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公开(公告)号:US20230053562A1
公开(公告)日:2023-02-23
申请号:US17795932
申请日:2021-02-04
发明人: Michael Stephen RYAN , Jeff GELORME , Jordi Calveras IBANEZ , Allison K. GREENE , Michael D. COPPOLA , Guozhen YANG , Kathryn SACKINGER
IPC分类号: B03D1/02 , B01D39/16 , C23C16/455 , C23C16/40 , C23C16/56 , B03D1/018 , C09D5/00 , C09D183/04 , C08J9/36
摘要: A composite medium for collecting mineral particles in an aqueous slurry has a polymer substrate deposited or penetrated with an inorganic material and further coated with a hydrophobic material. The hydrophobic material can be a hydrophobic silane or a hydrophobic polymer such as polysiloxane. Alternatively, the inorganic material deposited substrate is first reacted with a reactive silane and then coated with a hydrophobic polymer. The polymer substrate can be in the form of a spherical bead, a small cube, a filter or a conveyor.
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2.
公开(公告)号:US20230041631A1
公开(公告)日:2023-02-09
申请号:US16363447
申请日:2019-03-25
发明人: Alan D. KERSEY
摘要: The present invention provides new techniques related to magnetically controllable and/or steerable froth for use in separation processes of mineral-bearing ore and bitumen. Apparatus is provided featuring a processor configured to contain a fluidic medium having a material-of-interest and also having a surfactant with magnetic properties so as to cause the formation of a froth layer that contains at least some of the material-of-interest and is magnetically responsive; and a magnetic field generator configured to generate a magnetic field and provide non-mechanical mixing and steering/driving of the froth layer in the processor. The material-of-interest may be mineral-bearing ore particles or bitumen. The processor includes a flotation tank, a primary separation vessel (PSV), or a pipe, including a tailings pipeline. The pipe has a non-magnetic pipe section, and the magnetic field generator includes a magnetic coil arranged in relation to non-magnetic pipe section to generate the magnetic field and provide the non-mechanical mixing and steering/driving of the froth layer in the pipe.
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公开(公告)号:US20220410175A1
公开(公告)日:2022-12-29
申请号:US17780196
申请日:2020-12-11
发明人: Guillaume JAUNKY , Wolfgang GRIESEL , Allison GREENE , Michael D. COPPOLA , Kevin LASSILA , Michael RYAN , Paul DOLAN , Mark R. FERNALD , Paul J. ROTHMAN
摘要: An apparatus for removing mineral particles from loaded engineered collection media includes one or more solvents with sufficiently low surface tension. The engineered collection media are made of a synthetic material and have a surface coated with a hydrophobic material to provide a chemical bond between the mineral particles and the surface. The solvents together with a releasing mechanism are arranged to disrupt the chemical bond. Preferably, a surfactant or a nonionic surfactant is also added to the solvents.
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公开(公告)号:US20220016645A1
公开(公告)日:2022-01-20
申请号:US17490198
申请日:2021-09-30
发明人: Mark R. FERNALD , Paul J. ROTHMAN , Alan D. KERSEY
摘要: Apparatus uses hydrophobic synthetic beads to recover mineral particles in a slurry. The synthetic beads and the slurry are mixed into a mixture for processing. The apparatus has an interaction vessel installed in a section of pipeline. The interaction vessel is made from a pipeline folded or coiled into a compact struction having a continuous flow path. The interaction vessel has an input to receive the mixture of slurry and synthetic beads. The folded or coiled structure is used to increase the residence time of the mixture in the flow path, allowing more time for the mineral particles in the slurry to attach to the surface of the synthetic bead, while maintaining a small footprint. The interaction vessel may be formed from a number of loops of pipe section. The interaction vessel may be formed from one or more folded structures.
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公开(公告)号:US10814339B2
公开(公告)日:2020-10-27
申请号:US16334543
申请日:2017-09-19
发明人: Michael A. Davis
IPC分类号: B04C11/00 , E21B43/29 , E21B43/34 , G01N15/02 , G06F17/18 , D21G9/00 , G16Z99/00 , B01D21/26 , G01N15/00 , B01D17/00
摘要: A controller for controlling a slurry flowing from incoming piping and entering hydrocyclones arranged in a battery configuration, featuring a signal processor that receives signaling containing information about respective individual cyclone control signaling x(i) for each individual cyclone being evaluated and controlled, median control signaling {tilde over (x)} of all of the respective individual cyclone control signaling x(i), a scale factor Ai and a number N of the individual cyclones being evaluated and controlled; and determine/provides primary control signaling C containing information to control the slurry flowing from the incoming piping and entering the hydrocyclones arranged in the battery configuration by taking the median control signaling {tilde over (x)} and adding a correction factor, where the correction factor is determined by taking a sum of a respective difference of each of the respective individual cyclone control signaling x(i) and the median control signaling {tilde over (x)}, applying the scaling factor Ai to each respective difference, and normalizing the sum by the number N of the individual cyclones being evaluated and controlled, based upon the signaling received.
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6.
