Graduate School of Engineering , Osaka City University , Sugimoto 3-3-138 , Sumiyoshi 558-8585 , Osaka , Japan.
Swiss Centre for Applied Ecotoxicology Eawag-EPFL , Überlandstrasse 133 , CH-8600 Dübendorf , Switzerland.
Environ Sci Technol. 2019 Feb 5;53(3):1482-1489. doi: 10.1021/acs.est.8b06225. Epub 2019 Jan 17.
Aquatic integrative passive samplers are used to determine aqueous concentrations of polar organic pollutants, yet their uptake mechanisms are poorly understood. We introduce a one-dimensional model to simulate uptake by a passive sampler, Chemcatcher. The model considers the uptake as molecular diffusion through a series consisting of the aqueous boundary layer (ABL), the membrane filter (MF), and the sorbent disk with concurrent sorption by matrix of the MF and the disk. Uptake profiles of ∼20 polar chemicals measured over a week and a month were accurately modeled. Characteristic behaviors such as lag phases, linear and curved uptake, and equilibrating behavior were explained well by the model. As the model is mechanistically based, it was able to show the combined influences of the MF/water ( K) and disk/water ( K) partition coefficients, diffusion coefficients, and the ABL thickness on the sampling rates. On the basis of the model results, we offer three concrete recommendations for achieving the linear uptake needed for measuring time-weighted average concentrations: (i) use a MF that does not significantly sorb chemicals (e.g., log K < 3) to avoid lag phases, (ii) use a sorbent with strong sorption properties (e.g., log K > 6) for effective trapping of chemicals on the disk top layer, and (iii) make the ABL and/or the MF thicker so that the diffusion toward the disk slows.
水基整合型被动采样器用于测定水体中极性有机污染物的浓度,但人们对其吸收机制知之甚少。我们引入了一个一维模型来模拟被动采样器 Chemcatcher 的吸收过程。该模型考虑了通过一系列组件的分子扩散,包括水边界层(ABL)、膜过滤器(MF)和吸附剂盘,同时考虑了 MF 和盘基质的吸附作用。该模型准确地模拟了一周和一个月内测量的约 20 种极性化学物质的吸收曲线。模型很好地解释了滞后期、线性和曲线吸收以及平衡行为等特征行为。由于该模型是基于机理的,因此能够显示 MF/水(K)和盘/水(K)分配系数、扩散系数以及 ABL 厚度对采样速率的综合影响。基于模型结果,我们提出了三个具体建议,以实现测量时间加权平均浓度所需的线性吸收:(i)使用对化学物质吸附性弱的 MF(例如,log K < 3),以避免滞后期;(ii)使用对化学物质吸附性强的吸附剂(例如,log K > 6),以有效捕获盘顶层的化学物质;(iii)增加 ABL 和/或 MF 的厚度,以减缓向盘的扩散。