Dipartimento di Scienze Chimiche, Biologiche, Farmaceutiche ed Ambientali, Università di Messina, Viale F. Stagno d'Alcontres 31, 98166 Messina, Italy.
Dipartimento di Chimica e Tecnologie Chimiche, Università della Calabria, Via P. Bucci, 87036 Arcavacata di Rende (CS), Italy.
Environ Sci Process Impacts. 2020 Aug 19;22(8):1731-1742. doi: 10.1039/d0em00136h.
A study on the sequestering ability between arsenate, AsO43-, and Cu2+ and Zn2+ in aqueous solution is reported. The results of the elaboration of potentiometric data include only species with 1 : 1 metal to ligand ratio for Cu2+-arsenate system, namely CuLH2, CuLH, CuL, and CuLOH (L = AsO43-). For the Zn2+-arsenate system, a speciation model with only two species with both 1 : 1 and 1 : 2 metal to ligand ratios was obtained, namely ML and ML2. Spectrophotometric titrations were also employed in the study of the Cu2+-AsO43- system, and the results of the analysis of experimental data fully confirmed potentiometric ones. The potentiometric titrations were performed under different conditions of temperature (288.15 ≤ T/K ≤ 310.15, at I = 0.15 mol L-1) and ionic strength (0.15 ≤ I/mol L-1 ≤ 1 in NaCl). The dependence of formation constants of the complex species on ionic strength and temperature was also evaluated, as well as the enthalpy and entropy change values were obtained. Laser desorption mass spectrometry (LD MS) and tandem mass spectrometry (MS/MS) were exploited to confirm Cu2+-AsO43- and Zn2+-AsO43- complex formation and to determine both their composition and structural characteristics. Simulation of speciation profiles under natural water conditions was performed. The sequestering ability of arsenate towards Cu2+ and Zn2+ was quantified under different conditions of pH, temperature and ionic strength, typical of several natural waters. Examples of arsenate distribution under seawater and freshwater conditions were reported.
本文报道了在水溶液中砷酸盐(AsO43-)与 Cu2+和 Zn2+的鳌合能力的研究。详细阐述电位数据的结果仅包括 Cu2+-砷酸盐体系中具有 1∶1 金属与配体比的物种,即 CuLH2、CuLH、CuL 和 CuLOH(L=AsO43-)。对于 Zn2+-砷酸盐体系,获得了一个仅具有 1∶1 和 1∶2 金属与配体比的两种物种的形态模型,即 ML 和 ML2。还采用分光光度滴定法研究了 Cu2+-AsO43-体系,实验数据的分析结果完全证实了电位法的结果。在不同的温度(288.15≤T/K≤310.15,I=0.15 mol L-1)和离子强度(0.15≤I/mol L-1≤1 在 NaCl 中)条件下进行了电位滴定。还评估了配合物种形成常数对离子强度和温度的依赖性,并获得了焓变和熵变值。利用激光解吸质谱(LD MS)和串联质谱(MS/MS)来确认 Cu2+-AsO43-和 Zn2+-AsO43-的配合物形成,并确定它们的组成和结构特征。在天然水条件下模拟了形态分布。在不同的 pH、温度和离子强度条件下,定量研究了砷酸盐对 Cu2+和 Zn2+的鳌合能力,这些条件典型地存在于几种天然水中。报道了在海水和淡水条件下砷酸盐的分布实例。