Patents Assigned to Technological Resources PTY
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Patent number: 6379424Abstract: A vessel which produces metal from a feed material by direct smelting is disclosed. The vessel contains a molten bath having a metal layer (15) and a slag layer (16) on the metal layer and a gas continuous space (31) above the slag layer. The vessel includes one or more lances/tuyeres (13) extending downwardly into the vessel and injecting an oxygen-containing gas into the vessel and injecting an oxygen-containing bas into the vessel above the metal and slag layer. The vessel includes a plurality of pairs of lances/tuyeres (11) extending downwardly and inwardly into the vessel and injecting feed material with a carrier gas into the molten bath so as to penetrate the metal layer and generate a bath-derived gas flow which carries molten material upwardly. The pairs of lances/tuyeres are spaced around the circumference of the vessel with one lance/tuyere of each pair injecting metalliferous feed material, at a temperature of at least 200° C.Type: GrantFiled: October 12, 2000Date of Patent: April 30, 2002Assignee: Technological Resources Pty. Ltd.Inventor: Rodney James Dry
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Patent number: 6379422Abstract: A process for direct smelting metalliferous feed material is disclosed. Iron oxides are partially reduced in a solid state in a pre-reduction vessel. The partially reduced iron oxides are smelted to molten iron in a direct smelting vessel which contains a molten bath of iron and slag and is supplied with a solid carbonaceous material as a source of reductant and energy and with an oxygen-containing gas for post-combusting carbon monoxide and hydrogen generated in the vessel. The direct smelting step generates an off-gas that contains sulphur and the off-gas is released from the direct smelting vessel. Part only of the off-gas released from the direct smelting vessel is used in the pre-reduction step to pre-reduce iron oxides in the pre-reduction vessel. Part only of the off-gas is used in the pre-reduction step in order to control the amount of sulphur that is returned with the partially reduced iron oxides to the direct smelting vessel.Type: GrantFiled: August 4, 2000Date of Patent: April 30, 2002Assignee: Technological Resources Pty. Ltd.Inventor: Rodney James Dry
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Patent number: 6368548Abstract: A direct smelting process for producing metals from metalliferous feed material is disclosed. The process includes forming a molten bath having a metal layer and a slag layer on the metal layer and smelting injected metalliferous feed material in the metal layer. The process also includes generating an upward gas flow from the metal layer which entrains molten material that is in the metal layer and carries the molten material into the slay layer and forms a region of turbulence at least at the interface of the slag layer and the metal layer. The process also includes injecting a gas into the slag layer via a plurality of lances/tuyeres and generating turbulence in an upper region of the slag layer and projecting splashes, droplets and streams of molten material from the slag layer into a top space of the vessel that is above the slag layer.Type: GrantFiled: June 2, 2000Date of Patent: April 9, 2002Assignee: Technological Resources Pty. Ltd.Inventor: John Alexander Innes
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Patent number: 6328783Abstract: A method of producing iron from iron carbide is disclosed. Solid iron carbide is injected into a molten bath comprising molten iron and slag and dissolves in the molten bath. An oxygen-containing gas is injected into a gas space above the surface of the molten bath to cause combustion of at least a portion of combustible material in the gas space. In addition splashes and/or droplets of molten iron and/or slag are ejected upwardly from the molten bath into the gas space above the quiescent bath surface to form a transition zone. The transition zone is a region in which heat generated by combustion of combustible material is transferred to the splashes and/or droplets of molten iron and/or slag and thereafter is transferred to the molten bath when the splashes and/or droplets of molten iron and/or slag return to the molten bath.Type: GrantFiled: June 17, 1999Date of Patent: December 11, 2001Assignee: Technological Resources PTY LTDInventor: Cecil Peter Bates
