separation of aluminium and evolved oxygen gas by providing a gas separation chamber (14) arranged in communication with the electrolysis chamber (22), thus establishing an electrolyte flow between the electrolysis chamber (22) and the gas separation chamber (14).
    Type: Application
    Filed: November 5, 2003
    Publication date: June 17, 2004
    Inventors: Ole-Jacob Siljan, Stein Julsrud
  • Publication number: 20040089558
    Abstract: Ceramic inert anodes useful for the electrolytic production of aluminum are disclosed. The inert anodes comprise oxides of Ni, Fe and Al. The Ni—Fe—Al oxide inert anode materials have sufficient electrical conductivity at operation temperatures of aluminum production cells, and also possess good mechanical stability. The Ni—Fe—Al oxide inert anodes may be used to produce commercial purity aluminum.
    Type: Application
    Filed: November 8, 2002
    Publication date: May 13, 2004
    Inventors: Douglas A. Weirauch, Joseph M. Dynys, Robert A. DiMilia, Siba P. Ray, Xinghua Liu, Frankie E. Phelps
  • Publication number: 20040084324
    Abstract: A cell for the electrowinning of aluminium comprises a plurality of metal-based anodes facing and spaced apart from an aluminium-wettable drained cathode surface on which aluminium is produced. The drained cathode surface is formed along the cell by upper surfaces of a series of juxtaposed carbon cathode blocks, the cathode blocks extending across the cell. The drained cathode surface is divided into quadrants by a longitudinal aluminium collection groove along the cell and by a central aluminium collection reservoir across the cell. Pairs of quadrants across the cell are inclined in a V-shape relationship, the collection groove being located along the bottom of the V-shape and arranged to collect molten aluminium draining from the drained cathode surface and evacuate it into the aluminium collection reservoir during cell operation.
    Type: Application
    Filed: October 14, 2003
    Publication date: May 6, 2004
    Inventor: Vittorio de Nora
  • Patent number: 6723221
    Abstract: Insulation assemblies provide reduced heat loss from electrolytic metal production cells such as inert anode aluminum production cells. The insulation assemblies may be located at the end, side and/or center aisles of the cell, and may be supported by the anodes and deckplate of the cell. The assemblies reduce heat loss and bath vaporization losses, and permit stable operation of the inert anode cell.
    Type: Grant
    Filed: July 18, 2001
    Date of Patent: April 20, 2004
    Assignee: Alcoa Inc.
    Inventors: LeRoy E. D'Astolfo, Jr., Thomas R. Hornack, Raymond Miller, Robert L. Kozarek
  • Patent number: 6682643
    Abstract: A cell for the electrowinning of aluminium comprises a plurality of metal-based anodes facing and spaced part from an aluminium-wettable drained cathode surface on which aluminium is produced. The drained cathode surface is formed along the cell by upper surfaces of juxtaposed carbon cathode blocks, the cathode blocks extending across the cell. The drained cathode surface is divided into quadrants by a longitudinal aluminium collection groove along the cell and by a central aluminium collection reservoir across the cell. Pairs of quadrants across the cell are inclined in a V-shape relationship, the collection groove being located along the bottom of the V-shape and arranged to collect molten aluminium draining from the drained cathode surface and evacuate it into the aluminium collection reservoir during cell operation.
    Type: Grant
    Filed: October 16, 2001
    Date of Patent: January 27, 2004
    Assignee: Moltech Invent S.A.
    Inventor: Vittorio de Nora
  • Patent number: 6656340
    Abstract: A cell of advanced design for the production of aluminium by the electrolysis of an aluminium compound dissolved in a molten electrolyte, has a cathode (30) of drained configuration, and at least one non-carbon anode (10) facing the cathode both covered by the electrolyte (54). The upper part of the cell contains a removable thermic insulating cover (60) placed just above the level of the electrolyte (54). Preferably, the cathode (30) comprises a cathode mass (32) supported by a cathode carrier (31) made of electrically conductive material which serves also for the uniform distribution of electric current to the cathode mass (32) from current feeders (42) which connect the cathode carrier (31) to the negative busbars.
