Al-Salih Hilal, Abu-Lebdeh Yaser
Energy, Mining, and Environment Research Centre, National Research Council of Canada, 1200 Montreal Road, Ottawa, ON, K1A 0R6, Canada.
Sci Rep. 2024 Apr 3;14(1):7894. doi: 10.1038/s41598-024-56552-x.
The relationship between phase diagram features around the solid-liquid equilibrium region and ionic conductivity in aqueous solutions is not well understood over the whole concentration range as is the case for acidic aqueous solutions. In this work, we have studied the ionic conductivity (κ) as a function of molar fraction (x) and temperature (T) for four acid/water solutions namely, monoprotic hydrochloric acid (HCl) and nitric acid (HNO), diprotic sulfuric acid (HSO) and triprotic phosphoric acid (HPO) along with their binary phase diagrams. The connection between the main features of the phase diagrams and the trends in the ionic conductivity isotherms is established with a new insight on the two pertinent dominant conductivity mechanisms (hopping and vehicular). Ionic conductivity at different temperatures were collected from literature and fitted to reported isothermal (κ vs. x) and iso-compositional (κ vs. T) equations along with a novel semi-empirical equation (κ = f (x, T)) for diprotic and triprotic acids. This equation not only has the best fit for acids with different valency; but also contains four parameters, less than any other similar equation in literature. This work is one of few that advances the understanding of the intricate relationship between structure and ionic transport in various acidic aqueous solutions.
与酸性水溶液的情况一样,在整个浓度范围内,固液平衡区域周围的相图特征与水溶液中离子电导率之间的关系尚未得到充分理解。在这项工作中,我们研究了四种酸/水溶液(即一元盐酸(HCl)和硝酸(HNO₃)、二元硫酸(H₂SO₄)和三元磷酸(H₃PO₄))的离子电导率(κ)作为摩尔分数(x)和温度(T)的函数,以及它们的二元相图。通过对两种相关的主导导电机制(跳跃和载流子)的新见解,建立了相图的主要特征与离子电导率等温线趋势之间的联系。从文献中收集了不同温度下的离子电导率,并将其拟合到已报道的等温方程(κ对x)和等组成方程(κ对T),以及一个针对二元和三元酸的新型半经验方程(κ = f(x, T))。该方程不仅对不同价态的酸拟合效果最佳;而且包含四个参数,比文献中任何其他类似方程都少。这项工作是为数不多的能够增进对各种酸性水溶液中结构与离子传输之间复杂关系理解的研究之一。