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Effect of housing geometry on the performance of Chemcatcher~(TM) passive sampler for the monitoring of hydrophobic organic pollutants in water

机译:外壳几何形状对Chemcatcher〜(TM)无源采样器性能的影响,该采样器用于监测水中的疏水性有机污染物

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摘要

Passive sampling of pollutants in water has been gaining acceptance for environmental monitoring. Previously, an integrative passive sampler (the Chemcatcher~(TM)) was developed and calibrated for the measurement of time weighted average concentrations of hydrophobic pollutants in water. Effects of physicochemical properties and environmental variables (water temperature and turbulence) on kinetic and thermodynamic parameters characterising the exchange of analytes between the sampler and water have been published. In this study, the effect of modification in sampler housing geometry on these calibration parameters was studied. The results obtained for polycyclic aromatic hydrocarbons show that reducing the depth of the cavity in the sampler body geometry increased the exchange kinetics by approximately twofold, whilst having no effect on the correlation between the uptake and offload kinetics of analytes. The use of performance reference compounds thus avoids the need for extensive re-calibration when the sampler body geometry is modified.
机译:水中污染物的被动采样已获得环境监测的认可。以前,已经开发了集成的无源采样器(ChemcatcherTM)并对其进行了校准,以测量水中疏水性污染物的时间加权平均浓度。已公开了理化特性和环境变量(水温和湍流)对表征采样器和水之间交换分析物的动力学和热力学参数的影响。在这项研究中,研究了采样器外壳几何形状的修改对这些校准参数的影响。获得的多环芳烃的结果表明,减小采样器主体几何结构中空腔的深度可使交换动力学提高大约两倍,而对分析物的吸收动力学和卸载动力学之间的相关性没有影响。因此,在修改采样器主体的几何形状时,使用性能参考化合物可避免进行广泛的重新校准。

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