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    • 1. 发明授权
    • Multi-channel cross-flow porous device
    • 多通道横流多孔装置
    • US07169213B2
    • 2007-01-30
    • US10996522
    • 2004-11-24
    • Wei LiuJimmie L. WilliamsYuming Xie
    • Wei LiuJimmie L. WilliamsYuming Xie
    • B01D53/22B01D46/00B01D61/00
    • C04B38/0074B01D46/0021B01D46/0036B01D46/2407B01D46/543B01D53/22B01D53/229B01D63/022B01D63/066B01D71/02B01D71/022B01D71/028B01D2253/108B01D2256/16B01D2257/702B01D2257/80B01D2311/13B01D2313/42B01D2315/10B01J12/007B01J19/2475B01J19/2485C01B3/38C01B3/503C01B3/505C01B3/56C01B2203/0233C01B2203/0244C01B2203/0261C01B2203/0405C01B2203/041C01B2203/0465C01B2203/047C01B2203/0475C01B2203/048C01B2203/0495C04B38/0003C04B2111/00793C04B2111/0081C04B35/00C04B38/0054C04B35/185
    • A multi-channel modular device (10) processes between two fluid streams of different compositions. The device (10) includes a porous body (150) having a first plurality of feed-flow pathways (110) disposed in the body (150) for transporting a first stream (180). A pathway wall (114) surrounds each of the first plurality of feed-flow pathways (110) for processing the first stream (180) into a first composition (1852) and a second composition (1802). At least one feed-flow inlet (1101) is disposed in the body (150) for introducing the first stream (180) into the first plurality of feed-flow pathways (110). At least one feed-flow outlet (1102) is disposed in the body (150) for discharging the remaining first stream containing the second composition (1802). At least one second pathway (210) is disposed in the body (150) for transporting a second stream (280) having a second inlet (2101) and a second outlet (2102). A networked plurality of fluid conduits (152) formed in the porous body (150) provides the flow-conduit for the second stream (280) to sweep the first composition (1852) from each of the first plurality of the feed-flow pathways (110) to the second outlet (2102). A vessel (300) ports the inlets (1101 and 2101) and outlets (1102 and 2102) to provide a second stream flow access and for spacing the body within and away from the inner surfaces of the vessel (300) to provide a gap (310) for access. A partition (350) is disposed in the gap between the body and the vessel for diverting the flow within the gap (310).
    • 多通道模块化装置(10)在不同组成的两个流体流之间进行处理。 装置(10)包括具有设置在主体(150)中的第一多个进料流路(110)的多孔体(150),用于输送第一流(180)。 通路壁(114)围绕第一多个进料流通道(110)中的每一个,用于将第一流(180)加工成第一组合物(1852)和第二组合物(1802)。 至少一个进料流入口(1101)设置在主体(150)中,用于将第一流(180)引入第一多个进料通路(110)。 至少一个进料流出口(1102)设置在主体(150)中,用于排出包含第二组合物(1802)的剩余第一流。 至少一个第二通道(210)设置在主体(150)中,用于输送具有第二入口(2101)和第二出口(2102)的第二流(280)。 形成在多孔体(150)中的联网的多个流体导管(152)提供用于第二流(280)的流动管道以从第一组多个进料通道(1852)中的每一个 110)连接到第二出口(2102)。 容器(300)将入口(1101和2101)和出口(1102和2102)连通以提供第二流体流动通道并且用于使体内和容器(300)的内表面间隔开以提供间隙 310)进行访问。 分隔件(350)设置在主体和容器之间的间隙中,用于使流体在间隙(310)内转向。
    • 2. 发明申请
    • Multi-channel cross-flow porous device
    • 多通道横流多孔装置
    • US20060090651A1
    • 2006-05-04
    • US10996522
    • 2004-11-24
    • Wei LiuJimmie WilliamsYuming Xie
    • Wei LiuJimmie WilliamsYuming Xie
    • B01D53/02
    • C04B38/0074B01D46/0021B01D46/0036B01D46/2407B01D46/543B01D53/22B01D53/229B01D63/022B01D63/066B01D71/02B01D71/022B01D71/028B01D2253/108B01D2256/16B01D2257/702B01D2257/80B01D2311/13B01D2313/42B01D2315/10B01J12/007B01J19/2475B01J19/2485C01B3/38C01B3/503C01B3/505C01B3/56C01B2203/0233C01B2203/0244C01B2203/0261C01B2203/0405C01B2203/041C01B2203/0465C01B2203/047C01B2203/0475C01B2203/048C01B2203/0495C04B38/0003C04B2111/00793C04B2111/0081C04B35/00C04B38/0054C04B35/185
    • A multi-channel modular device (10) processes between two fluid streams of different compositions. The device (10) includes a porous body (150) having a first plurality of feed-flow pathways (110) disposed in the body (150) for transporting a first stream (180). A pathway wall (114) surrounds each of the first plurality of feed-flow pathways (110) for processing the first stream (180) into a first composition (1852) and a second composition (1802). At least one feed-flow inlet (1101) is disposed in the body (150) for introducing the first stream (180) into the first plurality of feed-flow pathways (110). At least one feed-flow outlet (1102) is disposed in the body (150) for discharging the remaining first stream containing the second composition (1802). At least one second pathway (210) is disposed in the body (150) for transporting a second stream (280) having a second inlet (2101) and a second outlet (2102). A networked plurality of fluid conduits (152) formed in the porous body (150) provides the flow-conduit for the second stream (280) to sweep the first composition (1852) from each of the first plurality of the feed-flow pathways (110) to the second outlet (2102). A vessel (300) ports the inlets (1101 and 2101) and outlets (1102 and 2102) to provide a second stream flow access and for spacing the body within and away from the inner surfaces of the vessel (300) to provide a gap (310) for access. A partition (350) is disposed in the gap between the body and the vessel for diverting the flow within the gap (310).
    • 多通道模块化装置(10)在不同组成的两个流体流之间进行处理。 装置(10)包括具有设置在主体(150)中的第一多个进料流路(110)的多孔体(150),用于输送第一流(180)。 通路壁(114)围绕第一多个进料流通道(110)中的每一个,用于将第一流(180)加工成第一组合物(1852)和第二组合物(1802)。 至少一个进料流入口(1101)设置在主体(150)中,用于将第一流(180)引入第一多个进料通路(110)。 至少一个进料流出口(1102)设置在主体(150)中,用于排出包含第二组合物(1802)的剩余第一流。 至少一个第二通道(210)设置在主体(150)中,用于输送具有第二入口(2101)和第二出口(2102)的第二流(280)。 形成在多孔体(150)中的联网的多个流体导管(152)提供用于第二流(280)的流动管道以从第一组多个进料通道(1852)中的每一个 110)连接到第二出口(2102)。 容器(300)将入口(1101和2101)和出口(1102和2102)连通以提供第二流体流动通道并且用于使体内和容器(300)的内表面间隔开以提供间隙 310)进行访问。 分隔件(350)设置在主体和容器之间的间隙中,用于使流体在间隙(310)内转向。