Nanoscale Fluid Transport: From Molecular Signatures to Applications

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This thesis demonstrates how molecular modeling techniques can be used to gain significant insights into numerous applications that are increasingly attracting research interest because of their societal importance. It presents innovative ideas that, by altering the fundamental physical phenomena occurring at the solid/liquid interface, allow the fluid transport in nanochannels to be manipulated so as to improve the performance of the practical applications. The applications explicitly considered in this thesis are the design of drag-reducing and self-cleaning surfaces; water desalination; and shale gas exploration – all of which are, to some extent, governed by nanoscale fluid transport. Overall, this thesis is useful for students and researchers entering the field who wish to understand how molecular modeling can improve the performance in a wide range of applications.

Author(s): Tuan Anh Ho
Series: Springer Theses
Publisher: Springer International Publishing AG
Year: 2017

Language: English
Commentary: Doctoral Thesis accepted by University College London, UK
Pages: 95
Tags: Theoretical and Computational Chemistry;Industrial Chemistry/Chemical Engineering;Environmental Engineering/Biotechnology

Front Matter....Pages i-xiv
Introduction....Pages 1-12
Methodology....Pages 13-20
Correlation Between Interfacial Water Properties and Hydrodynamic Boundary Conditions....Pages 21-35
The Role of Thin and Mobile Electric Double Layer in Water Purification and Energy Storage....Pages 37-51
Water and Methane in Shale Rocks: Flow Pattern Effects on Fluid Transport and Pore Structure....Pages 53-64
Summary and Outlook....Pages 65-68
Back Matter....Pages 69-86