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X-ray Computed Microtomography of Sea Ice – Comment on a Review of Air–ice Chemical and Physical Interactions (Aici): Liquids, Quasi-liquids, and Solids in Snow by Bartels-rausch Et Al. (2014) : Volume 15, Issue 14 (29/07/2015)

By Obbard, R. W.

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Book Id: WPLBN0003980350
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File Size: Pages 2
Reproduction Date: 2015

Title: X-ray Computed Microtomography of Sea Ice – Comment on a Review of Air–ice Chemical and Physical Interactions (Aici): Liquids, Quasi-liquids, and Solids in Snow by Bartels-rausch Et Al. (2014) : Volume 15, Issue 14 (29/07/2015)  
Author: Obbard, R. W.
Volume: Vol. 15, Issue 14
Language: English
Subject: Science, Atmospheric, Chemistry
Collections: Periodicals: Journal and Magazine Collection, Copernicus GmbH
Historic
Publication Date:
2015
Publisher: Copernicus Gmbh, Göttingen, Germany
Member Page: Copernicus Publications

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Obbard, R. W. (2015). X-ray Computed Microtomography of Sea Ice – Comment on a Review of Air–ice Chemical and Physical Interactions (Aici): Liquids, Quasi-liquids, and Solids in Snow by Bartels-rausch Et Al. (2014) : Volume 15, Issue 14 (29/07/2015). Retrieved from http://www.ebooklibrary.org/


Description
Description: Thayer School of Engineering at Dartmouth College, 14 Engineering Drive, Hanover, New Hampshire 03755, USA. This comment addresses a statement made in A review of air–ice chemical and physical interactions (AICI): liquids, quasi-liquids, and solids in snow by Bartels-Rausch et al. (Atmos. Chem. Phys., 14, 1587–1633, doi:10.5194/acp-14-1587-2014, 2014). Here we rebut the assertion that X-ray computed microtomography of sea ice fails to reveal liquid brine inclusions by discussing the phases present at the analysis temperature.

Summary
X-ray computed microtomography of sea ice – comment on A review of air–ice chemical and physical interactions (AICI): liquids, quasi-liquids, and solids in snow by Bartels-Rausch et al. (2014)

Excerpt
Bartels-Rausch, T., Jacobi, H.-W., Kahan, T. F., Thomas, J. L., Thomson, E. S., Abbatt, J. P. D., Ammann, M., Blackford, J. R., Bluhm, H., Boxe, C., Domine, F., Frey, M. M., Gladich, I., Guzmán, M. I., Heger, D., Huthwelker, Th., Klán, P., Kuhs, W. F., Kuo, M. H., Maus, S., Moussa, S. G., McNeill, V. F., Newberg, J. T., Pettersson, J. B. C., Roeselová, M., and Sodeau, J. R.: A review of air-ice chemical and physical interactions (AICI): liquids, quasi-liquids, and solids in snow, Atmos. Chem. Phys., 14, 1587–1633, doi:10.5194/acp-14-1587-2014, 2014.; Golden, K. M., Eicken, H., Heaton, A. L., Miner, J., Pringle, D. J., and Zhu, J.: Thermal evolution of permeability and microstructure in sea ice, Geophys. Res. Lett., 34, L16501, doi:10.1029/2007GL030447, 2007.; Light, B., Maykut, G. A., and Grenfell, T. C.: Effects of temperature on the microstructure of first-year Arctic sea ice, J. Geophys. Res., 108, 3051, doi:10.1029/2001JC000887, 2003.; Marion, G. M., Farren, R. E., and Komrowski, A. J.: Alternative pathways for seawater freezing, Cold Reg. Sci. Technol., 29, 259–266, 1999.; Murshed, M. M., Klapp, S. A., Enzmann, F., Szeder, T., Huthwelker, T., Stampanoni, M., Marone, F., Hintermüller , C., Bohrmann, G., Kuhs, W. F., and Kersten, M.: Natural gas hydrate investigations by synchrotron radiation X-ray cryo-tomographic microscopy (SRXCTM), Geophys. Res. Lett., 35, L23612, doi:10.1029/2008GL035460, 2008.; Obbard, R. W., Troderman, G., and Baker, I.: Imaging brine and air inclusions in sea ice using micro-X-ray computed tomography, J. Glaciol., 55, 1113–1115, 2009.

 

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