Visualization of supercritical water pseudo-boiling at Widom line crossover

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作者
Florentina Maxim
Cristian Contescu
Pierre Boillat
Bojan Niceno
Konstantinos Karalis
Andrea Testino
Christian Ludwig
机构
[1] Paul Scherrer Institute,Laboratory for Bioenergy and Catalysis (LBK), ENE Division
[2] “Ilie Murgulescu” Institute of Physical Chemistry,Laboratory for Chemical Thermodynamics
[3] Oak Ridge National Laboratory,Materials Science and Technology Division
[4] Paul Scherrer Institute,Electrochemistry Laboratory (LEC), ENE Division
[5] Paul Scherrer Institute,Laboratory for Neutron Scattering and Imaging (LNS), NUM Division
[6] Paul Scherrer Institute,Laboratory for Scientific Computing and Modelling (LSM), NES Division
[7] Eidgenössische Technische Hochschule Zürich (ETHZ),undefined
[8] MAVT-LKE,undefined
[9] École Polytechnique Fédérale de Lausanne (EPFL),undefined
[10] ENAC IIE GR-LUD,undefined
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摘要
Supercritical water is a green solvent used in many technological applications including materials synthesis, nuclear engineering, bioenergy, or waste treatment and it occurs in nature. Despite its relevance in natural systems and technical applications, the supercritical state of water is still not well understood. Recent theories predict that liquid-like (LL) and gas-like (GL) supercritical water are metastable phases, and that the so-called Widom line zone is marking the crossover between LL and GL behavior of water. With neutron imaging techniques, we succeed to monitor density fluctuations of supercritical water while the system evolves rapidly from LL to GL as the Widom line is crossed during isobaric heating. Our observations show that the Widom line of water can be identified experimentally and they are in agreement with the current theory of supercritical fluid pseudo-boiling. This fundamental understanding allows optimizing and developing new technologies using supercritical water as a solvent.
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