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不同类型土壤中六溴环十二烷的浓度调查及分布特征比较
引用本文:程鑫,孙秀梅,金衍健,严忠雍,胡红美,郝青,郭远明. 不同类型土壤中六溴环十二烷的浓度调查及分布特征比较[J]. 浙江大学学报(理学版), 2018, 45(4): 476-483. DOI: 10.3785/j.issn.1008-9497.2018.04.015
作者姓名:程鑫  孙秀梅  金衍健  严忠雍  胡红美  郝青  郭远明
作者单位:1. 浙江海洋大学 海洋与渔业研究所, 浙江 舟山 316021;
2. 浙江省海洋水产研究所, 浙江海洋大学 海洋与渔业研究所, 浙江省海洋渔业资源可持续利用技术研究重点实验室, 浙江 舟山 316021
基金项目:国家自然科学基金资助项目(21407127);浙江省科技厅项目(2016F30021).
摘    要:六溴环十二烷是一种使用量较高的溴代阻燃剂,具有持久性、生物富集性、半挥发性和高毒性,可在沉积物、水体、土壤和尘埃以及生物体内广泛检出.目前对土壤中六溴环十二烷的分布及浓度的研究主要集中在电子废弃物拆解地等典型高浓度地,而对工业区、养殖区的研究相对较少.实验采用UPLC-MS/MS 法检测工业区、养殖区土壤中六溴环十二烷异构体的分布,旨在探明六溴环十二烷在不同类型环境土壤中的浓度及异构体分布差异,以促进对环境中六溴环十二烷的生态危害性的有效评价.结果显示,六溴环十二烷具有较高的检出率(82.00%),工业区土壤中∑HBCDs(α-,β-,γ-HBCD之和)浓度为ND~2.057 8 ng·g-1·dw.除去浓度最高点(6.925 8 ng·g-1·dw),养殖区土壤中∑HBCDs浓度为ND~1.859 4 ng·g-1·dw,普遍低于工业区.养殖区和工业区土壤∑HBCDs浓度均值分别为0.684 6和0.644 8 ng·g-1·dw.六溴环十二烷异构体以γ-HBCD为主,与工业品组成相似.部分样品成分分布与工业品组成有差异.

关 键 词:六溴环十二烷  异构体  土壤  分布特征  
收稿时间:2017-08-18

Concentration levels and compositional characteristics of hexabromocyclododecane in soils of different areas
CHENG Xin,SUN Xiumei,JIN Yanjian,YAN Zhongyong,HU Hongmei,HAO Qing,GUO Yuanming. Concentration levels and compositional characteristics of hexabromocyclododecane in soils of different areas[J]. Journal of Zhejiang University(Sciences Edition), 2018, 45(4): 476-483. DOI: 10.3785/j.issn.1008-9497.2018.04.015
Authors:CHENG Xin  SUN Xiumei  JIN Yanjian  YAN Zhongyong  HU Hongmei  HAO Qing  GUO Yuanming
Affiliation:1. Institute of Marine and Fisheries, Zhejiang Ocean University, Zhoushan 316021, Zhejiang Province, China;
2. Marine Fisheries Research Institute of Zhejiang Province, Key Laboratory of Sustainable Utilization of Technology Research for Fishery Resource of Zhejiang Province, Institute of Marine and Fisheries of Zhejiang Ocean University, Zhoushan 316021, Zhejiang Province, China
Abstract:Hexabromocyclododecane(known as HBCDs) is a universal additive brominated flame retardant featuring persistence, bioaccumulation, semi-volatility and high toxicity. Currently, HBCDs has been widely detected in sediments, water, soil, dust and organisms. It enters the environment by a number of different pathways, and then has detrimental effect on the biosphere and even humanity through the material cycle. At present, there are few studies on HBCDs in soil. To investigate the distribution of hexabromocyclododecane in different types of soils, the soils form industrial area and culture area are selected as the object of investigation. This work detects the distribution of hexabromocyclododecane isomers in the soil by UPLC-MS/MS and triple quadrupole low-resolution mass spectrometry. The distributions of hexabromocyclododecane in different types of environmental soils and their isomer's composition characteristics are obtained.It will promote the effective assessment of the ecological hazards of hexabromocyclododecane in the environment. Our experimental results indicates that the detection frequency of HBCDs is 82% in 50 detected soil samples, and the total HBCDs concentrations in the soils of industrial area and agricultural area range from ND to 2.05 78 ng·g-1·dw and ND to 1.859 4 ng·g-1·dw, respectively. There is a sampling point in the agricultural area whose HBCD concentration is 6.925 8 ng·g-1·dw, but it is not representative. The average concentrations of HBCDs in industrial area and agricultural area are 0.684 6 and 0.644 8 ng·g-1·dw, respectively. Our investigation indicates that HBCDs are common pollutants in different types of soils and there is a significant difference of the contamination of HBCDs in different areas. Compared with the highly-polluted areas such as electronic dismantling plants, the pollution degree of industrial areas and agricultural areas are at relatively low level. The average HBCDs concentration of the industrial area is higher than that of the agricultural area, but the difference is not significant. In the soils the isomeric profiles of HBCDs is similar to commercial HBCD formulations, with the γ-HBCD being the most abundant isomer. The composition of HBCDs in some soil samples is different from that of commercial products.
Keywords:hexabromocyclododecane  isomers  soil  distribution characteristics
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