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Effects of human-driven water stress on river ecosystems: a meta-analysis

机译:人为驱动的水分胁迫对河流生态系统的影响:荟萃分析

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摘要

Human appropriation of water resources may induce water stress in freshwater ecosystems when ecosystem needs are not met. Intensive abstraction and regulation cause river ecosystems to shift towards non-natural flow regimes, which might have implications for their water quality, biological structure and functioning. We performed a meta-analysis of published studies to assess the potential effects of water stress on nutrients, microcontaminants, biological communities (bacteria, algae, invertebrates and fish), and ecosystem functions (organic matter breakdown, gross primary production and respiration). Despite the different nature of the flow regime changes, our meta-analysis showed significant effects of human-driven water stress, such as significant increases in algal biomass and metabolism and reduced invertebrate richness, abundance and density and organic matter decomposition. Water stress also significantly decreased phosphate concentration and increased the concentration of pharmaceutical compounds. The magnitude of significant effects was dependent on climate, rainfall regime, period of the year, river size and type of water stress. Among the different causes of water stress, flow regulation by dams produced the strongest effects, followed by water abstraction and channelization.
机译:如果无法满足生态系统的需求,人类对水资源的占用可能会在淡水生态系统中引起缺水。密集的抽取和调节导致河流生态系统转向非自然流域,这可能对其水质,生物结构和功能产生影响。我们对已发表的研究进行了荟萃分析,以评估水分胁迫对养分,微污染物,生物群落(细菌,藻类,无脊椎动物和鱼类)和生态系统功能(有机物分解,初级生产总值和呼吸作用)的潜在影响。尽管流动状态变化的性质不同,但我们的荟萃分析显示出人类驱动的水分胁迫的显着影响,例如藻类生物量和代谢的显着增加以及无脊椎动物的丰富度,丰度和密度以及有机物分解的减少。水分胁迫还显着降低了磷酸盐浓度并增加了药物化合物的浓度。重大影响的程度取决于气候,降雨状况,一年中的时期,河流规模和水分胁迫的类型。在造成水压力的不同原因中,大坝的流量调节作用最强,其次是取水和渠道化。

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