Univ Brest, CNRS, Lab-STICC UMR 6285, 29200, Brest, France.
Sci Rep. 2022 May 3;12(1):7209. doi: 10.1038/s41598-022-11355-w.
This paper reports on dielectric properties of ternary mixtures involving sodium chloride (NaCl) and sucrose (CHO) dissolved into water (HO). Broadband electromagnetic characterizations of such mixtures at various concentrations were performed, evidencing a dual behavior made of conductive effects at low frequencies and dipolar relaxation at microwave frequencies. Conductive and dielectric properties resulting from these both effects were integrated into predictive models for variations of Cole-Cole model parameters. Based upon this modelling, an innovative microwave-based sensor able to retrieve concentrations of both sodium chloride and sucrose in ternary aqueous solutions was introduced, designed, realized and assessed. The proposed sensor shows an error lower than 5.5% for concentration ranges of 0 to 154 mmol/L for sodium chloride and 0 to 877 mmol/L for sucrose.
本文报告了三元混合物的介电性能,其中包含溶解在水中的氯化钠(NaCl)和蔗糖(CHO)。对不同浓度的此类混合物进行了宽带电磁特性研究,证明了低频下的导电效应和微波频率下的偶极弛豫的双重行为。这两种效应产生的导电和介电性能被整合到科尔-科尔模型参数变化的预测模型中。在此基础上,提出了一种基于微波的新型传感器,能够测量三元水溶液中氯化钠和蔗糖的浓度。该传感器的设计、实现和评估结果表明,其浓度测量误差低于 5.5%,测量范围为 0 至 154mmol/L 的氯化钠和 0 至 877mmol/L 的蔗糖。