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Distribution and contamination assessment of toxic trace elements in sediment of the Daliao River System, China

机译:大辽河系沉积物中有毒微量元素的分布与污染评价

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摘要

The Daliao River System (DRS) is one of the major river systems in the northeastern China and receives substantial discharges from industrial, municipal, and agricultural effluents. In this study, the contents and partition of toxic trace elements in the DRS sediments were evaluated in terms of contamination levels and ecological risks using geoaccumulation index (Igeo), relative enrichment factor (REF), sediment pollution index (SPI), and potential effect concentration quotient (PECQ). Fourteen samples were collected and measured for trace and major elements and sediment properties. The following concentration ranges (mg kg~(-1)) of toxic trace elements were found: As, 1.6-18.0; Cd 0.1-0.9; Co 3.8-23.4; Cr 12.9-151.6; Cu 4.6-86.1; Hg 0.01-0.35; Ni 8.4-64.4; Pb 11.6-67.1; Sb 0.13-1.77; V 18.5-153.3; and Zn 20.4-211.3. The proportions of soluble and exchangeable trace metals were less than 1 %, while the proportions of trace metals bound to carbonate, amorphous oxides, organic matter, and crystalline oxides were usually each <10 %. However, 28.8 % of Cd, on average, was associated with carbonate. The average proportions of trace metals in the residual fraction ranged 57.3 % for Cd to 85.4 % for Cr, indicating low mobility and bioavailability. Cr, Ni, V, and Co in the sediments mainly originated from natural sources, while Cd, As, Pb, Sb, and Hg partially originated from anthropogenic sources. The Igeo, REF, SPI, and PECQ values of the heavy metals in the sediment were not in agreement with each another. The average REF values of Cd and As were higher than those of the other metals. However, the average PECQ value was higher for Cr and Ni than for the other metals, indicating that these two metals would cause higher adverse biological effects than the other metals. In addition, the sediments located adjacent to cities were more contaminated. Therefore, it is suggested that future management and pollution control within the DRS might focus on As, Cd, Cr, and Ni in the sediments, particularly in the sediments adjacent to cities.
机译:大辽河系(DRS)是中国东北地区的主要河系之一,并从工业,市政和农业废水中大量排放。在这项研究中,使用地质累积指数(Igeo),相对富集因子(REF),沉积物污染指数(SPI)和潜在影响,根据污染水平和生态风险评估了DRS沉积物中有毒微量元素的含量和分配。浓度商(PECQ)。收集了14个样品,并测量了痕量和主要元素以及沉积物特性。发现以下有毒的微量元素浓度范围(mg kg〜(-1)):As 1.6-18.0;镉0.1-0.9; Co 3.8-23.4;铬12.9-151.6;铜4.6-86.1;汞0.01-0.35;镍8.4-64.4;铅11.6-67.1; Sb 0.13-1.77; V 18.5-153.3;和Zn 20.4-211.3。可溶性和可交换的痕量金属的比例小于1%,而与碳酸盐,无定形氧化物,有机物和结晶氧化物结合的痕量金属的比例通常分别<10%。但是,平均Cd的28.8%与碳酸盐有关。残留部分中痕量金属的平均比例从Cd的57.3%到Cr的85.4%不等,表明迁移率和生物利用度低。沉积物中的Cr,Ni,V和Co主要来自自然资源,而Cd,As,Pb,Sb和Hg部分来自人为资源。沉积物中重金属的Igeo,REF,SPI和PECQ值彼此不一致。 Cd和As的平均REF值高于其他金属。但是,Cr和Ni的平均PECQ值高于其他金属,这表明这两种金属将比其他金属引起更高的不利生物学影响。此外,邻近城市的沉积物受到更多污染。因此,建议在DRS内的未来管理和污染控制可能集中在沉积物中的As,Cd,Cr和Ni,尤其是邻近城市的沉积物中。

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  • 来源
    《Environmental earth sciences》 |2013年第7期|3163-3173|共11页
  • 作者单位

    State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Beijing Normal University, 100875 Beijing, China;

    State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Beijing Normal University, 100875 Beijing, China;

    State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Beijing Normal University, 100875 Beijing, China;

    State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Beijing Normal University, 100875 Beijing, China;

    State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Beijing Normal University, 100875 Beijing, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sediment; Toxic trace elements; Contamination; Ecological risk;

    机译:沉淀;有毒的微量元素;污染;生态风险;

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