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乙醇、甲醇和乙腈的统一 pH 测量及其与水的混合物。

Unified pH Measurements of Ethanol, Methanol, and Acetonitrile, and Their Mixtures with Water.

机构信息

DFM A/S, Kogle Allé 5, 2970 Hørsholm, Denmark.

Government Office of the Capital City Budapest (BFKH), Németvölgyi út 37-39, 1124 Budapest, Hungary.

出版信息

Sensors (Basel). 2021 Jun 7;21(11):3935. doi: 10.3390/s21113935.

Abstract

Measurement of pH in aqueous-organic mixtures with different compositions is of high importance in science and technology, but it is, at the same time, challenging both from a conceptual and practical standpoint. A big part of the difficulty comes from the fundamental incomparability of conventional pH values between solvents (pH, solvent-specific scales). The recent introduction of the unified pH (pH) concept opens up the possibility of measuring pH, expressed as pHabsH2O, in a way that is comparable between solvent, and, thereby, removing the conceptual problem. However, practical issues remain. This work presents the experience of the authors with measuring pHabsH2O values in mixtures of methanol, ethanol, and acetonitrile, with water, but without the presence of buffers or other additives. The aim was to assigned pHabsH2O values to solvent-water mixtures using differential potentiometry and the 'pH-ladder' method. Measurements were made of the potential difference between glass electrodes immersed in different solutions, separated by an ionic liquid salt bridge. Data were acquired for a series of solutions of varying solvent content. This work includes experiences related to: a selection of commercial electrodes, purity of starting material, and comparability between laboratories. Ranges of pHabsH2O values for selected compositions of solvent-water mixtures are presented.

摘要

在科学技术中,测量不同组成的水-有机溶剂混合物中的 pH 值非常重要,但从概念和实践的角度来看,这同时也是具有挑战性的。这种困难的很大一部分来自于溶剂之间常规 pH 值(pH 值,溶剂特定的标度)的基本不可比性。最近引入的统一 pH(pH)概念为测量 pH 值(表示为 pHabsH2O)开辟了一种在溶剂之间可比较的可能性,并因此消除了概念问题。然而,实际问题仍然存在。这项工作介绍了作者在甲醇、乙醇和乙腈与水的混合物中测量 pHabsH2O 值的经验,但没有缓冲液或其他添加剂的存在。目的是使用差示电位法和“pH 阶梯”法为溶剂-水混合物分配 pHabsH2O 值。通过浸入不同溶液中的玻璃电极之间的离子液体盐桥来测量电位差。针对不同溶剂含量的一系列溶液进行了测量。这项工作包括与以下方面相关的经验:商业电极的选择、起始材料的纯度以及实验室之间的可比性。还给出了选定溶剂-水混合物组成的 pHabsH2O 值范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4cd/8201227/8f59542e350c/sensors-21-03935-g001.jpg

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