    Type: Grant
    Filed: June 4, 2002
    Date of Patent: December 2, 2003
    Assignee: Moltech Invent S.A.
    Inventors: Vittorio de Nora, Jainagesh A. Sekhar
  • Publication number: 20030201189
    Abstract: A method of producing aluminum in an electrolytic cell containing alumina dissolved in an electrolyte, the method comprising the steps of providing a molten salt electrolyte at a temperature of less than 900° C. having alumina dissolved therein in an electrolytic cell having a liner for containing the electrolyte, the liner having a bottom and walls extending upwardly from said bottom. A plurality of non-consumable Cu—Ni—Fe anodes and cathodes are disposed in a vertical direction in the electrolyte, the cathodes having a plate configuration and the anodes having a flat configuration to compliment the cathodes. The anodes contain apertures therethrough to permit flow of electrolyte through the apertures to provide alumina-enriched electrolyte between the anodes and the cathodes. Electrical current is passed through the anodes and through the electrolyte to the cathodes, depositing aluminum at the cathodes and producing gas at the anodes.
    Type: Application
    Filed: May 8, 2003
    Publication date: October 30, 2003
    Inventors: S. Craig Bergsma, Craig W. Brown, Donald R. Bradford, Robert J. Barnett, Michael B. Mezner
  • Patent number: 6638412
    Abstract: A method of inhibiting dissolution of a transition metal alloy anode (40) of an aluminium electrowinning cell comprises providing a sodium-inert layer (11,20,50,50′) on a sodium-active cathodic cell material (15), such as carbon, and electrolysing alumina dissolved in a sodium ion-containing molten electrolyte (30). Aluminium ions rather than sodium ions are cathodically reduced on the sodium-inert layer to inhibit the presence in the molten electrolyte (30) of soluble cathodically-produced sodium metal that constitutes an agent for chemically reducing the anode's transition metal oxides and anodically evolved oxygen, thereby inhibiting reduction of the anode's transition metal oxides by sodium metal and maintaining the evolved oxygen at the anode at a concentration such as to produce at the alloy/oxide layer interface stable and coherent transition metal oxides having a high level of oxidation.
    Type: Grant
    Filed: March 30, 2002
    Date of Patent: October 28, 2003
    Assignee: Moltech Invent S.A.
    Inventors: Vittorio De Nora, Jean-Jacques Duruz
  • Patent number: 6639667
    Abstract: Method for determining chemical constituents in an electrolysis cell for the production of metal, in particular aluminum, involving the use of light spectroscopy such as Raman spectroscopy that analyses the light emitted from the cell constituents and represents the light as a spectrum, wherein the analysis is performed directly in the cell while the cell is in its production mode, whereby the spectrum is analysed on the basis of reference spectrums based on known compositions, to determine chemical constituents in the cell. Also provided is an apparatus for performing this method.
    Type: Grant
    Filed: July 18, 2001
    Date of Patent: October 28, 2003
    Assignee: Norsk Hydro ASA
    Inventors: Bernard Gilbert, Trygve Foosnæs, Reidar Huglen
  • Publication number: 20030196911
    Abstract: An apparatus for the smelting of aluminum includes a melting furnace that is separate from and free of permanent interconnection with an electrolytic cell. The melting furnace is preferably an induction melting furnace that is designed for optimum heating and intermixing of a cryolite electrolyte and alumina, and the electrolytic cell is preferably designed for electrolysis of alumina without regard for heating, mixing or dissolving requirements. Methods for operating the apparatus are also described.
    Type: Application
    Filed: April 22, 2002
    Publication date: October 23, 2003
    Inventor: Forrest M. Palmer
  • Publication number: 20030196910
    Abstract: A method of producing aluminum in an electrolytic cell comprising the steps of providing an anode in a cell, preferably a non-reactive anode, and also providing a cathode in the cell, the cathode comprised of a base material having low electrical conductivity reactive with molten aluminum to provide a highly electrically conductive layer on the base material. Electric current is passed from the anode to the cathode and alumina is reduced and aluminum is deposited at the cathode. The cathode base material is selected from boron carbide, and zirconium oxide.
