Investigation and control of the liquid flow through nanoscalic packed beds
Investigation and control of the liquid flow through nanoscalic packed beds
批准号:
5424743
负责人:
Professor Dr.-Ing. Hermann Nirschl
金额:
$0.0万
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
2004
资助国家:
德国
项目状态:
已结题
起止时间:
2003-12-31 至 2010-12-31
中文摘要
所述建议的目的是研究不可压缩液体通过由纳米级颗粒组成的填充床的流动。在填充床中,当液体流过多孔结构时,单个颗粒随机而密集地分布。在这个项目中考虑的填充床,由10到1000纳米范围内的刚性颗粒组成。虽然过去对大粒径宏观填料床的流动进行了深入的研究,但液体在纳米填料床中的流动尚未成为流体动力学和过程工程研究的重点。与宏观填充床相比,纳米系统具有更高的比表面,与流过它的液体有强烈的相互作用。众所周知,在纳米范围内,粒子表面的电动效应起着重要的作用。这些效应取决于液体的电解特性和颗粒表面的电特性。我们想要研究这些效应在多大程度上可以用来控制流动和床层结构。通过将部分液体固定在电化学双层内,可以增加或减少渗透,甚至打开或关闭渗透,这似乎是合理的。应调查与烧结膜和一般膜的相似之处。
英文摘要
The objective of the described proposal is the study of flow of an incompressible liquid through a packed bed composed of nanoscalic particles. In a packed bed single particles are randomly and densely distributed while a liquid flows through the porous structure. The packed beds considered in this project, consist of rigid particles in the range between 10 and 1000 nm. While the flow through macroscalic packed beds with larger particle sizes has been investigated intensely in the past, the passage of a liquid through a nanoscalic packed bed has not yet been the focus of research in fluid dynamics and process engineering. In comparison to macroscalic packed beds, nanoscalic systems have a much higher specific surface which strongly interacts with the liquid flow through it. It is well known that electrokinetic effects at the particle surface play an important role in that nanometer range. Those effects depend on the electrolytic properties of the liquid and the electric properties of the particle surfaces. We want to investigate how far those effects can be used to control the flow and the bed struture. It seems reasonable that the permeation can be increased or decreased or even switched on or off by immobilizing part of the liquid inside the electrochemical double layer. Analogies to sintered membranes and membranes in general shall be surveyed.
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