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    • 2. 发明申请
    • SEPARATOR ASSEMBLY
    • 分离器总成
    • US20100096319A1
    • 2010-04-22
    • US12330536
    • 2008-12-09
    • Philip Paul BeauchampDaniel Jason ErnoDean David MarschkeMichael Kent Cueman
    • Philip Paul BeauchampDaniel Jason ErnoDean David MarschkeMichael Kent Cueman
    • B01D69/04B32B37/00
    • B01D63/103B01D63/10B01D2313/10B01D2313/12C02F1/441C02F2103/08Y02A20/131
    • A separator assembly is provided comprising a membrane stack assembly comprising a feed carrier layer, a permeate carrier layer, and a membrane layer, and a central core element comprising a concentrate exhaust conduit and a permeate exhaust conduit; wherein the concentrate exhaust conduit and the permeate exhaust conduit are separated by a first portion of the membrane stack assembly; and wherein a second portion of the membrane stack assembly forms a multilayer membrane assembly disposed around the central core element; and wherein the feed carrier layer is in contact with the concentrate exhaust conduit and not in contact with the permeate exhaust conduit; and wherein the permeate carrier layer is in contact with the permeate exhaust conduit and not in contact with the concentrate exhaust conduit; and wherein the permeate carrier layer does not form an outer surface of the separator assembly.
    • 提供了一种分离器组件,其包括膜堆叠组件,其包括进料载体层,渗透物载体层和膜层,以及包含浓缩物排出管道和渗透物排出导管的中心核心元件; 其中所述浓缩物排出管道和所述渗透物排出导管由所述膜堆叠组件的第一部分分离; 并且其中所述膜堆叠组件的第二部分形成围绕所述中心芯体元件设置的多层膜组件; 并且其中所述进料载体层与所述浓缩物排出导管接触并且不与所述渗透物排出导管接触; 并且其中所述渗透物载体层与所述渗透物排出导管接触并且不与所述浓缩物排出导管接触; 并且其中所述渗透物载体层不形成所述分离器组件的外表面。
    • 3. 发明申请
    • SEPARATOR ASSEMBLY
    • 分离器总成
    • US20100096308A1
    • 2010-04-22
    • US12259622
    • 2008-10-28
    • Philip Paul BeauchampDean David MarschkeDaniel Jason ErnoMichael Kent Cueman
    • Philip Paul BeauchampDean David MarschkeDaniel Jason ErnoMichael Kent Cueman
    • B01D63/10B01D61/02
    • B01D63/10B01D63/103B01D2313/12C02F1/441C02F2103/08Y02A20/131
    • The present invention provides a separator assembly comprising a central core element comprising at least two permeate exhaust conduits and not comprising a concentrate exhaust conduit; and a membrane stack assembly comprising at least one feed carrier layer, at least two permeate carrier layers, and at least two membrane layers, the membrane layers being disposed between the feed carrier layer and the permeate carrier layers; wherein the permeate exhaust conduits are separated by a first portion of the membrane stack assembly, and wherein a second portion of the membrane stack assembly forms a multilayer membrane assembly disposed around the central core element, and wherein the feed carrier layer is not in contact with a permeate exhaust conduit, and wherein the permeate carrier layers are in contact with at least one permeate exhaust conduit. Also provided are salt separator assemblies and spiral flow reverse osmosis devices.
    • 本发明提供一种分离器组件,其包括中心芯元件,该中心芯元件包括至少两个渗透物排出导管,并且不包括浓缩物排出导管; 以及膜堆叠组件,其包括至少一个进料载体层,至少两个渗透物载体层和至少两个膜层,所述膜层设置在进料载体层和渗透物载体层之间; 其中所述渗透物排出管道由所述膜堆叠组件的第一部分分开,并且其中所述膜堆叠组件的第二部分形成围绕所述中心芯体元件设置的多层膜组件,并且其中所述进料载体层不与 渗透物排出导管,并且其中所述渗透物载体层与至少一个渗透物排出导管接触。 还提供了盐分离器组件和螺旋流反向渗透装置。
    • 4. 发明授权
    • Separator assembly
    • 分离器总成
    • US08968566B2
    • 2015-03-03
    • US13157705
    • 2011-06-10
    • Philip Paul BeauchampMichael Kent CuemanDaniel Jason ErnoTodd Alan AndersonDean David Marschke
    • Philip Paul BeauchampMichael Kent CuemanDaniel Jason ErnoTodd Alan AndersonDean David Marschke
    • B01D63/10B01D63/12C02F1/44C02F103/08
    • B01D63/10B01D63/103B01D2313/12C02F1/441C02F2103/08Y02A20/131
    • A novel separator assembly for a spiral flow reverse osmosis apparatus is provided. In one embodiment, the separator assembly comprises a central core element comprising at least two permeate exhaust conduits and not comprising a concentrate exhaust conduit. Each permeate exhaust conduit defines an exhaust channel and one or more openings allowing fluid communication between an exterior surface of the permeate exhaust conduit and the exhaust channel, said permeate exhaust conduits independently defining a cavity between said conduits. The cavity is configured to accommodate a first portion of a membrane stack assembly comprising at least one feed carrier layer, at least two permeate carrier layers, and at least two membrane layers. A first portion of the membrane stack assembly is disposed within the cavity, and a second portion of the membrane stack assembly is wound around the central core element and forms a multilayer membrane assembly disposed around the central core element.
