The Mariana Trench is one of the most famous and extreme environments on our planet. We report experimental values of the hydrogen nuclear mean kinetic energy in water samples at the same physical and chemical conditions than in the Challenger Deep within the Mariana Trench: a pressure of 1092 bars, a temperature of 1 degrees C, and a salinity of 35 g of salt per kg of water. Results were obtained by deep inelastic neutron scattering at the VESUVIO spectrometer at ISIS. We find that the effect of pressure is to increase the hydrogen nuclear mean kinetic energy with respect to ambient conditions, while ions in the solution have the opposite effect. These results confirm the recent state-of-the-art simulations of the nuclear hydrogen dynamics in water. The changes in the nuclear mean kinetic energy likely correspond to different isotopic fractionation values in the Challenger Deep compared to standard sea water.

Bocedi, A., Romanelli, G., Andreani, C., Senesi, R. (2020). Hydrogen nuclear mean kinetic energy in water down the Mariana Trench: competition of pressure and salinity. JOURNAL OF CHEMICAL PHYSICS ONLINE, 153(13) [10.1063/5.0021926].

Hydrogen nuclear mean kinetic energy in water down the Mariana Trench: competition of pressure and salinity

Bocedi A.;Romanelli G.
Membro del Collaboration Group
;
Andreani C.;Senesi R.
2020-01-01

Abstract

The Mariana Trench is one of the most famous and extreme environments on our planet. We report experimental values of the hydrogen nuclear mean kinetic energy in water samples at the same physical and chemical conditions than in the Challenger Deep within the Mariana Trench: a pressure of 1092 bars, a temperature of 1 degrees C, and a salinity of 35 g of salt per kg of water. Results were obtained by deep inelastic neutron scattering at the VESUVIO spectrometer at ISIS. We find that the effect of pressure is to increase the hydrogen nuclear mean kinetic energy with respect to ambient conditions, while ions in the solution have the opposite effect. These results confirm the recent state-of-the-art simulations of the nuclear hydrogen dynamics in water. The changes in the nuclear mean kinetic energy likely correspond to different isotopic fractionation values in the Challenger Deep compared to standard sea water.
2020
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/07 - FISICA APPLICATA (A BENI CULTURALI, AMBIENTALI, BIOLOGIA E MEDICINA)
English
Bocedi, A., Romanelli, G., Andreani, C., Senesi, R. (2020). Hydrogen nuclear mean kinetic energy in water down the Mariana Trench: competition of pressure and salinity. JOURNAL OF CHEMICAL PHYSICS ONLINE, 153(13) [10.1063/5.0021926].
Bocedi, A; Romanelli, G; Andreani, C; Senesi, R
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/280096
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