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Climate change adaptation in the Murray-Darling Basin: Reducing resilience of wetlands with engineering

机译:默里-达令盆地的气候变化适应:通过工程技术降低湿地的适应力

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摘要

Conflict over water allocations and the need to adapt to climate change in Australia's Murray-Darling Basin has resulted in decision makers choosing engineering interventions to use water more efficiently for wetlands conservation. We review a range of policy and infrastructure adaptation measures implemented in the Basin by governments. The water supply and demand "environmental works and measures" adopted in the Coorong and Lower Lakes region, as well as along the River Murray, are assessed and compared with the opportunity costs for ecosystem-based adaptation. The results suggest that risks of disruption to ecological processes, desiccation of wetland areas and institutional failure with infrastructure-led adaptation measures are little appreciated. Further, ecosystem-based measures to maintain a more diverse range of ecological processes that would spread risk and conserve a more diverse range of biota have not been identified or adopted by governments. We conclude that as a primary adaptation to climate change environmental works and measures may represent overly-narrow or mal-adaptation that can reduce the resilience of wetland ecosystems.
机译:在澳大利亚墨累达令盆地,水资源分配冲突和适应气候变化的需求导致决策者选择工程干预措施,以更有效地利用水进行湿地保护。我们回顾了各国政府在流域实施的一系列政策和基础设施适应措施。对库仑和下湖地区以及墨累河沿岸采取的水供需“环境工作和措施”进行了评估,并将其与基于生态系统适应的机会成本进行了比较。结果表明,人们很少意识到以基础设施为主导的适应措施对生态过程造成破坏,使湿地干燥的风险以及体制失灵的风险。此外,政府尚未确定或采用基于生态系统的措施来维持范围更广的生态过程,这些过程将分散风险并保护范围更大的生物群。我们得出的结论是,作为对气候变化的主要适应措施,环境工作和措施可能表示过窄或适应不良,可能会降低湿地生态系统的弹性。

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