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Patent number: 6322745Abstract: A vessel which produces metal from a metalliferous feed material by a direct smelting process is disclosed. The vessel contains a molten bath having a metal layer (15) and a slag layer (16) on the metal layer and has a gas continuous space (31) above the slag layer. The vessel includes a hearth formed of refractory material having a base (3) and sides (55) in contact with the molten metal and side walls (5) which extend upwardly from the sides (55) of the hearth and are in contact with the slag layer and the gas continuous space. The side walls that contact the gas continuous space include water cooled panels (57) and a layer of slag on the panels.Type: GrantFiled: March 21, 2000Date of Patent: November 27, 2001Assignee: Technological Resources Pty. Ltd.Inventors: David John Leigh, Peter Damian Burke, Cecil Peter Bates, Ralph Gottfried Weber
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Patent number: 6289034Abstract: A process for producing metals from a metalliferous feed material in an electric furnace is disclosed. The process includes the steps of forming a molten bath having a metal layer and a slag layer on the metal layer in the furnace and supplying electrical energy to the furnace and converting the electrical energy to thermal energy and thereby contributing to the heat input requirements of the process. The process also includes injecting a carrier gas and a solid carbonaceous material into the molten bath via one or more than one solids injection lance/tuyere and causing molten material to be projected from the molten bath as splashes, droplets, and streams into a space above a nominal quiescent surface of the molten bath and forming a transition zone.Type: GrantFiled: March 21, 2000Date of Patent: September 11, 2001Assignee: Technologies Resources Pty. Ltd.Inventor: Cecil Peter Bates
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Patent number: 6270553Abstract: A method of producing metals and metal alloys from metal oxides is disclosed. The method comprises the steps of: (a) passing a gas at an elevated temperature through a bed of composite agglomerates that are formed from metal oxides and solid carbonaceous material and thereby reducing metal oxides in the agglomerates to metal and melting the metal; and (b) collecting the molten metal from the agglomerates.Type: GrantFiled: August 12, 1999Date of Patent: August 7, 2001Assignee: Technological Resources Pty. Ltd.Inventor: John Alexander Innes
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Patent number: 6267799Abstract: A method and an apparatus for producing metals and metal alloys from metal oxides in a metallurgical vessel containing a molten bath having a metal layer and a slag layer is disclosed. The method is characterized by injecting a carrier gas and a solid carbonaceous material and/or metal oxides into the molten bath from a side of the vessel that is in contact with the molten bath or from above the molten bath so that the solids penetrate the molten bath and cause molten metal to be projected into the gas space above the molten bath to form a transition zone. The method is also characterized by injecting an oxygen-containing gas into the gas space to post-combust reaction gases released from the molten bath into the transition zone.Type: GrantFiled: April 17, 2000Date of Patent: July 31, 2001Assignee: Technological Resources Pty. Ltd.Inventors: John Alexander Innes, Robin John Batterham, Rod James Dry
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Patent number: 6245285Abstract: A lance (5) for injecting a feed material, preferably a solid feed material, into a metallurgical vessel, is disclosed. The lance comprises: an inlet (21) for introducing the feed material into the lance; an outlet (23) at a forward end of the lance (5) for discharging the feed material from the lance (5); a hollow elongate member (25) that defines a passageway (33) for the feed material between the inlet (21) and the outlet (23) and is adapted to be cooled by a first cooling fluid; and an outer jacket (35) positioned around a section of the length of the member (25) and is adapted to be cooled by a second cooling fluid.Type: GrantFiled: June 2, 1999Date of Patent: June 12, 2001Assignee: Technological Resources Pty. Ltd.Inventors: Rodney J. Dry, Cecil Peter Bates, Ralph M. Weber
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Patent number: 6174346Abstract: The production of highly metallized feed, an intermediate product produced solely by gaseous reductants in two stage reduction processes of that kind, encounters sticking problems, which interfere with continuous processing and productivity. This problem has been overcome by exploiting a high volatile carbonaceous material, such as coal, as the reducing agent for the (partially reduced) oxide ore starting material in the solid state prereduction stage of a duplex process, in which the final stage consists of smelting, to produce the final metal (alloy). Intermediate products of the first stage are char from the coal, which avoids the sticking problem, partially reduced ore and CO and H2, which participate in the prereduction. The process has particular application to iron ores, such as haematite and magnetite and similar derivatives, namely, chromite and oxidic nickel ores.Type: GrantFiled: July 28, 1998Date of Patent: January 16, 2001Assignee: Technological Resource Pty. Ltd.Inventors: John Alexander Innes, Rodney James Dry
