Patents by Inventor Harald Oosterhof

Harald Oosterhof has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11695169
    Abstract: The present disclosure concerns the production of precursor compounds for lithium battery cathodes. Batteries or their scrap are smelted in reducing conditions, thereby forming an alloy suitable for further hydrometallurgical refining, and a slag. The alloy is leached in acidic conditions, producing a Ni- and Co-bearing solution, which is refined. The refining steps are greatly simplified as most elements susceptible to interfere with the refining steps concentrate in the slag. Metals such as Co, Ni and Mn are then precipitated from the solution, forming a suitable starting product for the synthesis of new battery precursor compounds.
    Type: Grant
    Filed: April 17, 2020
    Date of Patent: July 4, 2023
    Assignee: UMICORE
    Inventors: Harald Oosterhof, Jean Scoyer, Lennart Scheunis, Bart Klaasen, Willem Callebaut
  • Publication number: 20220216534
    Abstract: The present disclosure concerns the production of precursor compounds for lithium battery cathodes. Batteries or their scrap are smelted in reducing conditions, thereby forming an alloy suitable for further hydrometallurgical refining, and a slag. The alloy is leached in acidic conditions, producing a Ni- and Co-bearing solution, which is refined. The refining steps are greatly simplified as most elements susceptible to interfere with the refining steps concentrate in the slag. Metals such as Co, Ni and Mn are then precipitated from the solution, forming a suitable starting product for the synthesis of new battery precursor compounds.
    Type: Application
    Filed: April 17, 2020
    Publication date: July 7, 2022
    Inventors: Harald OOSTERHOF, Jean SCOYER, Lennart SCHEUNIS, Bart KLAASEN, Willem CALLEBAUT
  • Patent number: 11155896
    Abstract: A process is divulged for the recovery of lithium from metallurgic slags comprising the steps of roasting spodumene to convert it from the alpha to the beta variant; reacting the beta variant with sulfuric acid, using a stoichiometric excess of acid; repulping the reaction product with water, forming an acidic slurry; neutralizing the acidic slurry to a pH between 5 and 7, by addition of at least one neutralizing agent; filtrating the neutralized slurry, thereby obtaining a lithium bearing solution and a residue; characterized that, in either one or both of the steps of repulping and neutralizing the acidic slurry, lithium-bearing metallurgic slag is added as neutralization agent. The lithium-bearing metallurgic slag is used to substitute at least part of the classic neutralizing agent. The lithium in the slag is released, and added to the lithium liberated from the spodumene.
    Type: Grant
    Filed: October 24, 2017
    Date of Patent: October 26, 2021
    Assignee: UMICORE
    Inventors: Harald Oosterhof, David Dupont
  • Publication number: 20210123119
    Abstract: The present invention relates to an enhanced process for the recovery of lithium from compositions also containing aluminum. An example of such a metallurgical compositions is the metallurgical slag that is obtained when recycling lithium-ion batteries or their derived products using a pyrometallurgical smelting process. Acid leaching of such a slag, followed by neutralization to precipitate aluminum leads to poor lithium yields as lithium tends to co-precipitate with aluminum. A process is presented wherein aluminum is selectively precipitated using a source of phosphate at a controlled pH preferably between 3 and 4.
    Type: Application
    Filed: March 26, 2018
    Publication date: April 29, 2021
    Inventors: Harald OOSTERHOF, David DUPONT, Wendy DROUARD
  • Publication number: 20200299804
    Abstract: A process is divulged for recovering metals from a metal-bearing material containing, in oxidized form, more than 1% of Co, a total of Co and Ni of more than 15%, and more than 1% Mg. comprising smelting said metal-bearing material in a bath furnace together with slag formers, thereby producing an alloy phase with more than 80% of the Co, and less than 1% of the Mg, and a slag phase, by applying reducing smelting conditions, and by selecting CaO, SiO2, and A1203 as slag -formers, in amounts to obtain a final slag composition according to the ratio's 0.25 <SiO2/Al2O3<2.5, 0.5 <SiO2/CaO<2.5, and MgO>10%; and separating the alloy phase from the slag phase. This process ensures quantitative recovery of Co in an alloy phase along with other metals such as Ni, while collecting Mg into a slag.
    Type: Application
    Filed: October 22, 2018
    Publication date: September 24, 2020
    Inventors: Isabel VERMEULEN, Harald OOSTERHOF, Luc COECK, Elien HACCURIA, Tijl CRIVITS, Thomas SUETENS, Michael BALTES
  • Publication number: 20190292629
    Abstract: A process is divulged for the recovery of lithium from metallurgic slags comprising the steps of roasting spodumene to convert it from the alpha to the beta variant; reacting the beta variant with sulfuric acid, using a stoichiometric excess of acid; repulping the reaction product with water, forming an acidic slurry; neutralizing the acidic slurry to a pH between 5 and 7, by addition of at least one neutralizing agent; filtrating the neutralized slurry, thereby obtaining a lithium bearing solution and a residue; characterized that, in either one or both of the steps of repulping and neutralizing the acidic slurry, lithium-bearing metallurgic slag is added as neutralization agent. The lithium-bearing metallurgic slag is used to substitute at least part of the classic neutralizing agent. The lithium in the slag is released, and added to the lithium liberated from the spodumene.
    Type: Application
    Filed: October 24, 2017
    Publication date: September 26, 2019
    Applicant: Umicore
    Inventors: Harald OOSTERHOF, David DUPONT
  • Patent number: 6514475
    Abstract: The invention is directed to a process for the production of sodium carbonate-anhydrate having a bulk density of at least 800 kg/m3, said process comprising: providing a suspension of solid sodium carbonate and/or solid sodium bicarbonate and/or solid double salts at least comprising one of sodium carbonate and sodium bicarbonate, in a mixture containing water and an organic, water miscible or partly water miscible solvent, which solvent influences the transition temperature below which sodium carbonate monohydrate is stable, whereby the type and the amount of solvent is selected in such way that the said transition temperature is below the boiling point of the said mixture of water and an organic, water miscible or partly water miscible solvent, in case sodium bicarbonate is present, converting the bicarbonate into carbonate, crystallising sodium carbonate anhydrate from said mixture at a temperature above the said transition temperature and below the said boiling point, and recovering the sodium carbona
    Type: Grant
    Filed: December 1, 1998
    Date of Patent: February 4, 2003
    Assignee: Technische Universiteit Delft
    Inventors: Harald Oosterhof, Gerda Maria van Rosmalen, Geert-Jan Witkamp, Johannes de Graauw
  • Patent number: 6334989
    Abstract: A process is presented in which anhydrous soda is crystallized and worked up to produce anhydrous soda crystals with a bulk density from 1300 to 1600 kg/m3. The process is characterized in that a solvent is used that allows the crystals to be formed and handled at atmospheric pressure in the presence of water without the monohydrate of soda being formed.
    Type: Grant
    Filed: December 22, 1998
    Date of Patent: January 1, 2002
    Assignee: Technische Universiteit Delft
    Inventors: Johannes Albertus Maria Meijer, Robert Michael Geertman, Harald Oosterhof, Geert-Jan Witkamp, Gerda Maria Van Rosmalen