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    • 2. 发明授权
    • MECS dialyzer
    • MECS透析器
    • US08128822B2
    • 2012-03-06
    • US11576804
    • 2005-10-06
    • David M. BrowningJames R. CurtisGoran Nadezda JovanovicBrian Kevin PaulSundar Atre
    • David M. BrowningJames R. CurtisGoran Nadezda JovanovicBrian Kevin PaulSundar Atre
    • B01D61/28B01D61/24
    • A61M1/16A61M2205/0244B01D61/28B01D63/081B01D63/082B01D2313/08B01D2313/14
    • The present invention is related to hemodialysis, and more particularly, to a dialyser with improved efficiency of mass transfer across a dialysis membrane utilizing microchannel separation provided in accordance with embodiments of the present invention. In accordance with an embodiment, a dialyzer is provided comprising a plurality of semipermeable membrane sheets and a plurality of flow separators. The membrane sheets and flow are arranged in alternating configuration and coupled into a laminae stack defining a plurality of parallel microchannel layers. Each microchannel layer comprises a plurality of first microchannels and a plurality of second microchannels. The first and second microchannels of each microchannel layer are in fluid communication with each other via one of the plurality of membrane sheets therebetween. The MECS dialyzer is characterized as having a high surface to volume ratio and a high mass transfer coefficient.
    • 本发明涉及血液透析,更具体地说,涉及使用根据本发明的实施方案提供的利用微通道分离的透析膜的传质效率提高的透析器。 根据一个实施例,提供一种透析器,其包括多个半透膜和多个分流器。 膜片和流动被布置成交替配置并且耦合到限定多个平行微通道层的薄片叠层中。 每个微通道层包括多个第一微通道和多个第二微通道。 每个微通道层的第一和第二微通道之间通过多个膜片之一彼此流体连通。 MECS透析器的特征在于具有高的表面与体积比和高的传质系数。