首页> 外文期刊>Journal of Membrane Science >The duomodule Part 2f Separation ability and efficiency using aqueous solutions
【24h】

The duomodule Part 2f Separation ability and efficiency using aqueous solutions

机译:duomodule第2f部分使用水溶液的分离能力和效率

获取原文
获取原文并翻译 | 示例
           

摘要

The duomodule integrates two kinds of serially connected hollow fiber filters in a common module housing. The inner compartments of both filters are interlocked by a stable connection in which a throttle valve is integrated. The connected outer compartments of the filters are filled with an incompressible fluid. At a liquid flow in the inner compartment (primary circulation), a secondary circulation is generated due to a pressure drop between the filters. Filtration from the inner compartment to the outer compartments is initiated in the first filter, whereas reffiltration takes place in the common outer compartment to the inner compartment in the second filter as a consequence of a transmembrane pressure reversal. In this paper, different duomodule arrangements are used for the fractionation of an aqueous destran solution mixture to detect the duomodule separation ability and efficiency and to optimize the module construction. The fractionation ability and efficiency are related to the membrane characteristics. The results of the fractionation experiments demonstrate the separation function of the equipment. In the refiltration step, the transport direction goes from the outer to the inner membrane surface; therefore, an internal concentration polarization in the membrane wall can change the permeability and the separation behavior of the refiltration membrane. Accordingly, only symmetrically structured membranes or outside active refiltration membranes realize a desirable high fractionation ability and efficiency.
机译:duomodule在公共模块外壳中集成了两种串联连接的中空纤维过滤器。两个过滤器的内部隔室通过稳定连接互锁,其中集成了节流阀。过滤器相连的外部隔室充满了不可压缩的流体。在内部隔室中的液体流动时(一次循环),由于过滤器之间的压降而产生二次循环。从内部隔室到外部隔室的过滤在第一过滤器中开始,而由于跨膜压力反向,在公共外部隔室中发生了向第二过滤器的内部隔室的再过滤。在本文中,将不同的双模块排列方式用于分离destran水溶液混合物,以检测双模块的分离能力和效率,并优化模块结构。分馏能力和效率与膜的特性有关。分馏实验的结果证明了设备的分离功能。在再过滤步骤中,输送方向是从外膜表面到内膜表面。因此,膜壁中的内部浓度极化会改变渗透膜的渗透性和分离行为。因此,仅对称结构的膜或外部活性再过滤膜实现所需的高分馏能力和效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号