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公开(公告)号:US20230249123A1
公开(公告)日:2023-08-10
申请号:US18179750
申请日:2023-03-07
申请人: Genesis Systems LLC
发明人: David J. Stuckenberg
IPC分类号: B01D53/18 , B01D5/00 , B01D53/26 , B01D53/00 , E03B3/28 , F25D17/06 , F24F3/14 , B01F23/20 , B01F23/21 , A01G9/14 , A01G9/24
CPC分类号: B01D53/18 , B01D5/0003 , B01D5/009 , B01D53/263 , B01D53/002 , E03B3/28 , F25D17/06 , F24F3/1417 , B01F23/20 , B01F23/214 , A01G9/14 , A01G9/24 , A01G9/247 , B01D2257/80 , B01D5/0051 , B01D5/0081 , Y02A20/00
摘要: An atmospheric water generation system comprises water vapor consolidation systems configured to increase the relative humidity of a controlled air stream prior to condensing water from the controlled air stream. The water vapor consolidation system comprises a fluid-desiccant flow system configured to decrease the temperature of the desiccant to encourage water vapor to be absorbed by the desiccant from an atmospheric air flow. The desiccant flow is then heated to encourage water vapor evaporation from the desiccant flow into a controlled air stream that circulates within the system. The humidity of the controlled air stream is thereby increased above the relative humidity of the atmospheric air to facilitate condensation of the water vapor into usable liquid water.
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公开(公告)号:US11840399B2
公开(公告)日:2023-12-12
申请号:US17094333
申请日:2020-11-10
申请人: Gregory E. Young , Zane A. Miller
发明人: Gregory E. Young , Zane A. Miller
IPC分类号: B65D90/44 , C23F11/02 , B65D81/26 , C23F11/00 , C23F15/00 , B65D88/76 , F17C3/10 , F17C3/12 , B64F1/28 , F17C3/02
CPC分类号: B65D90/44 , B65D81/26 , B65D88/76 , C23F11/00 , C23F11/02 , C23F15/00 , F17C3/10 , F17C3/12 , B64F1/28 , F17C3/022 , F17C2205/0329 , Y02A20/00
摘要: A hydrocarbon tank system environment corrosion inhibitor includes use of inert gas, preferably Nitrogen, to blanket ullage and interstice through the tank system. Blanket gas is provided is controller into coupling to access ullages. Blanket gas is provided upon fueling events to stabilize the pressure in the system and prevent entry of atmospheric air and water (vapor). Blanket gas may be continuously run into the ullage and/or other spaces in tank system. A controlled system allows for monitoring of pressures in the tank, and thereby identifies pressure events and even leaks in system due to unusual events, or general loss of pressure.
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公开(公告)号:US11782460B2
公开(公告)日:2023-10-10
申请号:US17242144
申请日:2021-04-27
申请人: WINT WI Ltd
发明人: Shay Ravid , Avy Tahan , Dror Galron
IPC分类号: E03B7/02 , E03B7/09 , G05D7/00 , G01F1/00 , A61B5/00 , G01F15/075 , G01F15/06 , G01D4/00 , G06Q20/14 , G06Q50/06 , G01F7/00 , G01M3/28 , E03B7/07 , G05B19/406 , G05D7/06 , G05B13/02 , G01F15/063 , G01F15/00 , G08B21/18 , F17D5/06 , H04L12/28 , F16K37/00 , G01D4/14 , G01M3/00 , E03B1/02 , E03B1/00 , G01M3/26
CPC分类号: G05D7/00 , A61B5/4088 , A61B5/4255 , A61B5/6891 , A61B5/7282 , A61B5/747 , E03B7/02 , E03B7/071 , E03B7/072 , E03B7/09 , F16K37/0025 , F17D5/06 , G01D4/004 , G01D4/14 , G01F1/00 , G01F7/00 , G01F15/005 , G01F15/063 , G01F15/066 , G01F15/068 , G01F15/0755 , G01M3/2807 , G05B13/026 , G05B19/406 , G05D7/0635 , G05D7/0676 , G06Q20/145 , G06Q50/06 , G08B21/187 , H04L12/2825 , E03B1/00 , E03B1/02 , G01M3/00 , G01M3/26 , G05B2219/37371 , H04L2012/285 , Y02A20/00 , Y02A20/20 , Y02B90/20 , Y04S20/30
摘要: A system is provided for tracking, in a distributed water infrastructure, water usage by category. The system may comprise at least one processor configured to receive from at least one sensor associated with the distributed water infrastructure signals indicative of water usage in the distributed water infrastructure. The system may, based on the signals indicative of water usage, construct a plurality of profiles. The system may assign each profile to one of a plurality of water usage categories. The system may collect, from the at least one sensor, signals indicative of water usage for substantially all water delivered through the distributed water infrastructure in a time period. The system may construct a plurality of water usage profiles in the aggregate, encompassing substantially all water delivered through the distributed water infrastructure in the time period. The system may assign each constructed water usage profile to one of the plurality of water usage categories. The system may output, for display, water usage for the time period for each of the plurality of water usage categories.
