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Dominique Richon

Researcher at Aalto University

Publications -  250
Citations -  9644

Dominique Richon is an academic researcher from Aalto University. The author has contributed to research in topics: Clathrate hydrate & Aqueous solution. The author has an hindex of 53, co-authored 250 publications receiving 8805 citations. Previous affiliations of Dominique Richon include École Normale Supérieure & Heriot-Watt University.

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Application of gas hydrate formation in separation processes: A review of experimental studies

TL;DR: In this article, a brief description of the positive applications of clathrate hydrates and a comprehensive survey of experimental studies performed on separation processes using gas hydrate formation technology is presented.
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Vapour-liquid equilibria in the carbon dioxide-water system, measurement and modelling from 278.2 to 318.2K

TL;DR: In this article, three different models have been used to represent the new experimental VLE data, one based on dissymmetric approach with the Peng-Robinson equation of state including classical mixing rules for the vapour phase and a Henry's law treatment of the aqueous phase.
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Modeling of thermodynamic properties using neural networks: Application to refrigerants

TL;DR: In this article, the potential application of artificial neural networks (ANN) to represent PVT data within their experimental uncertainty, and then obtain, by numerical derivatives, other thermodynamic properties such as enthalpies, entropies and heat capacities.
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Rapid on-line sampler-injector : a reliable tool for HT-HP sampling and on-line GC analysis

TL;DR: The Rapid On-Line Sampler- Injector as mentioned in this paper was designed and set-up to largely extend sampling capabilities in hazardous media, and it has a lot of applications, both in production (process control in petro- leum, chemical, nuclear plants, etc.) and academic and industrial researches and development.
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Gas solubility measurement and modeling for methane–water and methane–ethane–n-butane–water systems at low temperature conditions

TL;DR: In this article, experimental measurements and thermodynamic modeling of solubilities of methane and a hydrocarbon gas mixture (94% methane + 4% ethane + 2% n-butane) in water at low temperature conditions are reported.