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Patent number: 6146441Abstract: A process for at least partially reducing iron oxides comprises forming a bed of reactants on a hearth of a rotary hearth furnace, the reactants comprising (a) mixture of iron ore fines and particulate carbonaceous material and/or (b) micro-agglomerates of iron ore fines and particulate carbonaceous material. The mixture and/or the micro-agglomerates are heated in the rotary hearth furnace to at least reduce the iron oxides. The "micro-agglomerates" are agglomerates that are less than 1400 microns (and preferably more than 500 microns) in diameter. The at least partially reduced product is preferably used in the production of metallic iron. An apparatus for at least partially reducing iron oxides is also claimed. The process permits operation of the rotary hearth furnace without requiring pelletisation of iron oxides fines and coal.Type: GrantFiled: June 5, 1998Date of Patent: November 14, 2000Assignee: Technological Resources Pty LtdInventor: John Alexander Innes
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Patent number: 6143054Abstract: A molten bath-based direct smelting process for producing metals from metal oxides (including partially reduced metal oxides) is disclosed. The process includes causing upward movement of splashes, droplets, and streams of molten material from a metal layer (15) of the molten bath which:(i) promotes strong mixing of metal in a slag layer (16) of the molten bath so that the slag layer (16) is maintained in a strongly reducing condition leading to FeO levels below 8 wt % based on the total weight of the slag in the slag layer (16); and(ii) extends into a space above a nominal quiescent surface of the molten bath to form a transition zone (23).Type: GrantFiled: September 25, 1998Date of Patent: November 7, 2000Assignee: Technological Resources Pty Ltd.Inventor: Rodney James Dry
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Patent number: 6122343Abstract: A method and an apparatus for analyzing a material, such as coal and iron ore, particularly with a view to identifying contaminants, is disclosed. The method and apparatus are based on the use of multiple (particularly dual) energy x-ray analysis with x-rays at different photon energies. X-rays are transmitted through a material and the detected x-rays are processed to produce an image of the material that combines together the separated images produced by the different photon energy x-rays. The combined image has enhanced contrast which minimizes the affects of non-compositional factors that otherwise would affect identifying constituents of the material.Type: GrantFiled: February 23, 1998Date of Patent: September 19, 2000Assignee: Technological Resources Pty LimitedInventor: Andrea Gabrielle Pidcock
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Patent number: 6083296Abstract: A method and an apparatus for producing metals and metal alloys from metal oxides in a metallurgical vessel containing a molten bath having a metal layer and a slag layer is disclosed. The method is characterized by injecting a carrier gas and a solid carbonaceous material and/or metal oxides into the molten bath from a side of the vessel that is in contact with the molten bath or from above the molten bath so that the solids penetrate the molten bath and cause molten metal to be projected into the gas space above the molten bath to form a transition zone. The method is also characterized by injecting an oxygen-containing gas into the gas space to post-combust reaction gases released from the molten bath into the transition zone.Type: GrantFiled: March 9, 1998Date of Patent: July 4, 2000Assignee: Technological Resources Pty. LimitedInventors: John Alexander Innes, Robin John Batterham, Rod James Dry