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公开(公告)号:US11707710B2
公开(公告)日:2023-07-25
申请号:US17081898
申请日:2020-10-27
发明人: Cody Friesen , Elise Switzer , Heath Lorzel
CPC分类号: B01D53/261 , B01D53/0454 , B01D53/06 , C02F1/325 , C02F1/44 , C02F1/68 , E03B3/28 , B01D2259/4009 , C02F2201/3222 , C02F2209/42 , C02F2303/04 , Y02A20/00
摘要: This disclosure includes systems and methods for extracting water vapor from atmospheric air and, more particularly, but not by way of limitation, systems and methods for optimizing liquid water production from air, in some instances, taking into account diurnal variations. The systems comprise an adsorption zone an a desorption zone, an actuator to move a desiccant between the adsorption zone and the desorption zone. The liquid water production is optimized based, at least in part, on measurements of one or more of: an ambient air temperature, ambient air relative humidity, and a level of solar insolation.
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公开(公告)号:US11701456B2
公开(公告)日:2023-07-18
申请号:US16820153
申请日:2020-03-16
发明人: Roger Caluya , Martin Joseph Crnkovich , Bert D. Egley , David Charles Griffith, Jr. , Roland Levin , Houssein Nasseri , Kulwinder S. Plahey , David Yuds
CPC分类号: A61M1/1656 , A61M1/16 , A61M1/166 , A61M1/167 , A61M1/1666 , A61M1/1668 , A61M1/28 , B01D5/0006 , H02J7/35 , H02S10/10 , H02S40/38 , A61M2205/3606 , A61M2205/825 , A61M2205/8206 , A61M2205/8275 , A61M2205/8293 , E03B3/28 , Y02A20/00
摘要: A dialysis system (e.g., a hemodialysis (HD) system) can be designed to operate in alternative environments, such as disaster relief settings or underdeveloped regions. The dialysis system can include a solar panel for generating electricity to power the dialysis machine and an atmospheric water generator for extracting water from ambient air. The extracted water can be used to generate dialysate and saline on-site. One or more of the components of the dialysis machine can be discrete components that are configured to facilitate fast shipping and simple on-site assembly (e.g., at a remote location). In some implementations, the discrete components may be configured to be attached to an existing dialysis system (e.g., a dialysis system designed for operation in a traditional environment) to permit the dialysis system to operate in an alternative environment.
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公开(公告)号:US20230390696A1
公开(公告)日:2023-12-07
申请号:US18206473
申请日:2023-06-06
发明人: Cody Friesen , Elise Switzer , Heath Lorzel
CPC分类号: B01D53/261 , B01D53/06 , E03B3/28 , B01D53/0454 , C02F1/325 , C02F1/44 , C02F1/68 , B01D2259/4009 , Y02A20/00 , C02F2201/3222 , C02F2209/42 , C02F2303/04
摘要: This disclosure includes systems and methods for extracting water vapor from atmospheric air and, more particularly, but not by way of limitation, systems and methods for optimizing liquid water production from air, in some instances, taking into account diurnal variations. The systems comprise an adsorption zone and a desorption zone, an actuator to move a desiccant between the adsorption zone and the desorption zone. The liquid water production is optimized based, at least in part, on measurements of one or more of: an ambient air temperature, ambient air relative humidity, and a level of solar insolation.
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公开(公告)号:US11773571B1
公开(公告)日:2023-10-03
申请号:US17804084
申请日:2022-05-25
发明人: Zehua Shao , Xiaojun Wei , Zhihui Wen , Yong Li , Bin Liu
摘要: The present disclosure provides a method and system for managing public water in a smart city. The method may be performed by an urban public water management platform. The method may include: obtaining initial rainwater data in at least one area, the initial rainwater data may include rainfall data and rainwater collection data of at least one rainwater collection system, each of the at least one rainwater collection systems corresponding to at least one rainwater collection mode; determining the amount of purified rainwater during a first period corresponding to the at least one rainwater collection mode according to the initial rainwater data in the at least one area; and determining a rainwater storage plan during a second period based on the amount of purified rainwater during the first period corresponding to the at least one rainwater collection mode.
