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Biofouling confounds the uptake of trace organic contaminants by semi-permeable membrane devices (SPMDs)

机译:生物污损会使半透膜设备(SPMD)吸收痕量有机污染物

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The outer layers of layflat, low density polyethylene plastic tubing (the principal component of semi-permeable membrane devices, SPMDs) were biofouled at a clean site in Hong Kong coastal waters for periods of 1-4 weeks. Following pre-fouling, triolein was added to the SPMDs and, along with control (unfouled) devices, they were exposed to a range of organochlorine pesticides (α-HCH, aldrin, p,p′-DDT) and PAHs (anthracene, fluoranthene and benzo(a)pyrene) under laboratory conditions. Results showed that the uptake of contaminants by SPMDs was severely reduced by as much as 50% under fouling conditions in comparison to unfouled controls. The ultimate utility of SPMDs as passive monitors is thus reduced, although alternative measures, such as the use of permeability reference compounds may compensate, and allow for realistic evaluations of dissolved environmental concentrations in aquatic environments. However, due to the complexities involved in such procedures―especially as they need to be conducted on a case-by-case basis―the utility of SPMDs appears to be limited for estimates of bioavailability unless necessary calibrations are undertaken within each environment that the sampler is used.
机译:平铺的低密度聚乙烯塑料管(半透膜装置的主要组件,SPMD)的外层在香港沿海水域的清洁地点被生物污损了1-4周。预结垢后,将三油精添加到SPMD中,并与对照(未结垢)设备一起暴露于多种有机氯农药(α-HCH,艾氏剂,p,p'-DDT)和多环芳烃(蒽,荧蒽)中和苯并(a)))。结果表明,与未污染的对照相比,在污染条件下,SPMDs对污染物的吸收大大降低了多达50%。尽管减少了其他措施,例如使用渗透性参考化合物,但SPMD作为被动监测器的最终用途有所减少,并且可以对水生环境中的溶解环境浓度进行实际评估。但是,由于此类程序涉及的复杂性(尤其是需要根据具体情况进行),除非在采样器的每个环境中都进行了必要的校准,否则SPMD的效用似乎在估计生物利用度方面受到限制。用来。

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