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Journal of the Mexican Chemical Society

versión impresa ISSN 1870-249X

Resumen

AYDıN, Ahmet; KESKINOğLU, Cemil; KOKBAş, Umut  y  TULI, Abdullah. Noninvasive Determination of the Amount of Ethanol in Liquid Mixtures by Ultrasound Using Bilinear Interpolation Method. J. Mex. Chem. Soc [online]. 2020, vol.64, n.1, pp.41-52.  Epub 31-Dic-2020. ISSN 1870-249X.  https://doi.org/10.29356/jmcs.v64i1.1031.

Ultrasound is used in many analysis studies, including liquid mixtures. Many mixtures are analyzed to understand their contents or properties in different situations. One of these mixtures is the ethanol-water combination. In this study, the amount of ethanol in the liquid mixture was determined noninvasively by the ultrasonic method using a microcontroller-based system. The results show that the measurements obtained were within the p<0.05 confidence interval. The characteristics evaluation of the system shows that the system can detect ethanol concentration as low as 0.552 g/L, thus the system has a broad and linear determination range for ethanol. Although the system is calibrated and tested with ethanol-water mixture, it can be used for any mixture that changes density related to the substance concentration, including different alcohols which are soluble in water (glycols, glycoethers, etc.) or any other material (solid or liquid) which is soluble in alcohol or different liquid solvent. The system has so many advantages that make it possible to use comfortably in many areas where the amount of ethanol contained in the mixture is essential. These advantages are the high accuracy and sensitivity, being noninvasive, portable, and not having a destructive effect on the substance.

Palabras llave : TOF measurement; bilinear interpolation; noninvasive ultrasonic method; mixture analysis, alcohol concentration.

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