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IMPROVEMENTS IN POLLUTANT MONITORING: OPTIMIZING SILICONE FOR CO-DEPLOYMENT WITH POLYETHYLENE PASSIVE SAMPLING DEVICES

机译:污染物监测方面的改进:与聚乙烯无源采样设备一起共沉淀优化硅树脂

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摘要

Sequestering semi-polar compounds can be difficult with low-density polyethylene (LDPE), but those pollutants may be more efficiently absorbed using silicone. In this work, optimized methods for cleaning, infusing reference standards, and polymer extraction are reported along with field comparisons of several silicone materials for polycyclic aromatic hydrocarbons (PAHs) and pesticides. In a final field demonstration, the most optimal silicone material is coupled with LDPE in a large-scale study to examine PAHs in addition to oxygenated-PAHs (OPAHs) at a Superfund site. OPAHs exemplify a sensitive range of chemical properties to compare polymers (log Kow 0.2–5.3), and transformation products of commonly studied parent PAHs. On average, while polymer concentrations differed nearly 7-fold, water-calculated values were more similar (about 3.5-fold or less) for both PAHs (17) and OPAHs (7). Individual water concentrations of OPAHs differed dramatically between silicone and LDPE, highlighting the advantages of choosing appropriate polymers and optimized methods for pollutant monitoring.
机译:使用低密度聚乙烯(LDPE)很难隔离半极性化合物,但是使用有机硅可以更有效地吸收这些污染物。在这项工作中,报告了用于清洗,注入参考标准品和聚合物提取的优化方法,以及几种用于多环芳烃(PAHs)和农药的有机硅材料的现场比较。在最后的现场演示中,在大型研究中,最理想的有机硅材料与LDPE结合使用,以检查Superfund站点中的PAH和氧化PAH(OPAH)。 OPAH举例说明了化学性质的敏感范围,可用来比较聚合物(log Kow 0.2-5.3)和常用母体PAH的转化产物。平均而言,尽管聚合物浓度相差近7倍,但PAH(17)和OPAH(7)的水计算值更为相似(约3.5倍或更小)。有机硅和LDPE之间的OPAHs各自的水浓度差异很大,突出了选择合适的聚合物和优化污染物监测方法的优势。

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