4.3 Article

Thermodiffusion in Ternary Mixtures of Water/Ethanol/Triethylene Glycol: First Report on the DCMIX3-Experiments Performed on the International Space Station

期刊

MICROGRAVITY SCIENCE AND TECHNOLOGY
卷 30, 期 3, 页码 295-308

出版社

SPRINGER
DOI: 10.1007/s12217-018-9598-5

关键词

Diffusion; Thermodiffusion; Soret effect; Ternary mixtures; Microgravity experiments

资金

  1. project DCMIX of the European Space Agency [AO-2009-0858/1056]
  2. Deutsches Zentrum fur Luft- und Raumfahrt [50WM1130, 50WM1544]
  3. PRODEX program of Belgian Federal Science Policy Office (BELSPO)
  4. Spanish 'Agencia Estatal de Investigacion' [FIS2014-58950]
  5. Spanish Ministerio de Economia y Competitividad, MINECO [ESP2014-53603-P]
  6. Centre National d'Etudes Spatiales [170048/00, 2016/4800000877]

向作者/读者索取更多资源

We report on thermodiffusion experiments conducted on the International Space Station ISS during fall 2016. These experiments are part of the DCMIX (Diffusion and thermodiffusion Coefficients Measurements in ternary Mixtures) project, which aims at establishing a reliable data base of non-isothermal transport coefficients for selected ternary liquid mixtures. The third campaign, DCMIX3, focuses on aqueous systems with water/ethanol/triethylene glycol as an example, where sign changes of the Soret coefficient have already been reported for certain binary subsystems. Investigations have been carried out with the SODI (Selectable Optical Diagnostics Instrument) instrument, a Mach-Zehnder interferometer set up inside the Microgravity Science Glovebox in the Destiny Module of the ISS. Concentration changes within the liquids have been monitored in response to an external temperature gradient using phase-stepping interferometry. The complete data set has been made available in spring 2017. Due to additionally available measurement time, it was possible to collect a complete data set at 30 degrees C and an almost complete data set at 25 degrees C, which significantly exceeds the originally envisaged measurements at a single temperature only. All samples could be measured successfully. The SODI instrument and the DCMIX experiments have proven reliable and robust, allowing to extract meaningful data even in case of unforeseen laser instabilities. First assessments of the data quality have revealed six out of 31 runs with some problems in image contrast and/or phase step stability that will require more sophisticated algorithms. This publication documents all relevant parameters of the conducted experiments and also events that might have an influence on the final results. The compiled information is intended to serve as a starting point for all following data evaluations.

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