Publication: Microstructure characteristics during hydrate formation and dissociation revealed by X-ray tomographic microscopy
Microstructure characteristics during hydrate formation and dissociation revealed by X-ray tomographic microscopy
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Klapp, S. A., Enzmann, F., Walz, P., Huthwelker, T., Tuckermann, J., Schwarz, J.-O., Pape, T., Peltzer, E. T., Mokso, R., Wangner, D., Marone, F., Kersten, M., Bohrmann, G., Kuhs, W. F., Stampanoni, M., & Brewer, P. G. (2012). Microstructure characteristics during hydrate formation and dissociation revealed by X-ray tomographic microscopy. Geo-Marine Letters, 32(5–6), 555–562. https://doi.org/10.1007/s00367-012-0276-0
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Despite much progress over the past years in fundamental gas hydrate research, frontiers to the unknown are the early beginning and early decomposition of gas hydrates in their natural, submarine environment: gas bubbles meeting ocean water and forming hydrate, and gas starting to escape from the surface of a hydrate grain. In this paper we report on both of these topics, and present three-dimensional microstructure results obtained by synchrotron radiation X-ray cryo-tomographic microscopy (SRXCTM). Hydrates can precipitate when hydr
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Klapp, S. A., Enzmann, F., Walz, P., Huthwelker, T., Tuckermann, J., Schwarz, J.-O., Pape, T., Peltzer, E. T., Mokso, R., Wangner, D., Marone, F., Kersten, M., Bohrmann, G., Kuhs, W. F., Stampanoni, M., & Brewer, P. G. (2012). Microstructure characteristics during hydrate formation and dissociation revealed by X-ray tomographic microscopy. Geo-Marine Letters, 32(5–6), 555–562. https://doi.org/10.1007/s00367-012-0276-0