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Distribution patterns of nitrobenzenes and polychlorinated biphenyls in water, suspended particulate matter and sediment from mid- and down-stream of the Yellow River (China)

机译:黄河中下游水,悬浮颗粒物和沉积物中硝基苯和多氯联苯的分布方式(中国)

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摘要

Samples of water, suspended particulate matter (SPM) and sediment were collected from mid- and down-stream of the Yellow River. The distribution and concentration of 10 nitroaromatic compounds and polychlorinated biphenyls (PCBs) were extensively studied. The total concentration of 10 nitrobenzenes (∑NBs) varied from 0.269 to 9.052 μg l~(-1) in water, from 2.916 to 164.4 μg kg~(-1) dry weight in SPM, and from 0.954 to 14.72 μg kg~(-1) dry weight in sediment. PCBs associated with the sediments, measured as the summed responses of Aroclor 1242, 1248, 1254, 1260 (in comparison to those of a standard 1:1:1:1 mixture), were found to be in the range of non-detectable to 5.98 μg kg~(-1). In the samples collected, various PCB congeners showed similar distribution characteristics with congeners containing 3-5 chlorine atoms accounting for more than 96.4% of total PCB. In most of the samples, PCB concentrations occurred in the order: TetraCB > TriCB > PentaCB. Levels of ∑NBs in the Yellow River were relatively low in comparison with values reported from other river and marine systems, and PCB levels were comparatively low. Relative to the PCBs, ∑NBs showed significantly more difference among the various stations, presumably due to the influence of different pollution sources. No obvious correlation was observed between the pollutant concentrations and either the TOC or the grain size of the sediments.
机译:从黄河中下游采集水,悬浮颗粒物(SPM)和沉积物的样本。广泛研究了10种硝基芳族化合物和多氯联苯(PCBs)的分布和浓度。水中10种硝基苯(∑NBs)的总浓度在0.269至9.052μgl〜(-1)之间,在SPM中的干重从2.916至164.4μgkg〜(-1),从0.954至14.72μgkg〜(-1)不等。 -1)沉积物中的干重。发现与沉积物相关的PCBs,以Aroclor 1242、1248、1254、1260的总响应(与标准1:1:1:1混合物的响应相比)在不可检测的范围内。 5.98微克kg〜(-1)。在收集的样品中,各种PCB同类物表现出相似的分布特征,其中3-5个氯原子的同类物占PCB总量的96.4%以上。在大多数样品中,PCB浓度按以下顺序发生:TetraCB> TriCB> PentaCB。与其他河流和海洋系统报告的值相比,黄河中的∑NBs含量相对较低,PCB含量也较低。相对于多氯联苯,不同地点之间的∑NB差异更大,大概是由于不同污染源的影响。污染物浓度与沉积物的总有机碳或粒径之间没有明显的相关性。

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