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Patent number: 5891214Abstract: The invention relates to a method for increasing the effectiveness of the smelting reduction of oxidic metal carriers, particularly iron ore, and improving the heat efficiency of the charged fuels in the smelting reduction process which takes place in a reaction vessel containing a molten bath with a layer of slag and wherein the reaction gases escaping from the molten bath are afterburned with oxidizing gases, the resulting heat is transferred to the molten bath and the reacting agents, ore and carbon, are fed to the smelt at least partly from the top through the gas space of the reaction vessel, wherein these reacting agents, ore and carbon, are added in a compact form to the molten bath as a composite material with or without further escort substances.Type: GrantFiled: April 22, 1996Date of Patent: April 6, 1999Assignee: Technological Resources Pty. Ltd.Inventors: John Innes, Gregory Hardie
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Patent number: 5885536Abstract: A process for alkaline leaching of a titaniferous material containing silica and alumina impurities in which spent leachant is recycled by treating to remove the silica and alumina impurities therefrom, by heating, maintaining the leachant at leaching temperature, or treating with an additive. The removal of the silica and alumina impurities by the method of the invention enables further use of the leachant.Type: GrantFiled: January 6, 1997Date of Patent: March 23, 1999Assignee: Technological Resources Pty LtdInventor: Michael John Hollitt
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Patent number: 5846510Abstract: A process for forming an aqueous chloride leachant from a spent aqueous chloride leach liquor which process comprises passing a spent aqueous chloride leach liquor and gases containing hydrogen chloride through a preconcentrator to form a concentrated aqueous chloride leach liquor by partial evaporation of water therefrom and absorption of hydrogen chloride; withdrawing a portion of the concentrated aqueous chloride leach liquor; roasting the remainder of the concentrated aqueous chloride leach liquor to generate a metal oxide, and gases containing hydrogen chloride; and passing the gases containing hydrogen chloride to the preconcentrator.Type: GrantFiled: July 15, 1997Date of Patent: December 8, 1998Assignee: Technological Resources Pty LtdInventors: Michael John Hollitt, Ross Alexander McClelland
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Patent number: 5730774Abstract: A process for removing impurities from a titaniferous material that has been subjected to thermal reduction and which includes a titaniferous phase of general formula M.sub.3 O.sub.5. The thermally reduced titaniferous material is subjected to a secondary heat treatment to covert the M.sub.3 O.sub.5 phase to a more readily leachable M.sub.2 O.sub.3 phase. This material is then cooled and leached in an aqueous acid solution containing hydrochloric acid or sulfuric acid, and the leachate is separated from the titaniferous material to form a purified titaniferous material.Type: GrantFiled: April 1, 1996Date of Patent: March 24, 1998Assignee: Technological Resources PTY Ltd.Inventors: Michael John Hollitt, Ross Alexander McClelland
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Patent number: 5640708Abstract: A method of treating inorganic solid waste in a bath of molten metal contained in a vessel (3) which has a space above the bath and a waste gas outlet (11) is disclosed. The method comprises injecting waste into the bath to form a primary reaction zone (13) in which there are reactions between the waste and the bath or in which the waste undergoes a change of phase to convert the waste into more readily recoverable or disposable products. The method further comprises injecting oxygen-containing gas towards the surface of the bath to form a secondary reaction zone (17) in a section above the bath through which oxidisable products released from the primary reaction zone (13) flow to reach the waste gas outlet (11) in the vessel (3) and in which the oxidisable products are oxidised and the heat released by such oxidation is transferred into the bath.Type: GrantFiled: January 27, 1995Date of Patent: June 17, 1997Assignee: Technological Resources Pty. LimitedInventors: David Stewart Conochie, Robin John Batterham, Terry Alan Matthews
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Patent number: 5613243Abstract: The specification discloses a process for stabilizing radionuclides extracted during the upgrading of minerals. The process comprises forming a composition of a radionuclide and a component and roasting the composition so that the component forms a crystalline phase having a structure that binds the radionuclides. Suitable components include a compound of a lanthanide and/or phosphorus and zirconia. Zirconia in its cubic form is useful in stabilizing uranium and thorium.Type: GrantFiled: April 10, 1995Date of Patent: March 18, 1997Assignee: Technological Resources Pty. Ltd.Inventors: Michael J. Hollitt, Ross A. McClelland, Matthew J. Liddy, Kaye P. Hart, Peter J. McGlinn