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公开(公告)号:US12168196B2
公开(公告)日:2024-12-17
申请号:US18368567
申请日:2023-09-14
Applicant: Bentaus, LLC
Inventor: Robert Craig Davidoff
Abstract: The present disclosure relates to a carbon capture adapter that may attach to high air flow locations. A carbon capture adapter may utilize the air flow of a high air flow location to allow for capture of unfiltered air, allowing for carbon removal and the scrubbing of the unfiltered air. The carbon capture adapter may comprise carbon sensors that may detect carbon levels of the air before and after the carbon has been scrubbed or removed from the ambient air. The carbon capture adapter may capture and transform the carbon into secondary substances that may be useful unto itself. The carbon capture adapter will have all inputs, outputs, processes, and flows that meet all aspects of a closed loop system that is specifically designed for CCS. The carbon capture adapter may be at least temporarily secured to at least one portion of a vehicle.
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公开(公告)号:US12145160B2
公开(公告)日:2024-11-19
申请号:US18524388
申请日:2023-11-30
Applicant: ENERCORP ENGINEERED SOLUTIONS INC.
Inventor: Ryan Thomas Bowley
Abstract: A cyclone sand separator includes a cyclone body having an inlet, a fluid outlet, and a solids outlet. The inlet is configured to receive a mixed fluid including a solids portion and a fluids portion. The solids outlet is configured to receive the solids portion separated from the fluids portion. The fluid outlet is configured to receive the fluids portion separated from the solids portion. The cyclone sand separator also includes a plurality of inlet inserts having different geometries. The inlet inserts are each configured to be positioned at least partially in the inlet. The inlet inserts are rigid and configured to be fixed in place at least partially in the inlet, such that the inlet inserts do not move with respect to the inlet. The cyclone sand separator also includes a flange configured to be coupled to the selected inlet insert.
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公开(公告)号:US20240359121A1
公开(公告)日:2024-10-31
申请号:US18646439
申请日:2024-04-25
Applicant: Royco Robotics, LLC
Inventor: Antonio KEKLIKIAN , Nikolay SPIRIDONOV , Suman Deb ROY , Cole STOUT
Abstract: A separation apparatus and a method for separating solid particles from a fluid are described. The separation apparatus includes a first conical surface for receiving a first cyclone to separate first solid particles and a second conical surface below the first conical surface for receiving a second cyclone to separate second solid particles. The separation apparatus also includes a sedimentation housing below the second conical surface for collecting the first solid particles and the second solid particles. The method includes forming a first cyclone to separate first solid particles from fluid, forming a second cyclone to separate second solid particles from the fluid, and collecting the first solid particles and the second solid particles.
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公开(公告)号:US12036566B2
公开(公告)日:2024-07-16
申请号:US18485807
申请日:2023-10-12
Applicant: Supercritical Fluid Technologies, Inc.
Inventor: Andrew Cloud , Kenneth Richard Krewson , Kenneth Joseph James
CPC classification number: B04C5/081 , B01D45/12 , B04C5/04 , B04C5/103 , B01D15/24 , B01D15/40 , G01N30/84
Abstract: A gas-liquid separator system that can effectively and efficiently separate liquid from a streaming mixture having a liquid portion and a gas portion. The gas-liquid separator may be used in supercritical fluid chromatography application where an analyte is separated from a carrier gas, such as carbon dioxide. A streaming mixture is dispensed into a separation chamber formed by a spindle shaft configured inside of a shroud cavity. The shroud cavity has a plurality of concave channels along the inner surface and extend down to an outlet end. The concave channels create pressure variations that promote the liquid portion to condense onto the inner surface of the shroud and flow down to the exhaust port. A spherical collection portion is configured on the outlet of the shroud and the condensed liquid flows thereover and down along a cone portion and off the cone tip.
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公开(公告)号:US12036497B2
公开(公告)日:2024-07-16
申请号:US17318481
申请日:2021-05-12
Applicant: Vanair Manufacturing, Inc.
Inventor: Garrett M. Griggs , Kai Justice , Jeff Scott Rohl , John G. Chappell , Ralph Kokot
CPC classification number: B01D45/12 , B01D21/0042 , B01D45/00 , B04C11/00 , F04C29/026
Abstract: A gas-liquid separator and method and air compressor system. The gas-liquid separator includes a separator tank having wet side and dry side chambers. The wet side chamber separates and collects liquids from pressurized air that enters through a tank inlet. A separation valve inlet port connects the wet side chamber with the dry side chamber and allows moist air to pass from the wet side chamber to the dry side chamber and prevents collected liquids from passing from the wet side chamber to the dry side chamber. A separation valve assembly opens the separation valve inlet port when pressurized air is forced into the wet side chamber and a pressure is met and/or exceeded and to close the separation valve inlet port when pressurized air is not being forced into the wet side chamber and pressure falls below the pressure.
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公开(公告)号:US20240140739A1
公开(公告)日:2024-05-02
申请号:US18400717
申请日:2023-12-29
Applicant: The Charles Machine Works, Inc.
