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时间积分被动采样:化学捕集器对波动污染物浓度的积分效果如何?

Time integrative passive sampling: how well do chemcatchers integrate fluctuating pollutant concentrations?

作者信息

Shaw Melanie, Mueller Jochen F

机构信息

National Research Centre for Environmental Toxicology (EnTox), University of Queensland, 39 Kessels Road, Coopers Plains, 4108 Queensland, Australia.

出版信息

Environ Sci Technol. 2009 Mar 1;43(5):1443-8. doi: 10.1021/es8021446.

Abstract

Many environments are subject to periodic fluctuations in pollutant concentrations. Passive samplers, which can provide time weighted average concentrations integrated over the period of deployment, are ideally suited as monitoring tools for these environments. However, the potential for fluctuating concentrations to limit the integrative period of sampling needs to be investigated before sampling data from these environments can be interpreted with confidence. In this study, Chemcatchers using SDB-RPS Empore disks as the sorbent phase were exposed to herbicides for 28 days in a calibration chamber. A pulsed event of 10-fold greater concentrations was introduced on day 5 and returned to background concentrations over a period of 3 days. Observed uptake was compared with that predicted by a first order uptake model and by the reduced form of this model describing a strictly integrative response for samplers deployed with two surfaces exposed (two-sided naked), with one surface exposed (one-sided naked) and with a polyethersulfone membrane. Membrane covered samplers predicted time weighted average water concentrations within a factor 0.7-1.2 after 28 days exposure, while one- and two-sided naked samplers under predicted the average by a factor 1.9-2.2 and 2.4-3.2, respectively. First order modeling predicted uptake in membrane covered and one-sided naked samplers and was therefore applied to predict sampler response to several fluctuating concentration event scenarios.

摘要

许多环境中的污染物浓度会出现周期性波动。被动采样器能够提供在部署期间积分得到的时间加权平均浓度,是这些环境理想的监测工具。然而,在能够自信地解释来自这些环境的采样数据之前,需要研究浓度波动限制采样积分期的可能性。在本研究中,以SDB-RPS Empore盘为吸附相的Chemcatcher被动采样器在一个校准室内暴露于除草剂中28天。在第5天引入了浓度高出10倍的脉冲事件,并在3天内恢复到背景浓度。将观察到的吸附量与通过一级吸附模型以及该模型的简化形式预测的吸附量进行比较,简化形式描述的是针对两面暴露(双面裸露)、单面暴露(单面裸露)以及带有聚醚砜膜的采样器的严格积分响应。在暴露28天后,覆盖膜的采样器预测的时间加权平均水浓度在0.7至1.2倍的范围内,而单面和双面裸露的采样器预测的平均值分别低了1.9至2.2倍和2.4至3.2倍。一级模型预测了覆盖膜和单面裸露采样器的吸附情况,因此被用于预测采样器对几种浓度波动事件情景的响应。

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