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多瑙河下游潜在有毒金属污染的初步调查。

Preliminary investigation of lower Danube pollution caused by potentially toxic metals.

机构信息

"Dunărea de Jos" University of Galaţi, MoRAS Research Center, 47 Domnească Street, 800008, Galați, Romania.

"Dunărea de Jos" University of Galaţi, Faculty of Economics and Business Administration, Nicolae Bălcescu Street 59-61, 800001, Galaţi, Romania.

出版信息

Chemosphere. 2021 Feb;264(Pt 1):128496. doi: 10.1016/j.chemosphere.2020.128496. Epub 2020 Oct 1.

Abstract

The current study aims to assess the pollution status of the European river-sea system lower Danube River-Danube Delta-North West Black Sea, through an integrated analysis of metal concentrations in water, sediments and fish community. The Danube flows through numerous industrial cities and receives a significant amount of pollutants due to the reception of urban and industrial emissaries, as well as agricultural land runoff. Samples of water, sediments and fish (10 species) were collected from 7 representative sites along Danube River, Danube Delta and Black Sea shore. For the analysed fish species, potentially toxic and essential elements (Pb, Cd, As, Cu, Fe, Zn, Mg, Ca, Na, K) from muscle and liver samples were measured and discussed. Measurement of elements and other environmental quality parameters were determined for water and sediments. The Black Sea area, represented by S6 and S7, received sediments from Danube with the lowest concentrations of Cd (0.05 ± 0.01 μg g, respectively 0.01 ± 0.001 μg g), Pb (3 ± 0.03 μg g, respectively 2 ± 0.03 μg g), As (2 ± 0.02 μg g, respectively 1.4 ± 0.3 μg g), Ni (8.9 ± 0.1 μg g, respectively 5.2 ± 0.2 μg g), Cr (8 ± 0.7 μg g, respectively 5 ± 0.2 μg g), Cu (3 ± 0.1 μg g, respectively 2 ± 0.04 μg g), Fe(6 ± 0.3 μg g, respectively 3 ± 0.1 μg g) and Zn (0.03 ± 0.003 μg g, respectively 0.017 ± 0.001 μg g). These results suggest that the Danube Delta system plays an important role in filtering the pollutants. Based on the biota and water analysis, there was no correlation observed between Cd, respectively Pb concentration in the environment and fish body (Person Coef. = -0.02 in muscle tissue and -0.01 in liver tissue, respectively Pearson Coeff. = -0.06 in muscle tissue and 0.1 in liver tissue). Cadmium remained an active element in the pollution of the Danube area (S1 and S2), with high concentration in the water matrix (0.14 ± 0.02 μg L, respectively 0.05 ± 0.01 μg L) and fish muscle (0.15 ± 0.03 μg gf.w. in C. carpio - S2). This fact was confirmed by several other studies.

摘要

本研究旨在通过对水、沉积物和鱼类群落中金属浓度的综合分析,评估欧洲河海系统多瑙河-多瑙河三角洲-西北黑海的污染状况。多瑙河流经许多工业城市,由于接纳城市和工业排放物以及农业土地径流,因此接收了大量污染物。在多瑙河、多瑙河三角洲和黑海沿岸的 7 个代表性地点采集了水、沉积物和鱼类(10 种)样本。对分析的鱼类物种,肌肉和肝脏样本中测量和讨论了潜在有毒和必需元素(Pb、Cd、As、Cu、Fe、Zn、Mg、Ca、Na、K)。对水和沉积物进行了元素和其他环境质量参数的测量。由 S6 和 S7 代表的黑海区域接收了来自多瑙河的沉积物,其中 Cd 的浓度最低(分别为 0.05±0.01μg/g 和 0.01±0.001μg/g)、Pb(3±0.03μg/g 和 2±0.03μg/g)、As(2±0.02μg/g 和 1.4±0.3μg/g)、Ni(8.9±0.1μg/g 和 5.2±0.2μg/g)、Cr(8±0.7μg/g 和 5±0.2μg/g)、Cu(3±0.1μg/g 和 2±0.04μg/g)、Fe(6±0.3μg/g 和 3±0.1μg/g)和 Zn(0.03±0.003μg/g 和 0.017±0.001μg/g)。这些结果表明,多瑙河三角洲系统在过滤污染物方面发挥了重要作用。根据生物群和水分析,环境中 Cd 和 Pb 浓度与鱼类体之间没有相关性(肌肉组织中的个体系数分别为-0.02 和-0.01,肝脏组织中的 Pearson 系数分别为-0.06 和 0.1)。镉仍然是多瑙河区污染的活跃元素,在水基质中浓度很高(分别为 0.14±0.02μg/L 和 0.05±0.01μg/L)和鱼类肌肉中(C. carpio-S2 中的 0.15±0.03μg/gf.w.)。这一事实得到了其他几项研究的证实。

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