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首页> 外文期刊>Chemosphere >Determination of deployment specific chemical uptake rates for SDB-RPD Empore disk using a passive flow monitor (PFM)
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Determination of deployment specific chemical uptake rates for SDB-RPD Empore disk using a passive flow monitor (PFM)

机译:使用被动流量监控器(PFM)确定SDB-RPD Empore磁盘的部署特定化学吸收率

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摘要

The use of the adsorbent styrenedivinylbenzene-reverse phase sulfonated (SDB-RPD) Empore disk in a chemcatcher type passive sampler is routinely applied in Australia when monitoring herbicides in aquatic environments. One key challenge in the use of passive samplers is mitigating the potentially confounding effects of varying flow conditions on chemical uptake by the passive sampler. Performance reference compounds (PRCs) may be applied to correct sampling rates (R_s) for site specific changed in flow and temperature however evidence suggests the use of PRCs is unreliable when applied to adsorbent passive samplers. The use of the passive flow monitor (PFM) has been introduced for the assessment of site-specific changes in water flow. In the presented study we have demonstrated that the R_s at which both atrazine and prometryn are accumulated within the SDB-RPD-Empore disk is dependent on the flow conditions. Further, the calibration of the measured R_s for chemical uptake by the SDB-RPD-Empore disk to the mass lost from the PFM has shown that the PFM provides an accurate measure of R_s for flow velocities from 0 to 16 cm s~(-1). Notably, for flow rates >16cms~(-1), a non linear increase in the R_s of both her-bicides was observed which indicates that the key resistance to uptake into the SDB-RPD Empore disk is associated with the diffusion through the overlying diffusion limiting membrane. Overall the greatest uncertainty remains at very low flow conditions, which are unlikely to often occur in surface waters. Validation of the PFM use has also been undertaken in a limited field study.
机译:在澳大利亚,在水生环境中监测除草剂时,通常在化学捕集器型被动采样器中使用吸附性苯乙烯二乙烯基苯反相磺化(SDB-RPD)Empore圆盘。使用无源采样器的一个关键挑战是减轻变化的流动条件对无源采样器吸收化学物质的潜在混杂影响。可以将性能参考化合物(PRC)应用于流量和温度特定位置变化的正确采样率(R_s),但是有证据表明,将PRCS用于吸附剂被动采样器时并不可靠。已引入使用被动流量监控器(PFM)来评估特定地点的水流量变化。在提出的研究中,我们证明了SDB-RPD-Empore盘中阿特拉津和脯氨酰胺都积累的R_s取决于流动条件。此外,对SDB-RPD-Empore圆盘测量的化学吸收的R_s对从PFM损失的质量的校准表明,PFM为0至16 cm s〜(-1)的流速提供了R_s的准确测量。 )。值得注意的是,对于> 16cms〜(-1)的流量,观察到两个herbicides的R_s呈非线性增加,这表明摄取到SDB-RPD Empore盘中的关键阻力与通过上覆层的扩散有关扩散限制膜。总的来说,最大的不确定性仍然存在于非常低的流量条件下,在地表水中这种情况不太可能经常发生。在有限的现场研究中还对PFM的使用进行了验证。

著录项

  • 来源
    《Chemosphere》 |2011年第9期|p.1290-1295|共6页
  • 作者单位

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd., Coopers Plains, QLD 4108, Australia;

    Queensland Bulk Water Supply Authority Trading as Seqwater, Level 3, 240 Margaret St., Brisbane City QLD 4000, TO Box 16146, City East QLD 4002, Australia;

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd., Coopers Plains, QLD 4108, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Herbicide; Passive sampling; SDB-Empore; Chemcatcher;

    机译:除草剂;被动采样;SDB-Empore;化学捕手;

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