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首页> 外文期刊>Ecological indicators >Heavy metals in wetland soils along a wetland-forming chronosequence in the Yellow River Delta of China: Levels, sources and toxic risks
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Heavy metals in wetland soils along a wetland-forming chronosequence in the Yellow River Delta of China: Levels, sources and toxic risks

机译:中国黄河三角洲沿湿地形成时序的湿地土壤中的重金属:含量,来源和毒性风险

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Surface soil (0-20 cm) samples were collected from four chronological sequences of wetlands (i.e., >50-yr-old wetlands, 40-yr-old wetlands, 30-yr-old wetlands and 10-yr-old wetlands) in the Yellow River Delta of China in May and June of 2007. Total contents of Al, As, Cd, Cr, Cu, Ni, Pb and Zn were determined using inductively coupled plasma atomic absorption spectrometry (ICP-AAS) to investigate the levels, sources and toxic risks of heavy metals in these wetlands. Our results showed an increasing trend for Pb, Cu and Zn along the wetland-forming chronosequence although their pollution levels were low. Both As and Cd exhibited significant enrichment due to their high enrichment factor (EF) values (EF > 5), especially in older wetlands (i.e., >50-yr-old and 40-yr-old wetlands), whereas other heavy metals were minimally or moderately enriched in this region. The results of principal component analysis showed that 83.09% of total variance based on eigenvalues (eigenvalue > 1) could be explained by three principal components (PCs) in four wetlands. The source of Al, Cu, Pb and Zn was different from Cd, Cr and Ni. According to the sediment quality guidelines (SQGs) of China, soil samples in the younger wetlands, especially the 10-yr-old wetlands, were moderately polluted by As, Cd and Ni. According to the SQGs of US EPA, all soil samples were heavily polluted by As and moderately polluted by Ni and soil samples in the older wetlands were moderately polluted by Cr. However, with the exception of As and Ni, the contents of other heavy metals in the four wetlands did not exceed the probable effect level (PEL) values. As, Cd and Ni were identified as heavy metals of primary concerns in four wetlands, Cr were of moderate concern in older wetlands, and Pb, Cu and Zn should be paid more attention in younger wetland (i.e., 10-yr-old and 30-yr-old wetlands). A new and sensitive toxic risk index (TRI) is developed for the accurate assessment of toxic risk for heavy metals in wetland soils compared with the sum of the toxic units (Sigma TUs), and As, Cr, Ni and Cd showed higher contributions to TRI. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从四个按时间顺序排列的湿地(即> 50岁的湿地,40岁的湿地,30岁的湿地和10岁的湿地)中收集了地表土壤(0-20厘米)样本。分别于2007年5月和6月在中国黄河三角洲进行。采用电感耦合等离子体原子吸收光谱法(ICP-AAS)测定铝,砷,镉,铬,铜,镍,铅和锌的总含量,这些湿地中重金属的来源和毒性风险。我们的研究结果表明,尽管污染水平较低,但铅,铜和锌沿湿地形成的时间序列却呈上升趋势。由于砷和镉的富集系数(EF)值较高(EF> 5),因此都表现出明显的富集作用,特别是在较老的湿地(即> 50岁和40岁的湿地)中,而其他重金属则是在该区域中最少或中等程度地富集。主成分分析的结果表明,基于特征值(特征值> 1)的总方差的83.09%可以由四个湿地中的三个主成分(PC)解释。 Al,Cu,Pb和Zn的来源不同于Cd,Cr和Ni。根据中国的沉积物质量准则(SQGs),年轻湿地(尤其是10岁湿地)的土壤样品被As,Cd和Ni中等污染。根据美国EPA的SQG,所有土壤样品均被As重度污染,而Ni被中度污染,而较早湿地的土壤样品被Cr中度污染。但是,除砷和镍外,四个湿地中其他重金属的含量均未超过可能的影响水平(PEL)。由于Cd和Ni被确定为四个湿地中主要关注的重金属,Cr在较老的湿地中为中等关注,而Pb,Cu和Zn在较年轻的湿地(即10岁和30岁)应受到更多关注。岁的湿地)。与毒性单位之和(Sigma TUs)相比,开发了一种新的敏感的毒性风险指数(TRI)来准确评估湿地土壤中重金属的毒性风险,而As,Cr,Ni和Cd的贡献更大。 TRI。 (C)2016 Elsevier Ltd.保留所有权利。

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