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首页> 外文期刊>Chemosphere >Uptake Rates Of Alkylphenols, Pahs And Carbazoles In Semipermeable Membrane Devices (spmds) And Polar Organic Chemical Integrative Samplers (pocis)
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Uptake Rates Of Alkylphenols, Pahs And Carbazoles In Semipermeable Membrane Devices (spmds) And Polar Organic Chemical Integrative Samplers (pocis)

机译:半透膜设备(spmds)和极性有机化学综合采样器(pocis)中烷基酚,Pahs和咔唑的吸收率

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Passive sampling devices provide a useful contribution to the monitoring of contaminants in the aquatic environment. However, calibration data needed for the calculation of water concentrations from sampler accumulations are restricted to a limited number of compound classes. Thus uptake of a range of alkyl-ated phenols (AP), polycyclic aromatic hydrocarbons (PAH) and carbazoles was determined for semipermeable membrane devices (SPMDs) and polar organic chemical integrative samplers (POCIS) using a flow through exposure system. Sampling rates ranged from 0.02 to 0.26 ld~(-1) for POCIS and 0.02 to 13.83 l d~(-1) for SPMDs. Observed SPMD uptake was also compared to that predicted by an empirical model including the use of performance reference compounds (PRCs). Predicted sampling rates did not differ by more than a factor of 1.3 from experimental values for PAH, providing further evidence that the PRC approach can be successfully used to determine in situ sampling rates for these compounds. Experimental sampling rates for AP in SPMDs were, however, much lower than predicted. This discrepancy was too large to be explained by small uncertainties in the calibration system or in the calculations. Based on these data we conclude that while hydrophobic AP are accumulated by SPMDs their partitioning cannot be predicted from their log K_(ow) using current methods. Due to this lower than expected uptake, sampling rates were only higher in SPMDs than POCIS in the range of log K_(ow)> 5.0. Simultaneous deployment of both sampler types allows the study of compounds with a broad range of physicochemical properties.
机译:无源采样设备为监测水生环境中的污染物提供了有用的帮助。但是,根据采样器的积聚计算水浓度所需的校准数据仅限于有限数量的化合物类别。因此,使用流通式曝光系统确定了半透膜装置(SPMD)和极性有机化学综合采样器(POCIS)对一系列烷基化酚(AP),多环芳烃(PAH)和咔唑的吸收。 POCIS的采样率范围为0.02至0.26 ld〜(-1),而SPMD的采样率范围为0.02至13.83 l d〜(-1)。还将观察到的SPMD摄取量与包括使用性能参考化合物(PRC)在内的经验模型预测的摄取量进行了比较。预测的采样率与PAH的实验值相差不超过1.3倍,这进一步证明了PRC方法可以成功用于确定这些化合物的原位采样率。但是,SPMD中AP的实验采样率远低于预期。这种差异太大,无法用校准系统或计算中的小的不确定性来解释。基于这些数据,我们得出结论,尽管疏水性AP由SPMD积累,但使用当前方法无法从其log K_(ow)预测其分配。由于吸收率低于预期,因此在log K_(ow)> 5.0的范围内,SPMD中的采样率仅高于POCIS。两种采样器类型的同时部署可以研究具有广泛理化特性的化合物。

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