    Type: Application
    Filed: April 22, 2002
    Publication date: October 23, 2003
    Inventor: Craig W. Brown
  • Publication number: 20030196908
    Abstract: A method of producing aluminum from alumina in an electrolytic cell including using a cathode comprised of a base material having low electrical conductivity and wettable with molten aluminum to form a reaction layer having a high electrical conductivity on said base layer and a cathode bar extending from said reaction layer through said base material to conduct electrical current from said reaction layer.
    Type: Application
    Filed: April 22, 2002
    Publication date: October 23, 2003
    Inventor: Craig W. Brown
  • Publication number: 20030196909
    Abstract: A method of producing aluminum in a low temperature electrolytic cell containing alumina dissolved in an electrolyte. The method comprises the steps of providing a molten electrolyte having alumina dissolved therein in an electrolytic cell containing the electrolyte. A non-consumable anode and cathode is disposed in the electrolyte, the anode comprised of Cu—Ni—Fe alloys having single metallurgical phase. Electric current is passed from the anode, through the electrolyte to the cathode thereby depositing aluminum on the cathode, and molten aluminum is collected from the cathode.
    Type: Application
    Filed: April 22, 2002
    Publication date: October 23, 2003
    Inventors: S.Craig Bergsma, Craig W. Brown
  • Publication number: 20030183514
    Abstract: The present invention relates to an electrolytic cell for the production of aluminum comprising an anode and an electrolytic tank where the electrolytic tank comprises an outer shell made from steel and carbon blocks in the bottom of the tank forming the cathode of the electrolytic cells. At least a part of the sidewall of the electrolytic tank consists of one or more evaporation cooled panels, and wherein high temperature, heat resistant and heat insulating material is arranged between the evaporation cooled panels and the steel shell. The invention also includes a method for maintaining a crust on the sidewall of the tank and for recovering heat from the cooling medium inside the panel for transformation into electrical energy.
    Type: Application
    Filed: May 16, 2003
    Publication date: October 2, 2003
    Inventors: Jan Arthur Aune, Kai Johansen, Per Olav Nos
  • Patent number: 6620309
    Abstract: A measuring method is provided for monitoring of aluminum electrolysis cells, together with a corresponding measurement arrangement that includes an immersion sensor. In order to obtain reproducible measurements, the bath electrode of the immersion sensor is arranged on a carrier.
    Type: Grant
    Filed: May 14, 2002
    Date of Patent: September 16, 2003
    Assignee: Heraeus Electro-Nite International N.V.
    Inventor: Paul Verstreken
  • Patent number: 6607656
    Abstract: The present invention is directed to methods for preheating a molten salt electrolysis cell having inert anodes (24) using recuperative gas heating by combusting a first gas outside the cell chamber (20) in a combustion chamber (2) and using to heat a second gas in recuperator (8) which second gas us passed to the cell chamber (20). The inert anode can be a cermet inert anode.
    Type: Grant
    Filed: June 25, 2001
    Date of Patent: August 19, 2003
    Assignee: Alcoa Inc.
    Inventor: Roy A. Christini
  • Patent number: 6585879
    Abstract: A solid cryolite/alumina mixture is used as the anode in an electrolytic aluminum winning process. The mixture may be used in the form of a crust formed on the electrolytic cell.
    Type: Grant
    Filed: August 15, 2001
    Date of Patent: July 1, 2003
    Inventor: Ersan Ilgar
  • Patent number: 6565733
    Abstract: Method for the production of primary aluminium from alumina comprising the step of converting alumina into aluminium sulfide (Al2S3) and subsequently the separation of aluminium from aluminium sulfide wherein the conversion of alumina into aluminium sulfide is performed by reacting alumina with CS2 containing gas at a temperature Tal whereby the alumina is mainly &ggr;-alumina.
