首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Application of passive sampling devices for screening of micro-pollutants in marine aquaculture using LC-MS/MS
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Application of passive sampling devices for screening of micro-pollutants in marine aquaculture using LC-MS/MS

机译:使用LC-MS / MS的被动采样设备在海水养殖中微污染物的筛选中的应用

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Knowledge on the presence of micro-pollutants, in particular emerging contaminants, such as pharmaceuticals, biocides or some pesticides, in semi-enclosed coastal areas, where fish farms are installed, is very limited. This article shows data on the presence of micro-pollutants over I year monitoring campaign carried out in a fish farm placed on the Mediterranean Sea. With this work. the results of the development of an analytical procedure which, makes use of passive sampling techniques (with polar organic chemical integrative samplers, POCIS, pharmaceutical configuration) and of the LC-QLIT-MS system. are presented. The development of the analytical procedure entail laboratory-based calibration with the samplers POCIS, for calculating uptake rates and sampling rates of compounds representative of a wide range of polarity (4.56 >= log K-OW >= -0.12). The uptake of the target compounds in the sampler POCIS, follows a linear pattern for most compounds, and sampling rates varied from 0.001 to 0.319 I/d. The calibration experiments have shown that POCIS pharmaceutical configuration could be used for sampling other non-target compounds, such as pesticides and biocides with a log K-OW <= 4. The sampling rates for each selected compound were obtained using spiked seawater for further estimation of time-weighted average (TWA) concentration of micro-pollutants in the water column, during the field study. An analytical method was developed with the LC-QLIT-MS system and validated to ensure a satisfactory performance for the detection of the target micro-pollutants in water. The limits of detection (LODs) achieved were between 0.01 and 1.50 mu g/l. During the monitoring campaign, among the selected compounds, metronidazole, erythromycin, simazine, atrazine, diuron, terbutryn, irgarol, trimethoprim, carbaryl, flumequine, TCMTB and diphenyl sulphone (DPS) were detected. Most of target compounds found were at average concentrations which ranged from 0.01 to 75 ng/l. Irgarol, simazine, diuron, atrazine and DPS were the micro-pollutants most frequently detected over the period of the monitoring programme carried out. (C) 2008 Elsevier B.V. All rights reserved.
机译:在安装有养鱼场的半封闭沿海地区,关于微污染物,特别是新出现的污染物,例如药品,杀生物剂或某些农药的存在的知识非常有限。本文显示了在位于地中海的一个养鱼场进行的为期一年的监测活动中,微量污染物的存在数据。有了这项工作。分析程序的开发结果,该程序利用了被动采样技术(使用极性有机化学综合采样器,POSIS,药物配置)和LC-QLIT-MS系统。被提出。分析程序的发展需要使用采样器POCIS进行基于实验室的校准,以计算代表大范围极性(4.56> = log K-OW> = -0.12)的化合物的吸收率和采样率。对于大多数化合物,进样器POCIS中目标化合物的吸收呈线性模式,且采样率在0.001至0.319 I / d之间变化。校准实验表明,POCIS药物配置可用于对其他非目标化合物(例如对数K-OW <= 4的农药和杀生物剂)进行采样。每种选定化合物的采样率均使用加标海水获得,用于进一步估算田间研究期间水柱中微污染物的时间加权平均(TWA)浓度的变化。用LC-QLIT-MS系统开发了一种分析方法,并经过验证可确保令人满意的性能,以检测水中的目标微污染物。达到的检测限(LOD)在0.01和1.50μg / l之间。在监测活动期间,在选定的化合物中检测到了甲硝唑,红霉素,西马津,阿特拉津,地隆,特布丁,依加洛尔,甲氧苄啶,西维因,氟草胺,TCMTB和二苯砜(DPS)。发现的大多数目标化合物的平均浓度范围为0.01至75 ng / l。在执行监测程序期间,最常检测到的是微量的污染物,如Irgarol,simazine,diuron,atrazine和DPS。 (C)2008 Elsevier B.V.保留所有权利。

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