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更好地理解和应用基于磷钼酸铵的扩散梯度薄膜技术测量水中铯。

Better understanding and applications of ammonium 12-molybdophosphate-based diffusive gradient in thin film techniques for measuring Cs in waters.

机构信息

PSE-ENV, SEDRE, LELI, Institut de Radioprotection et de Sûreté Nucléaire (IRSN), rue de la redoute, 92262, Fontenay-aux-Roses, France.

PSE-ENV, SRTE, LR2T, Institut de Radioprotection et de Sûreté Nucléaire (IRSN), Cadarache, France.

出版信息

Environ Sci Pollut Res Int. 2019 Jan;26(2):1994-2006. doi: 10.1007/s11356-018-3719-y. Epub 2018 Nov 21.

DOI:10.1007/s11356-018-3719-y
PMID:30465239
Abstract

This study deals with further and systematic laboratory evaluation of the already known ammonium 12-molybdophosphate (AMP)-diffusive gradient in thin film (DGT) method, which is used for measuring total Cs concentration in environmental waters. This study confirms that the AMP-binding gel is not stable for pH > 6. In order to reveal a potential impact of AMP degradation on DGT application, time-series experiments were performed by deploying AMP-DGT samplers in Cs-doped moderately basic soft and hard water up to total AMP-binding gel degradation (60 and 175 h of deployment time, respectively). Linear accumulation of Cs by AMP-DGT samplers was observed up to 48 and 58 h in hard and soft waters, respectively. For this deployment time range, AMP-DGT measured over 77 ± 10 and 94 ± 16% of total Cs concentration in hard and soft water, respectively. The difference in DGT response was attributed to Ca and Mg competition reducing the uptake of AMP-DGT samplers in hard water. Shrinkage of agarose-polyacrylamide diffusive gel was experimentally observed only in hard water due to more intensive AMP-binding gel degradation in hard water. Even if the AMP-DGT response was not impacted in this study, it is recommended to use agarose hydrogel as standard diffusive gel. Based on the experience obtained from this detailed validation process, the authors propose a number of key requirements that need to be considered when developing DGT devices, with testing the performance over longer deployment times being critical. Graphical abstract ᅟ.

摘要

本研究进一步系统地评估了已被广泛应用于测量环境水中总 Cs 浓度的铵十二钼磷酸盐(AMP)-薄膜扩散梯度(DGT)方法。本研究证实,AMP 结合凝胶在 pH 值大于 6 时并不稳定。为了揭示 AMP 降解对 DGT 应用的潜在影响,通过在 Cs 掺杂的中性到碱性软、硬水中部署 AMP-DGT 采样器,进行了时间序列实验,直至 AMP 结合凝胶完全降解(分别为 60 和 175 小时的部署时间)。在硬水和软水中,AMP-DGT 采样器线性地积累 Cs,分别持续了 48 和 58 小时。在这个部署时间范围内,AMP-DGT 测量了硬水和软水中总 Cs 浓度的 77±10%和 94±16%。DGT 响应的差异归因于 Ca 和 Mg 的竞争,这减少了硬水中 AMP-DGT 采样器的摄取。实验中仅在硬水中观察到琼脂糖-聚丙烯酰胺扩散凝胶的收缩,这是由于硬水中 AMP 结合凝胶的降解更为剧烈。即使在这项研究中 AMP-DGT 的响应没有受到影响,建议使用琼脂糖水凝胶作为标准扩散凝胶。基于从这个详细验证过程中获得的经验,作者提出了一些在开发 DGT 设备时需要考虑的关键要求,其中长时间部署测试的性能是至关重要的。

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