    Type: Grant
    Filed: December 17, 1999
    Date of Patent: May 20, 2003
    Assignee: Corus Aluminium Walzprodukte GmbH
    Inventors: Heiko Sportel, Cornelis Wilhelmus Franciscus Verstraten
  • Patent number: 6558525
    Abstract: A method of producing aluminum in an electrolytic cell containing alumina dissolved in an electrolyte, the method comprising the steps of providing a molten salt electrolyte at a temperature of less than 900° C. having alumina dissolved therein in an electrolytic cell having a liner for containing the electrolyte, the liner having a bottom and walls extending upwardly from said bottom. A plurality of non-consumable anodes and cathodes are disposed in a vertical direction in the electrolyte, the cathodes having a plate configuration and the anodes having a flat configuration to compliment the cathodes. The anodes contain apertures therethrough to permit flow of electrolyte through the apertures to provide alumina-enriched electrolyte between the anodes and the cathodes. Electrical current is passed through the anodes and through the electrolyte to the cathodes, depositing aluminum at the cathodes and producing gas at the anodes.
    Type: Grant
    Filed: March 1, 2002
    Date of Patent: May 6, 2003
    Assignee: Northwest Aluminum Technologies
    Inventors: Donald R. Bradford, Robert J. Barnett, Michael B. Mezner
  • Publication number: 20030070937
    Abstract: A cell for the electrowinning of aluminium comprising one or more anodes (10), each having a metal-based anode substrate, for instance comprising a metal core (11) covered with an metal layer 12, an oxygen barrier layer (13), one or more intermediate layers (14; 14A, 14B) and an iron layer (15). The anode substrate is covered with an electrochemically active transition metal oxide layer, in particular an iron oxide-based outside layer (16) such as a hematite-based layer, which remains dimensionally stable during operation in a cell by maintaining in the electrolyte a sufficient concentration of iron species and dissolved alumina. The cell operating temperature is sufficiently low so that the required concentration of iron species in the electrolyte (5) is limited by the reduced solubility of iron species in the electrolyte at the operating temperature, which consequently limits the contamination of the product aluminium by iron to an acceptable level.
    Type: Application
    Filed: November 25, 2002
    Publication date: April 17, 2003
    Inventors: Jean-Jacques Duruz, Vittorio De Nora, Olivier Crottaz
  • Patent number: 6540887
    Abstract: A cell for the electrowinning of aluminium comprises at least one non-carbon metal-based anode (10) having an electrically conductive metallic structure (12, 13, 15) which is suspended substantially parallel to a facing cathode (20, 21, 22). Such metallic structure (12, 13, 15) comprises a series of parallel horizontal anode members (15), each having an electrochemically active surface (16) on which during electrolysis oxygen is anodically evolved. The electrochemically active surfaces (16) are in a generally coplanar arrangement to form the active anode surface. The anode members are spaced apart from one another by inter-member gaps forming flow-through openings (17) for the circulation of electrolyte (30) driven by the escape of anodically-evolved oxygen. The electrolyte (30) may circulate upwardly and/or downwardly in the flow-through openings (17) and possibly around the anode structure (12, 13, 15).
    Type: Grant
    Filed: July 2, 2001
    Date of Patent: April 1, 2003
    Assignee: Moltech Invent SA
    Inventor: Vittorio de Nora
  • Patent number: 6533909
    Abstract: A bipolar cell for the electrowinning of aluminium has bipolar electrodes each comprising a carbon cathode body having on one side an active surface on which aluminium is produced and connected on the other side through an oxygen impermeable barrier layer to an electrochemically active anode layer having an oxygen evolving iron oxide-based outer surface. The anode layer may comprise a metal-based anode substrate and a transition metal oxide-based outside layer, in particular an iron oxide-based outside layer, which either is an applied layer or is obtainable by oxidising the surface of the anode substrate which contains iron. During operation, the anode layer can be kept dimensionally stable by maintaining in the electrolyte a concentration of transition metal species which are present as one or more corresponding transition metal oxides in the electrochemically-active layer.
    Type: Grant
    Filed: January 29, 2001
    Date of Patent: March 18, 2003
    Assignee: Moltech Invent S.A.