    • 提供了一种用于螺旋流反渗透装置的新型分离器组件。 在一个实施例中,分离器组件包括包括至少两个渗透物排出导管并且不包括浓缩物排出导管的中心芯体元件。 每个渗透物排出导管限定排气通道和一个或多个开口,允许渗透物排放导管的外表面与排气通道之间的流体连通,所述渗透物排出导管独立地限定所述导管之间的空腔。 空腔被配置为容纳包括至少一个进料载体层,至少两个渗透物载体层和至少两个膜层的膜堆叠组件的第一部分。 膜堆叠组件的第一部分设置在空腔内,并且膜堆叠组件的第二部分围绕中心芯体元件缠绕并形成围绕中心芯体元件设置的多层膜组件。
    • 7. 发明申请
    • SEPARATOR ASSEMBLY
    • 分离器总成
    • US20110233128A1
    • 2011-09-29
    • US13157705
    • 2011-06-10
    • Philip Paul BeauchampMichael Kent CuemanDaniel Jason ErnoTodd Alan AndersonDean David Marschke
    • Philip Paul BeauchampMichael Kent CuemanDaniel Jason ErnoTodd Alan AndersonDean David Marschke
    • B01D61/08B01D63/10B01D63/06
    • B01D63/10B01D63/103B01D2313/12C02F1/441C02F2103/08Y02A20/131
    • A novel separator assembly for a spiral flow reverse osmosis apparatus is provided. In one embodiment, the separator assembly comprises a central core element comprising at least two permeate exhaust conduits and not comprising a concentrate exhaust conduit. Each permeate exhaust conduit defines an exhaust channel and one or more openings allowing fluid communication between an exterior surface of the permeate exhaust conduit and the exhaust channel, said permeate exhaust conduits independently defining a cavity between said conduits. The cavity is configured to accommodate a first portion of a membrane stack assembly comprising at least one feed carrier layer, at least two permeate carrier layers, and at least two membrane layers. A first portion of the membrane stack assembly is disposed within the cavity, and a second portion of the membrane stack assembly is wound around the central core element and forms a multilayer membrane assembly disposed around the central core element.
    • 提供了一种用于螺旋流反渗透装置的新型分离器组件。 在一个实施例中,分离器组件包括包括至少两个渗透物排出导管并且不包括浓缩物排出导管的中心芯体元件。 每个渗透物排出导管限定排气通道和一个或多个开口,允许渗透物排放导管的外表面与排气通道之间的流体连通,所述渗透物排出导管独立地限定所述导管之间的空腔。 空腔被配置为容纳包括至少一个进料载体层,至少两个渗透物载体层和至少两个膜层的膜堆叠组件的第一部分。 膜堆叠组件的第一部分设置在空腔内,并且膜堆叠组件的第二部分围绕中心芯体元件缠绕并形成围绕中心芯体元件设置的多层膜组件。
    • 10. 发明授权
    • Axial bypass sleeve
    • 轴向旁路套管
    • US08940168B2
    • 2015-01-27
    • US13332464
    • 2011-12-21
    • Dean David Marschke
    • Dean David Marschke
    • B01D63/10B32B1/08B01D61/00
    • B01D63/103B01D2313/08B01D2319/02Y10T428/13
    • The present disclosure describes an axial bypass sleeve for use with a spiral wound membrane element. The axial bypass sleeve has a protrusion and an opening that defines a flow path to provide fluid flow communication through the axial bypass sleeve. In use, the axial bypass sleeve is wrapped around a spiral wound membrane element and both are placed in a pressure housing. A pressurized feedstock is introduced into the pressure housing. A portion of the pressurized feedstock flows through the spiral wound membrane element to produce a permeate stream and a retentate stream. A portion of the pressurized feed stock flows around the spiral wound membrane element, called bypass flow. The protrusion extends into the annular space to restrict the bypass flow. A portion of the bypass flow passes through the opening and enters into the spiral wound membrane element to increase permeate production.
    • 本公开描述了一种与螺旋缠绕膜元件一起使用的轴向旁路套管。 轴向旁路套管具有突出部和开口,该开口限定了通过轴向旁路套管提供流体流动连通的流动路径。 在使用中,轴向旁路套管围绕螺旋缠绕的膜元件缠绕,并且都被放置在压力壳体中。 加压原料被引入压力壳体中。 加压原料的一部分流过螺旋缠绕膜元件以产生渗透物流和滞留物流。 加压原料的一部分围绕螺旋缠绕膜元件流动,称为旁路流。 突起延伸到环形空间中以限制旁路流。 旁路流的一部分穿过开口并进入螺旋缠绕的膜元件以增加渗透物的产生。