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首页> 外文期刊>Ecotoxicology >In situ relationships between spatial-temporal variations in potential ecological risk indexes for metals and the short-term effects on periphyton in a macrophyte-dominated lake: A comparison of structural and functional metrics
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In situ relationships between spatial-temporal variations in potential ecological risk indexes for metals and the short-term effects on periphyton in a macrophyte-dominated lake: A comparison of structural and functional metrics

机译:在宏观物质主导湖泊中潜在生态风险指标的空间态变差与麦考氏植物的短期影响的原位关系:结构与功能度量的比较

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Heavy metals may adversely affect the structure and function of the periphyton community in lake ecosystems. We carried out samplings of three habitats at eight sites located in the Lake Baiyangdian that is strongly influenced by wastewater discharge (Sites 1 and 2), aquaculture and densely populated villages (Sites 3, 6, and 8), and the least disturbed (Sites 4, 5, and 7). Cu, Ni, Pb, Zn, Hg, Cd, and Cr were determined in these samples, and the periphyton community was simultaneously studied. The contamination factor (Cf i) was estimated for every metal as the ratio between pre-industrial records from sediments (Cn i) and present concentration values (Ci ), and the individual potential risk (E r i) was calculated by multiply the toxic response factor (Tri) and Cf i for a given substance were based on Hakanson's methodology. The RI was obtained for each sampling site by summing the values of Er i first and the average was calculated across the sampling sites. The results showed that the RI for all three habitats was lower than 94, and they are in decreasing order: wastewater discharge, aquaculture and densely populated villages, and the least anthropogenic impacted. When the three sampling seasons were compared, August appeared to show the highest risk, followed by April and November. The RI values showed negative correlations (r = -0.444 to -0.851, p 0.05) with the structural and functional metrics. The best correlation was detected between chlorophyll c/chlorophyll a (Chl c/a) ratio and Er i Hg (r = -0.851, p 0.01). Our results suggest the periphyton community can be used in bio-monitoring.
机译:重金属可能会对湖泊生态系统中Periphyton群落的结构和功能产生不利影响。我们在位于百阳湖的八个地点进行了三个栖息地的抽样,这受到废水排放(遗址1和2),水产养殖和密集的村庄(地点3,6和8)的强烈影响,以及最严重的(地点4,5和7)。在这些样品中测定Cu,Ni,Pb,Zn,Hg,Cd和Cr,同时研究植物高细胞群落。每种金属估计污染因子(CF I)作为来自沉积物(CN I)的预工业记录与本浓度值(CI)之间的比率,并且通过乘以毒性反应来计算个体潜在风险(E RI)给定物质的因子(三)和CF I基于哈丹逊的方法。通过求解ER I的值第一并且在抽样站点计算平均值来获得每个采样部位获得RI。结果表明,所有三种栖息地的RI低于94,它们的顺序降低:废水排放,水产养殖和密集的村庄,以及影响最低的人。当比较三个抽样季节时,八月似乎表现出最高的风险,其次是4月和11月。 RI值显示出具有结构和功能度量的负相关性(R = -0.444至-0.851,p <0.05)。在叶绿素C /叶绿素A(CHL C / A)比和ER I Hg之间检测到最佳相关性(r = -0.851,p <0.01)。我们的结果表明Periphyton群落可用于生物监测。

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