    Inventors: Jean-Jacques Duruz, Vittorio de Nora
  • Publication number: 20030034253
    Abstract: A solid cryolite/alumina mixture is used as the anode in an electrolytic aluminum winning process. The mixture may be used in the form of a crust formed on the electrolytic cell.
    Type: Application
    Filed: August 15, 2001
    Publication date: February 20, 2003
    Inventor: Ersan Ilgar
  • Patent number: 6521115
    Abstract: An anode of a cell for the electrowinning of aluminium comprises an iron-nickel alloy body or layer whose surface is oxidised to form a coherent and adherent outer iron oxide-based layer, in particular hematite, the surface of which is electrochemically active for the oxidation of oxygen ions and which reduces diffusion of oxygen from the electrochemically active surface into the iron-nickel alloy body or layer. The anode may be kept dimensionally stable during cell operation by maintaining a sufficient amount of dissolved alumina and iron species in the electrolyte to prevent dissolution of the outer oxide layer of the or each anode and by reducing the electrolyte operating temperature to limit dissolution of iron and by reducing the electrolyte operating temperature to limit dissolution of iron species in the electrolyte.
    Type: Grant
    Filed: January 29, 2001
    Date of Patent: February 18, 2003
    Assignee: Moltech Invent S. A.
    Inventors: Jean-Jacques Duruz, Vittorio de Nora, Olivier Crottaz
  • Patent number: 6521116
    Abstract: A cell for the electrowinning of aluminium comprising one or more anodes (10), each having a metal-based anode substrate, for instance comprising a metal core (11) covered with an metal layer 12, an oxygen barrier layer (13), one or more intermediate layers (14; 14A, 14B) and an iron layer (15). The anode substrate is covered with an electrochemically active transition metal oxide layer, in particular an iron oxide-based outside layer (16) such as a hematite-based layer, which remains dimensionally stable during operation in a cell by maintaining in the electrolyte a sufficient concentration of iron species and dissolved alumina. The cell operating temperature is sufficiently low so species and dissolved alumina.
    Type: Grant
    Filed: January 29, 2001
    Date of Patent: February 18, 2003
    Assignee: Moltech Invent S.A.
    Inventors: Jean-Jacques Duruz, Vittorio de Nora, Olivier Crottaz
  • Publication number: 20030010628
    Abstract: A cell for the electrowinning of aluminum using anodes (10) made from a alloy of iron with nickel and/or cobalt is arranged to produce aluminum of low contamination and of commercial high grade quality. The cell comprises a cathode (20) of drained configuration and operates at reduced temperature without formation of a crust or ledge of solidified electrolyte. The cell is thermally insulated using an insulating cover (65,65a,65b,65c) and an insulating sidewall lining (71). The molten electrolyte (30) is substantially saturated with alumina, particularly on the electrochemically active anode surface, and with species of at least one major metal present at the surface of the nickel-iron alloy based anodes (10). The cell is preferably operated at reduced temperature from 730° to 910° C. to limit the solubility of these metal species and consequently the contamination of the product aluminum.
    Type: Application
    Filed: April 27, 2002
    Publication date: January 16, 2003
    Inventors: Vittorio De Nora, Jean-Jacques Duruz
  • Publication number: 20020195350
    Abstract: The present invention is directed to methods for preheating a molten salt electrolysis cell having inert anodes (24) using recuperative gas heating by combusting a first gas outside the cell chamber (20) in a combustion chamber (2) and using to heat a second gas in recuperator (8) which second gas us passed to the cell chamber (20). The inert anode can be a cermet inert anode.
    Type: Application
    Filed: June 25, 2001
    Publication date: December 26, 2002
    Inventor: Roy A. Christini
  • Patent number: 6497807
    Abstract: A method of treating an electrolyte for use in the electrolytic reduction of alumina to aluminum employing an anode and a cathode, the alumina dissolved in the electrolyte, the treating improving wetting of the cathode with molten aluminum during electrolysis. The method comprises the steps of providing a molten electrolyte comprised of ALF3 and at least one salt selected from the group consisting of NaF, KF and LiF, and treating the electrolyte by providing therein 0.004 to 0.2 wt. % of a transition metal or transition metal compound for improved wettability of the cathode with molten aluminum during subsequent electrolysis to reduce alumina to aluminum.