公开(公告)号:US20200173899A1
公开(公告)日:2020-06-04
申请号:US16638258
申请日:2018-08-22
发明人: John BIESAK , Douglas H. LOOSE , James Michael SULLIVAN , Paul DOLAN , Michael A. DAVIS , David Vincent NEWTON , Charles WINSTON
摘要: A system for sensing the volume and/or viscosity of a slurry (e.g., like concrete) contained in a rotating container or drum, having a sensor and a signal processor. The sensor is configured to attach inside a rotating container or drum having a known geometry, sense angular positions of the sensor and also sense associated entry and exit points when the sensor enters and exits the slurry, including concrete, contained in the rotating container or drum, and provide signaling containing information about the angular positions and the associated entry and exit points. The signal processor receives the signaling, and determines corresponding signaling containing information about a volumetric amount, or a viscosity, or both, of the slurry in the rotating container or drum, based upon the signaling received.
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公开(公告)号:US20200030819A1
公开(公告)日:2020-01-30
申请号:US16489977
申请日:2018-03-01
发明人: Paul J. ROTHMAN , Mark R. FERNALD , Paul DOLAN , Michael Stephen RYAN , Michael D. COPPOLA , Kevin Rodney LASSILA , Allison K. GREENE
IPC分类号: B03D1/02
摘要: A substrate for use in an aqueous slurry has a polymeric coating to provide a compliant and sticky surface. The polymer coating has a chemical to render the surface hydrophobic so as to attract hydrophobic or hydrophobized mineral particles in the slurry. The surface has a surface roughness structure in the nano-scale to micro-scale range. The substrate can take the form of a conveyor belt, a bead, a mesh, an impeller, a filter or a flat surface. The substrate can also be an open-cell foam. The polymeric coating can be modified with tackifiers; plasticizers; crosslinking agents; chain transfer agents; chain extenders; adhesion promoters; aryl or alky copolymers; fluorinated copolymers and/or additives; hydrophobicizing agents such as hexamethyldisilazane; inorganic particles such as silica, hydrophobic silica, and/or fumed hydrophobic silica; MQ resin; and/or other additives to control and modify the properties of the polymer.
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公开(公告)号:US12048946B2
公开(公告)日:2024-07-30
申请号:US16552515
申请日:2018-02-28
发明人: Paul J. Rothman , Mark R. Fernald , Paul Dolan , Michael Stephen Ryan , Timothy J. Bailey , Kirk Johnson , Patrick Tuxbury , Kevin Rodney Lassila , Michael D. Coppola , Allison K. Greene
CPC分类号: B05D1/28 , C08J9/365 , B05D1/40 , B05D3/12 , B05D2201/02 , B05D2252/10 , C08J2205/05
摘要: A process of coating an open-cell foam substrate includes the steps of arranging two rollers separated by a gap; positioning the substrate above the gap; providing a coating material onto the substrate, feeding the substrate through the gap so as to achieve a layer of the coating material on the substrate, wherein the coating material is selected from the group consisting of a polysiloxane derivative, acrylic polymer, butyl rubber, natural rubber, nitriles, styrene block copolymers with ethylene, styrene block copolymers with propylene, styrene block copolymers with isoprene and polyvinyl ether and modifying the coating with tackifiers; plasticizers; crosslinking agents; chain transfer agents; chain extenders; adhesion promoters; aryl or alky copolymers; fluorinated copolymers; hexamethyldisilazane; and silica.
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公开(公告)号:US11440026B2
公开(公告)日:2022-09-13
申请号:US17034258
申请日:2020-09-28
发明人: Paul J. Rothman , Mark R. Fernald , Peter A. Amelunxen , Paul Dolan , Timothy J. Bailey , Michael Ryan
摘要: Apparatus uses engineered collection media to recover mineral particles in a slurry. The apparatus has a tumbler cell and a rotation device to rotate the tumbler cell. The tumbler cell has a container to hold a mixture of the engineered media and the slurry containing the mineral particles. The container is turned such that at least part of the mixture in the upper part of the container is caused to interact with at least part of the mixture in the lower part of the container. As such, the contact between the engineered media and the mineral particles is enhanced. The surfaces of the engineered media are functionalized with a chemical having molecules to attract the mineral particles to the surfaces so as to form mineral laden media. After the mineral laden media are discharged from the tumbler cell, the mineral particles can be separated from the engineered media by stripping.
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公开(公告)号:US11247214B2
公开(公告)日:2022-02-15
申请号:US16552651
申请日:2018-02-28
摘要: A system for separating mineral particles of interest from an ore features mineral processing operations/stages/circuits configured to receive an ore, or mineral particles or concentrates formed by processing the ore, and provide processed mineral particles or concentrates, or a waste stream, for further enhanced mineral separation downstream processing; an enhanced mineral separation processor having a collection apparatus located therein, the collection apparatus having a collection surface configured with a functionalized polymer including molecules having a functional group configured to attract the mineral particles of interest to the collection surface, the enhanced mineral separation processor receive the processed mineral particles or concentrates, or the waste stream, and provide further enhanced downstream processed mineral particles or concentrates, or a further enhanced downstream processed waste stream; and a high intensity conditioning operation, stage or circuit configured to apply a high intensity form of energy to the processed mineral particles or concentrates, or the waste stream, prior to further enhanced mineral separation downstream processing by the enhanced mineral separation processor.
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