平衡取样在水产养殖组织残留及遗传性和当前使用有机化学物质的膳食风险中的适用性

ty10086 提交于 周三, 08/25/2021 - 16:39
文章英文标题
Applicability of Equilibrium Sampling in Informing Tissue Residues and Dietary Risks of Legacy and Current‐Use Organic Chemicals in Aquaculture
正文
基于有机硅聚二甲基硅氧烷( PDMS )的平衡取样已用于测定自由溶解的疏水有机物( HOCs )的浓度,评估这些化合物在水环境中生物积累的热力学势。这使得基于PDMS的采样技术能够辅助常规的采样和提取方法测定水产养殖产品中HOCs的浓度。本研究是对PDMS如何很好地告知中国东部养殖场池塘养殖物种遗留或当前使用的有机化学物质的组织残留和膳食风险的原位演示。对于多溴联苯醚( PBDEs,n   =  10 )等遗留污染物,基于PDMS的预测浓度与实测的脂类归一化浓度在60 %的研究对象中,包括中上层和底栖生物。对于目前使用的农药,如拟除虫菊酯( PE ) ( n   =  4 )和有机磷农药( OPPs,n   =  7 ),测定的组织残留量均高于PDMS的预测结果,可能是由于环境的持续输入造成的。对于有机氯农药( OCPs,n  =   5 ),仅检测到的化学物也被低估。由养殖产品摄食率和毒理学数据调整,由于PBDEs的优势,PDMS预测的这些化学物质的目标危害商与组织中实测浓度的化学物质一般具有可比性。总体而言,PDMS平衡取样为PBDEs的组织残留和膳食风险预测提供了一种替代方法。此外,对于PEs、OPPs和OCPs应谨慎使用。提高PDMS对这些化学物质在养殖池中的应用值得今后研究。环境毒理学Chem 2021,40:79 - 87 . 1.2020 SETAC
文章内容(英文)
Equilibrium sampling based on silicone polydimethylsiloxane (PDMS) has been used to determine the concentrations of freely dissolved hydrophobic organic compounds (HOCs) and assess the thermodynamic potentials for bioaccumulation of these compounds in the aquatic environment. This allows the use of PDMS‐based sampling techniques in assisting conventional sampling and extraction methods for the determination of the concentrations of HOCs in aquaculture products. The present study is an ex situ demonstration of how well PDMS can inform the tissue residues and dietary risks of legacy or current‐use organic chemicals in aquaculture species from farm ponds in eastern China. For legacy contaminants such as polybrominated diphenyl ethers (PBDEs, n = 10), good agreement between the predicted concentrations based on PDMS and the measured lipid‐normalized concentrations was observed for 60% of the studied biota, including both pelagic and benthic species. For pesticides currently used, such as pyrethroid (PE) (n = 4) and organophosphate pesticides (OPPs, n = 7), the measured tissue residues were consistently higher than those predicted by PDMS, possibly caused by the continuous input from the surroundings. For the organochlorine pesticides (OCPs, n = 5), the only detected chemical was also underestimated. Adjusted by ingestion rates of aquaculture products and toxicology data, the target hazard quotients of these chemicals predicted from PDMS were generally comparable to those derived from measured concentrations in tissue because of the predominance of PBDEs. Overall, PDMS‐based equilibrium sampling offered an alternative approach for the prediction of tissue residues and dietary risks of PBDEs. Moreover, it should be applied with caution for PEs, OPPs, and OCPs. Improving the application of PDMS for these chemicals in farm ponds warrants future study. Environ Toxicol Chem 2021;40:79–87. © 2020 SETAC
来源出处
Journal|[J]Environmental Toxicology and ChemistryVolume 40, Issue 1. 2020. PP 79-87
DOI
https://doi.org/10.1002/ETC.4912

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