Molecular simulation of methane hydrate growth confined into a silica pore

Fernández Fernández, Ángel M. ORCID: https://orcid.org/0000-0003-1365-0064, Martin Conde, Maria ORCID: https://orcid.org/0000-0003-2822-9141, Pérez Sánchez, Germán ORCID: https://orcid.org/0000-0002-3972-5901, Pérez Rodríguez, Martín ORCID: https://orcid.org/0000-0001-9623-2954 and Pineiro, Manuel M. ORCID: https://orcid.org/0000-0002-3955-3564 (2022). Molecular simulation of methane hydrate growth confined into a silica pore. "Journal of Molecular Liquids", v. 362 ; p. 119698. ISSN 01677322. https://doi.org/10.1016/j.molliq.2022.119698.

Descripción

Título: Molecular simulation of methane hydrate growth confined into a silica pore
Autor/es:
Tipo de Documento: Artículo
Título de Revista/Publicación: Journal of Molecular Liquids
Fecha: 28 Junio 2022
ISSN: 01677322
Volumen: 362
Materias:
ODS:
Palabras Clave Informales: Challenges; Co2; Confined Geometries; Confined Hydrate; Confined Hydrates; Dynamics Simulations; Energy; Fixed Width; Forcefields; Gas Hydrates; Gas-Hydrate; Gromacs; Hydrate Growth; Hydration; Hydrogen; Methane; Methane Hydrates; Molecular Dynamics; Molecular Simulations; Molecular Structure; Molecules; Nucleation; Science; Silica; Silica Pores; Slit Pores; Templated Synthesis; Water
Escuela: E.T.S.I. Industriales (UPM)
Departamento: Ingeniería Química Industrial y del Medio Ambiente
Licencias Creative Commons: Reconocimiento - Sin obra derivada - No comercial

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Resumen

The growth of a methane hydrate seed within a silica slit pore of fixed width has been studied using All Atom Molecular Dynamics (AA-MD). An AA force field has been used to describe the molecules of the solid silica substrate, with a-quartz crystalline structure. The crystallisation of hydrates in confined geometries is not well understood yet, and the objective of this work is to study the hydrate growth inside a silica pore using molecular simulation. Both NVT and NpT ensembles were used in the AA-MD simulations to analyse the hydrate growth from an initial seed. Results showed that the boundary conditions imposed by the nanometric slit pore yielded a hydrate with structural defects, filling the accessible space between the silica walls. The water molecules which were not incorporated to the initial seed hydrate formed a high density water layer trapped between the silica walls and the crystallised hydrate. These results provide an interesting insight into the hydrate crystallisation process in confined geometries, resembling those found in natural hydrate deposits. (C) 2022 The Author(s). Published by Elsevier B.V.

Proyectos asociados

Tipo
Código
Acrónimo
Responsable
Título
Gobierno de España
PID2021-125081NB-I00
Sin especificar
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Gobierno de España
PID2019-105898GA-C22
Sin especificar
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Comunidad de Madrid
APOYO-JOVENES-01HQ1S-129-B5E4MM
Sin especificar
Sin especificar
Sin especificar

Más información

ID de Registro: 92606
Identificador DC: https://oa.upm.es/92606/
Identificador OAI: oai:oa.upm.es:92606
URL Portal Científico: https://portalcientifico.upm.es/es/ipublic/item/9950012
Identificador DOI: 10.1016/j.molliq.2022.119698
URL Oficial: https://www.sciencedirect.com/science/article/pii/...
Depositado por: Portal Científico UPM
Depositado el: 04 Ene 2026 12:14
Ultima Modificación: 04 Ene 2026 12:15