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- W2130992960 abstract "This article is mainly focused on the freezing behaviour of emulsions which will be considered either as systems permitting to get information about undercooled materials or as complex dispersed systems involved in industrial processes. Due to the fact that there exists a phase dispersed as tiny droplets in emulsions, solidification delays are observed and liquid droplets are still observed under the melting points of pure materials. The correlation between the solidification temperature of the droplets and their size may be therefore used to follow the evolution of the emulsion morphology versus time on ground as in microgravity conditions (FASES project supported by <i>ESA<i/>). A description of these phenomena mainly observed through microcalorimetry experiments will be given for dispersed pure materials as for dispersed solutions. In some cases, emulsions may be sought after for their specific properties, such as their large oil/water interface, leading to enhanced mass transfers; emulsions may be consequently used as liquid membranes for extraction, storage and controlled release of active materials. In other cases, the formation of emulsions has a detrimental effect on the process. It is the case in the oil industry where very stable water-in-crude oil emulsions form easily and complicate the operation of crude oil dehydration." @default.
- W2130992960 created "2016-06-24" @default.
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- W2130992960 date "2013-12-04" @default.
- W2130992960 modified "2023-09-25" @default.
- W2130992960 title "Freezing Within Emulsions: Theoretical Aspects and Engineering Applications" @default.
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- W2130992960 doi "https://doi.org/10.2516/ogst/2013147" @default.
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