Inventor: Cody L. Sewell
CPC classification number: B65G67/04 , B01D45/12 , B01D50/20 , B65G33/10 , B65G33/14 , E02F7/00 , E02F5/08
Abstract: An offloading vacuum system. The system has a tank to capture debris from an excavation site. The debris is pulled into the tank due to a blower pulling air into an attached hose. An internal conveyor within the tank conveys material to an offloading hub. The offloading hub has a ground-facing door which opens to deposit debris into an external conveyor. The external conveyor, when deployed, can move debris from below the tank to a dump container with a wall greater than a height of the tank.
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公开(公告)号:US20230356136A1
公开(公告)日:2023-11-09
申请号:US18044999
申请日:2021-08-13
Inventor: Hasan AYARTURK
IPC: B01D47/10 , B01D45/12 , B01D50/40 , B03C3/017 , B03C3/08 , B03C3/09 , B03C3/15 , B03C3/41 , B03C3/47
CPC classification number: B01D47/10 , B01D45/12 , B01D50/40 , B03C3/017 , B03C3/08 , B03C3/09 , B03C3/15 , B03C3/41 , B03C3/47
Abstract: An air-solution regeneration device is provided for providing equalization of the vapor pressure of a solution, which exists in a solution chamber, to the vapor pressure of the air which exists in the medium. Accordingly, the subject matter air-solution regeneration device comprises a solution pump for increasing the pressure of the solution which exists in said solution chamber; an air-solution injector which is in venturi type and which has a drive end which receives the solution, having increased pressure, as input, a suction end for realizing air suctioning when there is liquid input, having increased pressure, through the drive end, a spray end where the solution, received from said drive end, and the air, suctioned from said suction end, are sprayed; an electrostatic filter where the air-solution mixture is sprayed; and an air-solution separator which has a centrifuge unit for providing separation of the air-solution mixture, and an output chamber.
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公开(公告)号:US20230321577A1
公开(公告)日:2023-10-12
申请号:US18323913
申请日:2023-05-25
Applicant: MANN+HUMMEL GmbH
Inventor: Dennis Stark , Beate Brandt
CPC classification number: B01D45/12 , B01D46/0005 , B01D46/24 , B01D46/2414 , B01D46/52 , F02M35/02 , F02M35/02416 , F02M35/02441 , F02M35/02483 , B01D2271/02 , B01D2271/027 , B01D2273/30 , B01D2275/208
Abstract: A filter element, which has an oval cross-section in a longitudinal direction thereof and includes a circumferential sealing device for, in particular, radially sealing the filter element off from a filter holder for the filter element, wherein the sealing device has two first curvature sections arranged one facing the other and two second curvature sections arranged one facing the other, wherein the first curvature sections each have a first radius of curvature and the second curvature sections each have a second radius of curvature, and wherein the first radius of curvature differs from the second radius of curvature.
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公开(公告)号:US11673090B2
公开(公告)日:2023-06-13
申请号:US17466917
申请日:2021-09-03
Applicant: enVerid Systems, Inc.
Inventor: Udi Meirav , Israel Biran , Sharon Perl-Olshvang , Shawn Brown
IPC: B01D50/00 , B01D45/12 , B01D46/00 , B01D53/14 , B01D53/04 , B01D53/30 , B01D46/44 , B01D46/46 , B01D46/62 , B01D50/20 , F24F13/28 , F24F8/15
CPC classification number: B01D53/0462 , B01D45/12 , B01D46/0005 , B01D46/0036 , B01D46/44 , B01D46/46 , B01D46/62 , B01D50/20 , B01D53/14 , B01D53/30 , B01D2253/102 , B01D2253/104 , B01D2253/106 , B01D2253/108 , B01D2253/204 , B01D2253/25 , B01D2257/106 , B01D2257/502 , B01D2257/504 , B01D2257/70 , B01D2257/708 , B01D2258/06 , B01D2259/4508 , F24F8/15 , F24F13/28 , Y02C20/40
Abstract: In some embodiments, an indoor air cleaning apparatus and a method for removing at least a portion of at least one type of gas from an indoor airflow are disclosed. The apparatus may comprise a cabinet; at least one sorbent bank comprising at least one cartridge; a fan assembly comprising at least one housing including at least one housing inlet and at least one housing outlet, at least one motor and at least one impeller; and a heating element configured to operate in at least one of two modes: an active mode and an inactive mode; and a controller configured to operate in at least two modes: an adsorption mode and a regeneration mode.
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公开(公告)号:US11565211B2
公开(公告)日:2023-01-31
申请号:US17495613
申请日:2021-10-06
Applicant: LG ELECTRONICS INC.
Inventor: Sung Ho Kim
IPC: B01D50/20 , H04N21/472 , H04N21/431 , H04N21/482 , B01D27/06 , B01D45/12 , B01D46/00 , B01D46/10 , B01D46/42 , B01D46/52
Abstract: A method for controlling display of information on a display device includes storing information corresponding to a broadcast program guide. When a signal is received based on activation of a specific key while the first broadcast program is displayed on a screen, information on the first broadcast program and information on a second program to be broadcast after the first broadcast program is detected. The first broadcast program is then displayed in a first region of the screen simultaneously with the information on the first broadcast program and the information on the second broadcast program in a second region of the screen.
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