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公开(公告)号:US11667543B2
公开(公告)日:2023-06-06
申请号:US17578168
申请日:2022-01-18
申请人: Verno Holdings, LLC
IPC分类号: C02F1/04 , B01D1/22 , B01D1/24 , B01D1/00 , B01D3/08 , C02F1/08 , F03B13/00 , F22B3/06 , C02F103/08 , C02F1/18
CPC分类号: C02F1/048 , B01D1/0082 , B01D1/223 , B01D1/225 , B01D1/228 , B01D1/24 , B01D3/08 , C02F1/08 , F03B13/00 , F22B3/06 , C02F1/18 , C02F2103/08 , C02F2209/005 , C02F2209/02 , C02F2209/40 , C02F2209/42 , Y02A20/00 , Y02A20/124 , Y02W10/37
摘要: A process for decontaminating a fluid and recovered vapor, particularly processing and recycling contaminated water, utilizing a vaporizer-desalination unit to separate a contaminated water flow into a contaminated disposal flow and a clean water vapor flow. The contaminated disposal flow may be dried and separated into recovered minerals utilizing heat from the clean water vapor flow to dry the contaminated disposal flow.
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公开(公告)号:US11662748B2
公开(公告)日:2023-05-30
申请号:US15819813
申请日:2017-11-21
申请人: WINT WI Ltd
发明人: Alon Haim Gal , Dror Galron
IPC分类号: G05D7/00 , G01F1/00 , A61B5/00 , G01F15/075 , G01F15/06 , G01D4/00 , G06Q20/14 , G06Q50/06 , G01F7/00 , G01M3/28 , E03B7/07 , G05B19/406 , G05D7/06 , G05B13/02 , G01F15/063 , E03B7/02 , E03B7/09 , G01F15/00 , G08B21/18 , F17D5/06 , H04L12/28 , F16K37/00 , G01D4/14 , G01M3/00 , E03B1/02 , E03B1/00 , G01M3/26
CPC分类号: G05D7/00 , A61B5/4088 , A61B5/4255 , A61B5/6891 , A61B5/7282 , A61B5/747 , E03B7/02 , E03B7/071 , E03B7/072 , E03B7/09 , F16K37/0025 , F17D5/06 , G01D4/004 , G01D4/14 , G01F1/00 , G01F7/00 , G01F15/005 , G01F15/063 , G01F15/066 , G01F15/068 , G01F15/0755 , G01M3/2807 , G05B13/026 , G05B19/406 , G05D7/0635 , G05D7/0676 , G06Q20/145 , G06Q50/06 , G08B21/187 , H04L12/2825 , E03B1/00 , E03B1/02 , G01M3/00 , G01M3/26 , G05B2219/37371 , H04L2012/285 , Y02A20/00 , Y02A20/20 , Y02B90/20 , Y04S20/30
摘要: An electronic sensing and allocation system is provided for a distributed water infrastructure containing a plurality of differing appliances. The system may receive, from at least one sensor upstream of the plurality of differing appliances, a plurality of signals indicative of water usage within the distributed water infrastructure. The system may output a first indication of a first volume of water together with an indicator attributing the first volume of water to a first rate schedule, and output a second indication of a second volume of water together with an indicator attributing the second volume of water to a second rate schedule. The system may enable billing of the first and second volumes of water to a consumer at differing rates based on differing uses.
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公开(公告)号:US20240199444A1
公开(公告)日:2024-06-20
申请号:US18415803
申请日:2024-01-18
发明人: Dean Kamen , Ryan K. LAROCQUE , Christopher C. LANGENFELD , Stephen M. Ent , Andrew A. SCHNELLINGER , Prashant Bhat , Stanley B. Smith, III , Otis L. Clapp
IPC分类号: C02F1/04 , B01D1/00 , B01D1/02 , B01D1/06 , B01D1/22 , B01D1/28 , B01D1/30 , B01D3/00 , B01D3/42 , B01D5/00 , C02F1/08 , C02F1/16 , C02F1/18 , C02F103/06
CPC分类号: C02F1/041 , B01D1/0058 , B01D1/0082 , B01D1/02 , B01D1/065 , B01D1/22 , B01D1/2818 , B01D1/2887 , B01D1/2893 , B01D1/305 , B01D3/00 , B01D3/007 , B01D3/42 , B01D5/0012 , B01D5/006 , C02F1/042 , C02F1/048 , C02F1/08 , C02F1/16 , C02F1/18 , C02F2103/06 , C02F2209/42 , C02F2303/10 , Y02A20/00 , Y02W10/37
摘要: A fluid vapor distillation apparatus. The apparatus includes a source fluid input, and an evaporator condenser apparatus. The evaporator condenser apparatus includes a substantially cylindrical housing and a plurality of tubes in the housing. The source fluid input is fluidly connected to the evaporator condenser and the evaporator condenser transforms source fluid into steam and transforms compressed steam into product fluid. Also included in the fluid vapor distillation apparatus is a heat exchanger fluidly connected to the source fluid input and a product fluid output. The heat exchanger includes an outer tube and at least one inner tube. Also included in the fluid vapor distillation apparatus is a regenerative blower fluidly connected to the evaporator condenser. The regenerative blower compresses steam, and the compressed steam flows to the evaporative condenser where compressed steam is transformed into product fluid. The fluid vapor distillation apparatus also includes a control system.
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