Naumann R, Alexander-Weber Ch, Eberhardt R, Giera J, Spitzer P
Max Planck Institute of Polymer Research, Ackermannweg 10, 55128 Mainz.
Anal Bioanal Chem. 2002 Nov;374(5):778-86. doi: 10.1007/s00216-002-1506-5. Epub 2002 Sep 20.
Routine pH measurements are carried out with pH meter-glass electrode assemblies. In most cases the glass and reference electrodes are thereby fashioned into a single probe, the so-called 'combination electrode' or simply 'the pH electrode'. The use of these electrodes is subject to various effects, described below, producing uncertainties of unknown magnitude. Therefore, the measurement of pH of a sample requires a suitable calibration by certified standard buffer solutions (CRMs) traceable to primary pH standards. The procedures in use are based on calibrations at one point, at two points bracketing the sample pH and at a series of points, the so-called multi-point calibration. The multi-point calibration (MPC) is recommended if minimum uncertainty and maximum consistency are required over a wide range of unknown pH values. Details of uncertainty computations for the two-point and MPC procedure are given. Furthermore, the multi-point calibration is a useful tool to characterise the performance of pH electrodes. This is demonstrated with different commercial pH electrodes. ELECTRONIC SUPPLEMENTARY MATERIAL is available if you access this article at http://dx.doi.org/10.1007/s00216-002-1506-5. On that page (frame on the left side), a link takes you directly to the supplementary material.
常规pH测量是使用pH计 - 玻璃电极组件进行的。在大多数情况下,玻璃电极和参比电极被制作成一个单一的探头,即所谓的“复合电极”或简称为“pH电极”。这些电极的使用会受到各种效应的影响,如下所述,会产生大小未知的不确定度。因此,测量样品的pH值需要用可溯源至pH基准标准的经认证的标准缓冲溶液(CRM)进行适当校准。使用的程序基于一点校准、在样品pH值两侧的两点校准以及一系列点的校准,即所谓的多点校准。如果在广泛的未知pH值范围内需要最小不确定度和最大一致性,则推荐使用多点校准(MPC)。给出了两点校准和MPC程序的不确定度计算细节。此外,多点校准是表征pH电极性能的有用工具。这通过不同的商用pH电极进行了演示。如果您通过http://dx.doi.org/10.1007/s00216-002-1506-5访问本文,可获取电子补充材料。在该页面(左侧框架),一个链接可直接带您进入补充材料。