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在没有进行固液分离的情况下,通过 AGNES 探测合成唾液中 ZnO 纳米颗粒的溶解和磷酸盐诱导转化。与 UF-ICP-MS 的比较。

Dissolution and Phosphate-Induced Transformation of ZnO Nanoparticles in Synthetic Saliva Probed by AGNES without Previous Solid-Liquid Separation. Comparison with UF-ICP-MS.

机构信息

Departament de Química , Universitat de Lleida, and AGROTECNIO , Rovira Roure 191 , 25198 Lleida , Spain.

出版信息

Environ Sci Technol. 2019 Apr 2;53(7):3823-3831. doi: 10.1021/acs.est.8b06531. Epub 2019 Mar 12.

DOI:10.1021/acs.est.8b06531
PMID:30807690
Abstract

The variation over time of free Zn ion concentration in stirred dispersions of ZnO nanoparticles (ZnO NPs) prepared in synthetic saliva at pH 6.80 and 37 °C was followed in situ (without solid-liquid separation step) with the electroanalytical technique AGNES (Absence of Gradients and Nernstian Equilibrium Stripping). Under these conditions, ZnO NPs are chemically unstable due to their reaction with phosphates. The initial stage of transformation (around 5-10 h) involves the formation of a metastable solid (presumably ZnHPO), which later evolves into the more stable hopeite phase. The overall decay rate of ZnO NPs is significantly reduced in comparison with phosphate-free background solutions of the same ionic strength and pH. The effective equilibrium solubilities of ZnO (0.29-0.47 mg·L), as well as conditional excess-ligand stability constants and fractional distributions of soluble Zn species, were determined in the absence and presence of organic components. The results were compared with the conventional ultrafiltration and inductively coupled plasma-mass spectrometry (UF-ICP-MS) methodology. AGNES proves to be advantageous in terms of speed, reproducibility, and access to speciation information.

摘要

在 pH 6.80 和 37°C 的合成唾液中制备的 ZnO 纳米粒子 (ZnO NPs) 的搅拌分散体中,自由 Zn 离子浓度随时间的变化在原位(无需固液分离步骤)通过电化学分析技术 AGNES(无梯度和能斯特平衡剥离)进行了跟踪。在这些条件下,由于 ZnO NPs 与磷酸盐的反应,它们的化学稳定性较差。转化的初始阶段(约 5-10 小时)涉及形成亚稳态固体(推测为 ZnHPO),随后其演变成更稳定的磷锌矿相。与相同离子强度和 pH 的无磷酸盐背景溶液相比,ZnO NPs 的整体衰减速率显著降低。在不存在和存在有机成分的情况下,确定了 ZnO 的有效平衡溶解度(0.29-0.47mg·L),以及条件过剩配体稳定常数和可溶性 Zn 物种的分数分布。结果与传统的超滤和电感耦合等离子体质谱法 (UF-ICP-MS) 进行了比较。AGNES 在速度、重现性和获得形态信息方面具有优势。

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