Patents Assigned to Magna Imperio Systems Corp.
  • Publication number: 20210001275
    Abstract: The present invention provides a device capable of reducing the resistance and increasing the ion exchange rate in an electrodialysis, electro-deionization, or capacitive deionization apparatus and a method for producing said device. More specifically, the device is an electrodialysis spacer designed to have an ionically conductive surface of either cationic nature, anionic nature or a combination of both, which act as conductive pathways for ions as they move towards their respective electrode. The method of producing said spacer involves coating a substrate, such as a woven mesh, expanded netting, extruded netting or non-woven material, with perm-selective ionomer solutions and applying that substrate to an inert spacer material that has undergone chemical or mechanical etching.
    Type: Application
    Filed: August 26, 2020
    Publication date: January 7, 2021
    Applicant: Magna Imperio Systems Corp.
    Inventors: Brian M. MCDONALD, Ethan L. DEMETER
  • Publication number: 20200406194
    Abstract: Provided are electrodialysis systems for removing silica from a desalinated water stream and methods for removing silica from a desalinated water stream. For example, described are bipolar membrane electrodialysis devices for removing silica from water comprising one or more anion exchange membranes; one or more bipolar membranes; and a pair of electrodes comprising a positive electrode and a negative electrode. Also described are electrodialysis systems comprising: one or more electrodialysis devices for the removal of dissolved ions and one or more bipolar membrane electrodialysis devices, wherein a product inlet stream of the one or more bipolar membrane electrodialysis devices comprises the product outlet stream of the one or more electrodialysis devices.
    Type: Application
    Filed: June 24, 2020
    Publication date: December 31, 2020
    Applicant: Magna Imperio Systems Corp.
    Inventor: Ethan DEMETER
  • Publication number: 20200324249
    Abstract: Provided are electrodialysis systems comprising a plurality of electrodialysis devices, wherein each electrodialysis device of the plurality of electrodialysis devices has a product inlet stream, a product outlet stream, a brine inlet stream, and a brine outlet stream. The product inlet stream for a first electrodialysis device comprises the brine outlet stream of a second electrodialysis device. Further, a first portion of a feed stream is the brine inlet stream for the first electrodialysis device and a second portion of the feed stream is the brine inlet stream for the second electrodialysis device or a third electrodialysis device.
    Type: Application
    Filed: April 9, 2020
    Publication date: October 15, 2020
    Applicant: Magna Imperio Systems Corp.
    Inventors: Xin LI, Ethan DEMETER
  • Patent number: 10799834
    Abstract: The present invention provides a device capable of reducing the resistance and increasing the ion exchange rate in an electrodialysis, electro-deionization, or capacitive deionization apparatus and a method for producing said device. More specifically, the device is an electrodialysis spacer designed to have an ionically conductive surface of either cationic nature, anionic nature or a combination of both, which act as conductive pathways for ions as they move towards their respective electrode. The method of producing said spacer involves coating a substrate, such as a woven mesh, expanded netting, extruded netting or non-woven material, with perm-selective ionomer solutions and applying that substrate to an inert spacer material that has undergone chemical or mechanical etching.
    Type: Grant
    Filed: December 22, 2017
    Date of Patent: October 13, 2020
    Assignee: MAGNA IMPERIO SYSTEMS CORP.
    Inventors: Brian M. McDonald, Ethan L. Demeter
  • Publication number: 20200155967
    Abstract: Provided are spacers, ion-exchange devices comprising spacers, and methods of preparing spacers for improved fluid distribution and sealing throughout an ion-exchange device. These spacers can include an internal cavity surrounded by a perimeter of the spacer. The perimeter can have a first opening and a second opening within the perimeter, and the first opening and the second opening can be located on opposite sides of the internal cavity. The spacers can also have a first and second plurality of channels located within the perimeter, wherein each channel of the first and second plurality of channels extends from the internal cavity towards the first opening or the second opening.
