首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2010 >DESIGN OF AN EXPERIMENTAL SETUP TO STUDY MASS TRANSPORT IN MICRO-NANO CAPILLARIES AND POROUS MEDIA
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DESIGN OF AN EXPERIMENTAL SETUP TO STUDY MASS TRANSPORT IN MICRO-NANO CAPILLARIES AND POROUS MEDIA

机译:用于研究微纳毛细管和多孔介质中传质的实验装置的设计

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Study of gas diffusion is critical in understanding the process of mass transfer in porous media, which is an integral part of polymer electrolyte membrane fuel cells (PEMFCs). An experimental method is presented to study the mass transfer processes in micro-nano capillaries, which is further extended to study the transport in the porous media of fuel cells. A diffusion bridge setup, similar to the one presented by Remick and Geankoplis [I] has been used. The experimental setup facilitates the study of binary and multicomponent mixture transport through micro-nano capillaries and porous media. The setup can perform studies for two cases viz., pure diffusion and convection-diffusion. Using pressure controls in both channels, the pressure gradient across the capillaries is varied to study the convection diffusion process in detail. The results obtained from the study will be used to review various models of mass transport available in literature.
机译:气体扩散的研究对于理解多孔介质中的传质过程至关重要,多孔介质是聚合物电解质膜燃料电池(PEMFC)不可或缺的一部分。提出了一种实验方法来研究微纳米毛细管中的传质过程,并进一步扩展到研究燃料电池在多孔介质中的传输。使用了类似于Remick和Geankoplis [I]提出的扩散桥设置。实验装置有助于研究二元和多组分混合物通过微纳米毛细管和多孔介质的传输。该装置可以对两种情况进行研究,即纯扩散和对流扩散。使用两个通道中的压力控制,可以改变毛细管上的压力梯度,以详细研究对流扩散过程。从研究中获得的结果将用于审查文献中可用的各种大众运输模型。

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