Marcinek Saša, Chapoulie Arnaud, Salaün Pascal, Smith Scott, Omanović Dario
Ruđer Bošković Institute, Center for Marine and Environmental Research, Bijenička Cesta 54, 10000, Zagreb, Croatia.
Ecole Nationale Supérieure D'Ingénieurs de Caen (ENSICAEN), 6 Boulevard Maréchal Juin, 14050, Caen, France.
Talanta. 2021 May 1;226:122170. doi: 10.1016/j.talanta.2021.122170. Epub 2021 Feb 2.
Copper (Cu) is a bio-essential trace element that is of concerns due to its potential toxicity at concentrations commonly encountered in coastal waters. Here, we revisit the applicability of Cu(II) ion selective electrode (Cu-ISE) based on a jalpaite membrane for the measurement of Cu in seawater. At high total Cu concentration (>0.1 mM), (near)Nernstian slope was obtained and determination of Cu down to fM levels was possible. However, this slope decreases with decreasing total Cu concentration (e.g. 7 mV/decade at 15 nM total Cu) making the use of a common single calibration approach unreliable. To solve this problem, we carried out several calibrations at different levels of total Cu (15 nM - 1 mM) and ethylenediamine (EN: 5 μM - 15 mM) and fitted the calibration parameters (slope and intercept) as a function of total Cu using the Gompertz function (a meta-calibration approach). The derived empirical equations allowed the determination of Cu at any total Cu concentration above 20 nM (determination of Cu at lower total Cu levels is prevented by the dissolution of the electrode). We successfully tested this meta-calibration approach in UV digested seawater in presence of a synthetic ligand (EN), isolated natural organic matter (humic acid, HA) and in a natural estuarine sample. In each case, our meta-calibration approach provided a good agreement with modeled speciation data (Visual MINTEQ), while standard single approach failed. We provide here a new method for the direct determination of the free Cu ion concentration in seawater at levels relevant for coastal waters.
铜(Cu)是一种对生物至关重要的微量元素,但由于其在沿海水域常见浓度下具有潜在毒性,因而备受关注。在此,我们重新审视基于贾帕ite膜的铜(II)离子选择性电极(Cu - ISE)用于测量海水中铜的适用性。在高总铜浓度(>0.1 mM)时,可获得(接近)能斯特斜率,并且能够测定低至飞摩尔水平的铜。然而,随着总铜浓度降低,该斜率会减小(例如,在总铜浓度为15 nM时为7 mV/十倍浓度变化),这使得使用常见的单一校准方法不可靠。为了解决这个问题,我们在不同总铜水平(15 nM - 1 mM)和乙二胺(EN:5 μM - 15 mM)下进行了多次校准,并使用冈珀茨函数(一种元校准方法)将校准参数(斜率和截距)拟合为总铜的函数。所推导的经验方程能够在总铜浓度高于20 nM时测定铜(较低总铜水平下的铜测定因电极溶解而受阻)。我们在存在合成配体(EN)、分离出的天然有机物(腐殖酸,HA)的紫外消解海水中以及天然河口样品中成功测试了这种元校准方法。在每种情况下,我们的元校准方法与模型形态数据(Visual MINTEQ)都有很好的一致性,而标准单一方法则失败了。我们在此提供了一种直接测定沿海水域相关水平下海水中游离铜离子浓度的新方法。