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利用受影响前后的重复采样来检测采矿活动对淡水生态系统的影响。

Detecting mining impacts on freshwater ecosystems using replicated sampling before and after the impact.

机构信息

Finnish Environment Institute, Nature Solutions, P.O. Box 413, 90014, Oulu, FI, Finland.

Finnish Environment Institute, Marine and Freshwater Solutions, P.O. Box 413, 90014, Oulu, FI, Finland.

出版信息

Environ Monit Assess. 2024 Jun 20;196(7):635. doi: 10.1007/s10661-024-12812-x.

Abstract

Detecting human impact on freshwater ecosystems is problematic without rigorous assessment of temporal changes. Assessments of mining impacts are further complicated by the strong influence of local catchment geology on surface waters even in unmined environments. Such influence cannot be effectively considered by using broad-scale reference frameworks based on regionalization and stream types. Using the BACI (Before-After Control-Impact) design, we examined the impact of mining discharges on freshwater algae and macroinvertebrate communities resulting from the rerouting of treated wastewaters through a pipeline to larger water bodies in Northern and North-Eastern Finland. Impacted sites and control sites were sampled 1 to 2 years before and 1 to 3 years after the pipelines became operational. Stream diatom communities recovered from past loadings upstream of the pipeline (which was no longer impacted by wastewaters) after rerouting of the wastewaters, while no changes downstream from the pipeline were detected. Upstream from the pipeline, diatom species richness increased and changes in relative abundances of the most common diatom taxa as well as in the overall community composition were observed. The effects of the pipeline were less evident for stream macroinvertebrate communities. There was an indication that regional reference conditions used in national biomonitoring may not represent diatom communities in areas with a strong geochemical background influence. Lake profundal macroinvertebrate communities were impacted by past loadings before the construction of the pipeline, and the influence of the pipeline was observed only as changes in the abundances of a few individual species such as phantom midges (which increased in abundance in response to discharges directed through the pipeline). Our results highlight the variable influence of mining discharges on aquatic communities. Statistically strong monitoring programmes, such as BACI designs, are clearly needed to detect these influences.

摘要

如果不对时间变化进行严格评估,就很难发现人类活动对淡水生态系统的影响。即使在未开采环境中,当地集水区地质对地表水的强烈影响也使对采矿影响的评估变得更加复杂。使用基于区域化和溪流类型的广泛参考框架无法有效地考虑这种影响。我们使用 BACI(前后对照影响)设计,研究了在芬兰北部和东北部,通过管道将处理后的废水重新输送到更大的水体,从而对淡水藻类和大型无脊椎动物群落产生的采矿排放的影响。在管道开始运行之前的 1 到 2 年和之后的 1 到 3 年,对受影响的地点和对照地点进行了采样。在重新铺设管道后,来自管道上游过去负荷的溪流硅藻群落(不再受废水影响)得到了恢复,而在管道下游则没有发现变化。在管道上游,硅藻物种丰富度增加,常见硅藻类群的相对丰度以及整个群落组成发生了变化。对于溪流大型无脊椎动物群落,管道的影响不太明显。有迹象表明,在具有强烈地球化学背景影响的地区,国家生物监测中使用的区域参考条件可能无法代表硅藻群落。在管道建设之前,湖底大型无脊椎动物群落受到过去负荷的影响,而只有在少数个别物种的丰度发生变化时,才观察到管道的影响,例如幻影蚊虫(由于通过管道排放的增加而增加)。我们的结果强调了采矿排放对水生群落的不同影响。显然需要进行统计上强有力的监测计划,例如 BACI 设计,以检测这些影响。

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