Molecular Modeling And Simulation Of Hydrogen Bonding Pure Fluids And Mixtures


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Molecular Modeling and Simulation of Hydrogen Bonding Pure Fluids and Mixtures


Molecular Modeling and Simulation of Hydrogen Bonding Pure Fluids and Mixtures

Author: Thorsten Schnabel

language: en

Publisher: Logos Verlag Berlin GmbH

Release Date: 2008


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Hydrogen Bond Networks


Hydrogen Bond Networks

Author: M.C. Bellissent-Funel

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-04-17


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The almost universal presence of water in our everyday lives and the very `common' nature of its presence and properties possibly deflects attention from the fact that it has a number of very unusual characteristics which, furthermore, are found to be extremely sensitive to physical parameters, chemical environment and other influences. Hydrogen-bonding effects, too, are not restricted to water, so it is necessary to investigate other systems as well, in order to understand the characteristics in a wider context. Hydrogen Bond Networks reflects the diversity and relevance of water in subjects ranging from the fundamentals of condensed matter physics, through aspects of chemical reactivity to structure and function in biological systems.

Applications of Molecular Simulation in the Oil and Gas Industry


Applications of Molecular Simulation in the Oil and Gas Industry

Author: Philippe Ungerer

language: en

Publisher: Editions TECHNIP

Release Date: 2005


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Molecular simulation is an emerging technology for determining the properties of many systems that are of interest to the oil and gas industry, and more generally to the chemical industry. Based on a universally accepted theoretical background, molecular simulation accounts for the precise structure of molecules in evaluating their interactions. Taking advantage of the availability of powerful computers at moderate cost, molecular simulation is now providing reliable predictions in many cases where classical methods (such as equations of state or group contribution methods) have limited prediction capabilities. This is particularly useful for designing processes involving toxic components, extreme pressure conditions, or adsorption selectivity in microporous adsorbents. Molecular simulation moreover provides a detailed understanding of system behaviour. As illustrated by their award from the American Institute of Chemical Engineers for the best overall performance at the Fluid Simulation Challenge 2004, the authors are recognized experts in Monte Carlo simulation techniques, which they use to address equilibrium properties. This book presents these techniques in sufficient detail for readers to understand how simulation works, and describes many applications for industrially relevant problems. The book is primarily dedicated to chemical engineers who are not yet conversant with molecular simulation techniques. In addition, specialists in molecular simulation will be interested in the large scope of applications presented (including fluid properties, fluid phase equilibria, adsorption in zeolites, etc.).