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首页> 外文期刊>Journal of environmental sciences >Temporal-spatial distribution and diastereoisomer pattern of hexabromocyclododecane in the vicinity of a chemical plant
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Temporal-spatial distribution and diastereoisomer pattern of hexabromocyclododecane in the vicinity of a chemical plant

机译:化学植物附近的六溴环二甲烷的时间空间分布和非对映异构体图案

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Hexabromocyclododecane (HBCD) is an effective brominated flame-retardant additive, which is mainly produced in the coastal area of China. This study collected soil samples from a HBCD production plant and its surrounding area in Weifang, Shandong Province, China, and analyzed the temporal-spatial distribution of HBCD and its diastereoisomers in soil. The analysis results showed that the concentration of HBCD in soil near the plant was much higher than normal values, with an annual average concentration reaching 5405 ng/g. Soils 1, 2 and 4 km away from the plant were also analyzed, showing that the concentration of HBCD in soil decreased accordingly with the distance from the pollution sources. In order to investigate the effect of the season on HBCD content, the soil samples were collected in all four seasons of the year 2017-2018. According to variations in the wind direction, the concentration of HBCD in soil was also changed. The distribution trend showed that the concentration of HBCD in soil in the downwind direction of the prevailing wind was higher than that in the upwind direction. In addition, this work analyzed the distribution of HBCD in vertical soil sections. It was found that the concentration of HBCD decreased with depth in the soil vertical profile. Finally, the various diastereoisomer patterns in the soil compartments were examined, finding that alpha-HBCD and gamma-HBCD were the predominant diastereoisomers in the soil of the study area. (c) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:六溴氰二癸烷(HBCD)是一种有效的溴化阻燃添加剂,主要生产在中国沿海地区。本研究从山东省潍坊市港元生产厂及其周边地区收集了土壤样本,并分析了土壤中氟氯烃及其非对映异构体的时间空间分布。分析结果表明,植物附近的土壤中HBCd的浓度远高于正常值,年平均浓度达到5405 ng / g。还分析了距离植物的土壤1,2和4公里,表明土壤中HBCD的浓度相应地减少了污染源的距离。为了探讨季节对氟氯烃含量的影响,在2017 - 2018年的所有四季都收集了土壤样品。根据风向的变化,土壤中HBCD的浓度也发生了变化。分布趋势表明,普遍风的下行方向下土壤中HBCD的浓度高于上行方向的浓度。此外,这项工作分析了垂直土壤中HBCD的分布。发现HBCD的浓度随着土壤垂直轮廓的深度而降低。最后,检查了土隔室中的各种非对映异构体图案,发现α-HBCD和γ-HBCd是研究区域的土壤中的主要非对映异构体。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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