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    • 1. 发明授权
    • Thin sheet apparatus and a fluid flow device
    • 薄片装置和流体流动装置
    • US4124478A
    • 1978-11-07
    • US766127
    • 1977-02-07
    • Hsue C. TsienJoseph A. ShropshireAgustin F. Venero
    • Hsue C. TsienJoseph A. ShropshireAgustin F. Venero
    • C25B9/00C25B9/20F28F3/08H01M8/02H01M8/24H01M12/02
    • H01M8/246B01D63/082C25B9/20F28F3/083H01M8/0273B01D2313/10B01D2313/12Y10S366/03
    • A thin sheet apparatus is described as having a front and a back and having a central area and a frame area disposed around the central area. The central area is made of a fluid impermeable material having substantially planar surfaces. The frame area contains two sets of supply orifices and drainage orifices which are opposite one another. The frame area also contains a plurality of channels for each orifice which connects the orifice with the central area. The pluralities of channels for the first set of supply orifices and drainage orifices are located on the front of the frame area while the pluralities of channels for the second set of supply orifices and drainage orifices are located on the back. Also described is a fluid flow device which contains a number of stacked groups of elements in which each of the groups contains the above mentioned thin sheet apparatus as well as various plastic sheets having channels connecting the supply orifices and drainage orifices and having membrane separator means for the stacked elements. The fluid flow device is particularly useful as an electrochemical cell in a preferred embodiment in which the central area is made of conductive material and in which the stacked groups of elements contain current collectors at each end.
    • 薄片装置被描述为具有前部和后部并且具有设置在中心区域周围的中心区域和框架区域。 中心区域由具有基本平坦表面的不透液体材料制成。 框架区域包含两组彼此相对的供应孔和排水孔。 框架区域还包括用于将孔口与中心区域连接的每个孔口的多个通道。 第一组供水孔和排水孔的多个通道位于框架区域的前部,而第二组供水孔和排水孔的多个通道位于背面。 还描述了一种流体流动装置,其包含多个堆叠的元件组,其中每个组包含上述薄片装置以及具有连接供给孔和排出孔的通道的各种塑料片,并且具有用于 堆叠元素。 在优选实施例中,流体流动装置特别适用于电化学电池,其中中心区域由导电材料制成,并且其中堆叠的元件组在每个端部都包含集电器。
    • 4. 发明授权
    • Cyclic adsorption process
    • 循环吸附过程
    • US4398927A
    • 1983-08-16
    • US324463
    • 1981-11-24
    • William J. AsherAgustin F. Venero
    • William J. AsherAgustin F. Venero
    • B01D53/04B01D53/26F24F3/14B01D53/06
    • B01D53/04B01D53/261F24F3/1411F24F3/1423B01D2259/40088B01D2259/4009B01D53/06F24F2203/1016F24F2203/1036F24F2203/104F24F2203/1056F24F2203/1072F24F2203/108F24F2203/1084
    • A cyclic adsorption process is provided in which two zones are employed--an adsorption zone and a heat storage zone. A fluid stream containing a solute to be removed therefrom is passed through the adsorption zone and the effluent is then passed through heat storage zone. The conditions under which the stream is passed through the adsorption zone are selected so that the rate of progression of the heat transfer front and mass transfer front are substantially equal. This results in an optimum temperature of the effluent stream for efficient heat recovery in the heat storage zone. During regeneration of the adsorbent, a fluid regenerating stream is passed through the heat storage zone where it is partially heated. At a point between the adsorption zone and the heat storage zone the regenerating fluid stream is further heated, via an additional heat source, and passed through the adsorbent zone. The amount of additional heat is sufficient to effectively desorb the adsorbent. Alternatively, of course, a pressure reduction and a combination of heat addition and pressure reduction may be employed to desorb the adsorbent.
    • 提供了循环吸附方法,其中使用两个区域 - 吸附区和储热区。 将含有待除去溶质的流体流通过吸附区,然后将流出物通过储热区。 选择流通过吸附区的条件,使得传热正面和传质前沿的速度基本相等。 这导致流出物流的最佳温度用于在储热区域中有效的热回收。 在吸附剂的再生期间,流体再生物流通过其部分加热的储热区。 在吸附区和储热区之间,再生流体流经另外的热源被进一步加热并通过吸附区。 额外的热量足以有效地解吸吸附剂。 或者,当然可以使用减压和加热和减压的组合来解吸吸附剂。