    Type: Application
    Filed: November 15, 2019
    Publication date: May 21, 2020
    Applicant: Magna Imperio Systems Corp.
    Inventors: Brian M. MCDONALD, Michael James CONNOR, JR.
  • Publication number: 20200114314
    Abstract: The present disclosure is directed to ion-exchange systems and devices that can monitor key parameters related to the performance of the ion-exchange device. Specifically, the ion-exchange systems and devices disclosed herein can provide real time voltage drop across groups of membrane pairs using diagnostic spacer borders between the pairs. In addition, the ion-exchange systems and devices disclosed herein can monitor the compression force applied by the compression plates holding the ion-exchange systems and devices together.
    Type: Application
    Filed: October 11, 2019
    Publication date: April 16, 2020
    Applicant: Magna Imperio Systems Corp.
    Inventors: Michael James CONNOR, JR., Brian M. MCDONALD, Ethan DEMETER, Thomas BEALES
  • Patent number: 10604426
    Abstract: The present invention discloses an apparatus and a method to desalinate aqueous solution. The apparatus disclosed herein comprises at least two electrodes and at least one ion selective membrane in continuous contact with the aqueous solution that is contained in the internal space created by connecting a top manifold and a bottom manifold of the apparatus. The ion selective membrane(s) are arranged in such a manner as to enable reversing the flow of the charged particles by direct or indirect means. The electrodes in this apparatus may be made of material that reversibly reacts with chlorides in water.
    Type: Grant
    Filed: December 23, 2016
    Date of Patent: March 31, 2020
    Assignee: Magna Imperio Systems Corp.
    Inventors: Michael James Connor, Jr., Brian M. McDonald, Grant R. Page
  • Publication number: 20200001251
    Abstract: The present disclosure is directed an ion exchange membrane that has an increased affinity for a specific ionic species. The ion exchange membranes disclosed herein include ionophores that can increase ion-selectivity. These ion exchange membranes can be incorporated to various ion-exchange systems or devices that can selectively separate ions of value.
    Type: Application
    Filed: June 27, 2019
    Publication date: January 2, 2020
    Applicant: Magna Imperio Systems Corp.
    Inventors: Ethan DEMETER, Michael James CONNOR, JR., Brian M. MCDONALD
  • Publication number: 20190388843
    Abstract: The present disclosure is directed ion-exchange systems and devices that include composite ion-exchange membranes having 3D printed spacers on them. These 3D printed spacers can drastically reduce the total intermembrane spacing within the system/device while maintaining a reliable sealing surface around the exterior border of the membrane. By adding the spacers directly to the membrane using additive manufacturing, the amount of material used can be reduced without adversely impacting the manufacturability of the composite membrane as well as allow for complex spacer geometries that can reduce the restrictions to flow resulting in less pressure drop associated with the flow in the active area of the membranes.
    Type: Application
    Filed: June 24, 2019
    Publication date: December 26, 2019
    Applicant: Magna Imperio Systems Corp.
    Inventors: Ethan Demeter, Michael James Connor, JR., Chad Unrau, Brian M. McDonald
  • Publication number: 20150357651
    Abstract: Apparatuses for generating electrical power and/or treating water desalinating salt water are described, and may include a top manifold comprising one or more inlets, a bottom manifold comprising one or more outlets, a casing connecting the top manifold and the bottom manifold to define an internal space, and at least one electrode set disposed in the internal space. The electrode set may include a silver chloride cathode in fluid communication with a first fluid container including an aqueous solution, such as diluted sodium chloride solution, and a silver anode in fluid communication with a second fluid container including another aqueous solution, e.g., a higher concentration sodium chloride solution. The electrode set also may include a membrane that allows chloride and sodium ions to pass therethrough, and a connector electrically connecting the cathode to the anode to form an electrical circuit.
    Type: Application
    Filed: June 9, 2015
    Publication date: December 10, 2015
    Applicant: Magna Imperio Systems Corp.
    Inventor: Grant R. PAGE