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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
Inventor: Cody Friesen , Elise Switzer , Heath Lorzel
CPC classification number: B01D53/261 , B01D53/06 , E03B3/28 , B01D53/0454 , C02F1/325 , C02F1/44 , C02F1/68 , B01D2259/4009 , Y02A20/00 , C02F2201/3222 , C02F2209/42 , C02F2303/04
Abstract: 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:US20210106946A1
公开(公告)日:2021-04-15
申请号:US17081898
申请日:2020-10-27
Inventor: Cody Friesen , Elise Switzer , Heath Lorzel
Abstract: 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:US11707710B2
公开(公告)日:2023-07-25
申请号:US17081898
申请日:2020-10-27
Inventor: Cody Friesen , Elise Switzer , Heath Lorzel
CPC classification number: B01D53/261 , B01D53/0454 , B01D53/06 , C02F1/325 , C02F1/44 , C02F1/68 , E03B3/28 , B01D2259/4009 , C02F2201/3222 , C02F2209/42 , C02F2303/04 , Y02A20/00
Abstract: 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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