    Type: Grant
    Filed: November 25, 2000
    Date of Patent: December 24, 2002
    Assignee: Northwest Aluminum Technologies
    Inventors: Craig W. Brown, Richard J. Brooks, Patrick B. Frizzle, Drago D. Juric
  • Patent number: 6471931
    Abstract: The process includes the steps of combining silica with the spent pot liner in order to convert a majority of the spent pot liner into silicon carbide. Specifically, the silica reacts with carbon in the spent pot liner to form silicon carbide. In order to form the silicon carbide, the materials are heated, such as in an electric resistance heater. The formed silicon carbide is free of contaminants and can be used for many useful purposes.
    Type: Grant
    Filed: November 19, 1999
    Date of Patent: October 29, 2002
    Assignee: Clemson University
    Inventor: Denis A. Brosnan
  • Patent number: 6440294
    Abstract: A process for repairing a hole in the crust of an electrolytic cell. The hole is repaired by covering it with a receptacle containing solid particles. The receptacle comprises a polymeric material. More preferably, the receptacle comprises a cellulosic material, such as paper, polymer-impregnated paper, or cardboard. A closed paper bag having at least two paper layers and weighing about 15-20 lb. (6.8-9.1 kg) is particularly preferred. When the electrolytic cell produces aluminum by electrolysis of alumina, the solid particles comprise an aluminum compound such as alumina, aluminum fluoride, cryolite, or a mixture of such compounds. Two preferred forms of alumina include smelting grade alumina (SGA) and alumina dust collected by an electrostatic precipitator (ESP dust).
    Type: Grant
    Filed: September 29, 1999
    Date of Patent: August 27, 2002
    Assignee: Alcoa Inc.
    Inventor: H. Wayne Cotten
  • Patent number: 6440279
    Abstract: A cermet inert anode having a reduced level of contaminating surface metal is disclosed. Methods for preparing cermet inert anodes and methods for treating cermet inert anodes are also disclosed. The methods generally use an oxidizing agent to convert metals on the surface of the anode to inert oxides and/or to otherwise remove the metal contaminants. The inert anodes of the present invention may be used in electrolytic reduction cells for the production of commercial purity aluminum, as well as other metals.
    Type: Grant
    Filed: December 28, 2000
    Date of Patent: August 27, 2002
    Assignee: Alcoa Inc.
    Inventors: Dennis R. De Capite, Gary P. Tarcy, Susanne M. Opalka, Don R. Careatti
  • Patent number: 6428675
    Abstract: A process for electrolyzing Al2O3 to produce aluminum in a low temperature bath containing AlCl3 and an alkali metal chloride. The bath is maintained at a temperature of less than about 300 ° C. Solid aluminum is produced at the cathode in a frozen layer of the alkali metal chloride.
    Type: Grant
    Filed: July 13, 2000
    Date of Patent: August 6, 2002
    Assignee: Alcoa Inc.
    Inventor: Kathleen M. Tomaswick
  • Patent number: 5035310
    Abstract: A clutch mechanism, particularly for automatically operated automotive transmissions, for engaging shift ranges of continuously variable transmissions or step-by-step variable transmissions, and having at least two independently axially movable clutch rings with clutch profiles which cooperate with respective corresponding mating clutch rings clutch profiles, a clutch carrier mounted on a transmission element for rotation therewith in a fixed axial position, and having fluid actuated pressure pistons for shifting the movable clutch rings toward the mating rings. The clutch system can be disengaged under load and requires a small construction space. It can be produced at low cost and is almost free from drag losses. Clutch times and clutch travels are short. The shift pressures are very low. In addition, several clutches can be combined into a compact and relatively small clutch assembly.
    Type: Grant
    Filed: November 13, 1989
    Date of Patent: July 30, 1991
    Inventor: Michael Meyerle