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用于城市径流中农药污染物筛选的连续低水平水生监测(CLAM)采样器:分析方法和现场测试案例。

Continuous low-level aquatic monitoring (CLAM) samplers for pesticide contaminant screening in urban runoff: Analytical approach and a field test case.

机构信息

California Department of Pesticide Regulation, Environmental Monitoring, Sacramento, CA, USA.

California Department of Fish and Wildlife, Water Pollution Control Lab, Sacramento, CA, USA.

出版信息

Chemosphere. 2017 Oct;184:1028-1035. doi: 10.1016/j.chemosphere.2017.06.085. Epub 2017 Jun 21.

Abstract

Monitoring of surface waters for organic contaminants is costly. Grab water sampling often results in non-detects for organic contaminants due to missing a pulse event or analytical instrumentation limitations with a small sample size. Continuous Low-Level Aquatic Monitoring (CLAM) samplers (C.I.Agent Solutions) continually extract and concentrate organic contaminants in surface water onto a solid phase extraction disk. Utilizing CLAM samplers, we developed a broad spectrum analytical screen for monitoring organic contaminants in urban runoff. An intermediate polarity solid phase, hydrophobic/lipophilic balance (HLB), was chosen as the sorbent for the CLAM to target a broad range of compounds. Eighteen urban-use pesticides and pesticide degradates were targeted for analysis by LC/MS/MS, with recoveries between 59 and 135% in laboratory studies. In field studies, CLAM samplers were deployed at discrete time points from February 2015 to March 2016. Half of the targeted chemicals were detected with reporting limits up to 90 times lower than routine 1-L grab samples with good precision between field replicates. In a final deployment, CLAM samplers were compared to 1-L water samples. In this side-by-side comparison, imidacloprid, fipronil, and three fipronil degradates were detected by the CLAM sampler but only imidacloprid and fipronil sulfone were detected in the water samples. However, concentrations of fipronil sulfone and imidacloprid were significantly lower with the CLAM and a transient spike of diuron was not detected. Although the CLAM sampler has limitations, it can be a powerful tool for development of more focused and informed monitoring efforts based on pre-identified targets in the field.

摘要

监测地表水中的有机污染物成本高昂。由于错过了脉冲事件或分析仪器对小样本量的限制, 采集水样往往导致有机污染物无法检出。连续低水平水生监测 (CLAM) 采样器 (C.I.Agent Solutions) 持续从地表水中提取并浓缩有机污染物到固相萃取盘上。我们利用 CLAM 采样器开发了一种广谱分析方法,用于监测城市径流中的有机污染物。选择中等极性固相、疏水性/亲脂性平衡 (HLB) 作为 CLAM 的吸附剂,以针对广泛的化合物。通过 LC/MS/MS 分析了 18 种城市用农药和农药降解物,实验室研究中的回收率在 59%至 135%之间。在野外研究中,CLAM 采样器从 2015 年 2 月至 2016 年 3 月以离散时间点进行部署。一半的目标化学物质被检测到,报告限低至常规 1-L 采集水样的 90 倍,野外重复之间的精密度良好。在最后一次部署中,CLAM 采样器与 1-L 水样进行了比较。在这种并排比较中,CLAM 采样器检测到了噻虫啉、氟虫腈和三种氟虫腈降解物,但只有水样中检测到噻虫啉和氟虫腈砜。然而,CLAM 中的氟虫腈砜和噻虫啉浓度明显较低,且未检测到二噁烷的瞬态峰值。尽管 CLAM 采样器存在局限性,但它可以成为一种强大的工具,用于根据现场预先确定的目标开展更有针对性和更明智的监测工作。

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