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Analyzing Mixing Inhomogeneity in a Microfluidic Device by Microscale Schlieren Technique
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Published on: June 12, 2015

Concentration fluctuations in fluid mixtures. II.

Robert M Mazo1, Enrico Matteoli, Paul E Smith

  • 1Department of Chemistry and Institute of Theoretical Science, University of Oregon, Eugene, Oregon 97405, USA. mazo@uoregon.edu

The Journal of Chemical Physics
|June 25, 2009
PubMed
Summary

This study validates a method for analyzing fluctuations in multicomponent systems. The approximation is effective for binary mixtures but less so for ternary systems, with results correlating to molar volumes.

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Area of Science:

  • Physical Chemistry
  • Thermodynamics
  • Chemical Engineering

Background:

  • Understanding relative fluctuations in multicomponent systems is crucial for predicting thermodynamic behavior.
  • Previous work established a method for extracting fluctuation information from multicomponent systems.

Purpose of the Study:

  • To test the applicability and limitations of a previously developed method for analyzing relative fluctuations.
  • To evaluate the method's performance across various binary and ternary mixtures.
  • To compare predicted fluctuation ratios with molar volume ratios.

Main Methods:

  • Application of a previously developed analytical method to ten binary and one ternary system.
  • Analysis of the method's accuracy across different mole fraction ranges.
  • Comparison of predicted number fluctuation ratios with calculated molar volume ratios.

Main Results:

  • The approximation demonstrated good performance for binary systems with mole fractions between 0.15 and 0.85.
  • For the studied ternary system (chloroform-methanol-acetone), the method provided less information and was valid over a narrower range.
  • A strong correlation was observed between the predicted ratio of number fluctuations and the ratio of molar volumes.

Conclusions:

  • The fluctuation analysis method is reliable for binary systems within a specific composition range.
  • The method's utility is limited in ternary systems, requiring careful consideration of composition.
  • The ratio of number fluctuations is closely related to the ratio of molar volumes in these systems.