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首页> 外文期刊>Environmental Management >Adaptive Management of Return Flows: Lessons from a Case Study in Environmental Water Delivery to a Floodplain River
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Adaptive Management of Return Flows: Lessons from a Case Study in Environmental Water Delivery to a Floodplain River

机译:回流的自适应管理:从向洪泛区河流输送环境水的案例研究中获得的教训

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摘要

For many floodplain rivers, reinstating wetland connectivity is necessary for ecosystems to recover from decades of regulation. Environmental return flows (the managed delivery of wetland water to an adjacent river) can be used strategically to facilitate natural ecosystem connectivity, enabling the transfer of nutrients, energy, and biota from wetland habitats to the river. Using an informal adaptive management framework, we delivered return flows from a forested wetland complex into a large lowland river in south-eastern Australia. We hypothesized that return flows would (a) increase river nutrient concentrations; (b) reduce wetland nutrient concentrations; (c) increase rates of ecosystem metabolism through the addition of potentially limiting nutrients, causing related increases in the concentration of water column chlorophyll-a; and (d) increase the density and species richness of microinvertebrates in riverine benthic habitats. Our monitoring results demonstrated a small increase in the concentrations of several key nutrients but no evidence for significant ecological responses was found. Although return flows can be delivered from forested floodplain areas without risking hypoxic blackwater events, returning nutrient and carbon-rich water to increase riverine productivity is limited by the achievable scale of return flows. Nevertheless, using return flows to flush carbon from floodplains may be a useful management tool to reduce carbon loads, preparing floodplains for subsequent releases (e.g., mitigating the risk of hypoxic blackwater events). In this example, adaptive management benefited from a semi-formal collaboration between science and management that allowed for prompt decision-making.
机译:对于许多漫滩河流来说,恢复湿地连通性对于生态系统从数十年的管制中恢复是必不可少的。可以有策略地使用环境回流(有管理地将湿地水输送到附近的河流)来促进自然生态系统的连通性,从而使营养,能量和生物群从湿地生境转移到河流中。使用非正式的适应性管理框架,我们将返回的流量从森林湿地综合体输送到澳大利亚东南部的一条大型低地河流。我们假设回流将(a)增加河流养分浓度; (b)减少湿地养分含量; (c)通过添加潜在的限制性养分来增加生态系统新陈代谢的速度,从而引起水柱叶绿素-a浓度的相应增加; (d)增加河流底栖生境中无脊椎动物的密度和物种丰富度。我们的监测结果表明,几种关键营养素的浓度略有增加,但未发现明显的生态响应证据。尽管可以从森林泛滥区提供回流,而不必担心缺氧的黑水事件的发生,但可实现的回流规模限制了回流养分和富含碳的水以提高河流生产力。然而,使用回流从洪泛区冲洗碳可能是减少碳负荷,为洪泛平原准备后续排放(例如,降低低氧黑水事件风险)的有用管理工具。在此示例中,适应性管理得益于科学与管理之间的半正式合作,该合作可以迅速做出决策。

著录项

  • 来源
    《Environmental Management》 |2018年第3期|481-496|共16页
  • 作者单位

    Institute of Land Water and Society, Charles Start University, PO Box 789, Albury 2640, Australia;

    Institute of Land Water and Society, Charles Start University, PO Box 789, Albury 2640, Australia;

    Institute of Land Water and Society, Charles Start University, PO Box 789, Albury 2640, Australia;

    Institute of Land Water and Society, Charles Start University, PO Box 789, Albury 2640, Australia,CSIRO Land and Water and the Murray-Darling Freshwater Research Centre, La Trobe University, Wodonga, VIC 3689, Australia;

    Institute of Land Water and Society, Charles Start University, PO Box 789, Albury 2640, Australia,Science Division, Office of Environment and Heritage NSW, PO Box A290, Sydney South, NSW 1232, Australia;

    Regional Operations Group (South Branch), Office of Environment and Heritage NSW, PO Box 544, Albury, NSW 2640, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ecosystem metabolism; Dissolved organic carbon; Microinvertebrate; Flow regulation; Connectivity;

    机译:生态系统新陈代谢;溶解的有机碳;微脊椎动物流量调节;连接性;

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