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公开(公告)号:US20130319244A1
公开(公告)日:2013-12-05
申请号:US13908576
申请日:2013-06-03
Applicant: Z124
Inventor: James Ball , Charles Becze , David Blatt , Michael Flynn , Richard Teltz
IPC: B01D53/04
CPC classification number: B01D53/263 , B01D53/0454 , B01D53/18 , B01D53/26 , B01D53/28 , F24F3/1417 , F25B17/02 , F25B37/00 , F25B43/00 , F25D21/14 , Y02B30/62 , Y10T29/49396 , Y10T29/49826
Abstract: A system and method recover water from an ambient airstream. Dehumidification of the airstream is also achieved by removal of the water. A device of the system includes a chamber having a group of trays that hold respective amounts of liquid desiccant in each tray. A foam media absorbs the desiccant to increase an exposed surface of the desiccant to the airstream. Fans and valves are used to control airflow through the device. A charge cycle circulates air through the device to remove water vapor from the airstream. A subsequent extraction cycle removes water collected in the liquid desiccant by a condenser communicating with the chamber. An integral heat exchanger adds heat to the chamber during the extraction cycle. A controller is used to integrate and manage all system functions and input variables to achieve a high efficiency of operational energy use for water collection.
Abstract translation: 系统和方法从环境气流中回收水。 气流的除湿也可以通过去除水来实现。 该系统的装置包括具有一组托盘的腔室,该托盘容纳每个托盘中的相应量的液体干燥剂。 泡沫介质吸收干燥剂以将干燥剂的暴露表面增加到气流。 风扇和阀门用于控制装置的气流。 充电循环使空气循环通过设备以从气流中除去水蒸汽。 随后的萃取循环通过与室连通的冷凝器去除在液体干燥剂中收集的水。 整个热交换器在提取循环期间将热量加热到室中。 控制器用于集成和管理所有系统功能和输入变量,以实现高效的采集能量使用。