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中国南方海产品中的多溴二苯醚

Polybrominated diphenyl ethers in seafood products of south China.

作者信息

Guo Jian-Yang, Wu Feng-Chang, Mai Bi-Xian, Luo Xiao-Jun, Zeng Eddy Y

机构信息

State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China.

出版信息

J Agric Food Chem. 2007 Oct 31;55(22):9152-8. doi: 10.1021/jf072004u. Epub 2007 Oct 10.

Abstract

South China is probably one of the heaviest polybrominated diphenyl ether (PBDE) polluted regions in the world, thanks to the presence of huge and rapidly growing electronics manufacturing industries, as well as several of the world's largest e-waste recycling sites in the region. In the present work, a wide variety of nonfish seafood products collected from South China was analyzed for PBDE residues. The concentrations of PBDEs in seafood products were highly species-specific, and the magnitude of PBDE pollution was moderate in South China compared to the global levels. Congener patterns of PBDEs in seafood samples suggested that seafood products are prone to accumulating low-brominated congeners, and possible metabolic debromination of BDE-99 to BDE-47 could occur in certain organisms, such as crabs and mantis shrimp. Generally, the congener profile was dominated by BDE-209, and to a lesser extent by BDE-47 and BDE-99, which was consistent with the fact that Deca-BDE is mass-produced in China and with previous sediment results from the same area. The occurrence of BDE-209 in aquatic species from South China suggests that BDE-209 appears to be more bioavailable than previously thought, and the environmental fate and safety of BDE-209 require further investigation and call for a thorough reassessment.

摘要

由于存在庞大且迅速发展的电子制造业,以及该地区有几个世界最大的电子垃圾回收场,中国南方可能是世界上多溴二苯醚(PBDE)污染最严重的地区之一。在本研究中,对从中国南方收集的各种非鱼类海产品进行了多溴二苯醚残留分析。海产品中多溴二苯醚的浓度具有高度的物种特异性,与全球水平相比,中国南方的多溴二苯醚污染程度为中等。海产品样本中多溴二苯醚的同系物模式表明,海产品易于积累低溴化同系物,并且在某些生物体(如螃蟹和螳螂虾)中可能会发生BDE-99向BDE-47的代谢脱溴。一般来说,同系物谱以BDE-209为主,其次是BDE-47和BDE-99,这与中国大量生产十溴二苯醚以及该地区先前沉积物结果一致。在中国南方水生物种中检测到BDE-209表明,BDE-209的生物可利用性似乎比以前认为的更高,BDE-209的环境归宿和安全性需要进一步研究,并要求进行全面重新评估。

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