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How to choose? A bioeconomic model for optimizing river barrier mitigation actions

机译:如何选择?优化河流阻隔措施的生物经济模型

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River infrastructure can cause adverse impacts on fish populations, which, in turn, compromises the ability of river ecosystems to provide a range of ecosystem services. In this paper, we present a methodological approach to assess the potential economics costs and benefits of river connectivity enhancement achieved through removal and mitigation of fish dispersal barriers. Our approach combines the results of a stated preference study for nonuse values of rivers and statistical models of fish population responses to barrier mitigation actions within an integrated bioeconomic optimization framework. We demonstrate the utility of our methodology using a case study of the River Wey catchment in southeast England, which contains over 650 artificial barriers. Our results reveal the presence of benefit-cost trade-offs which can form the basis for river barrier mitigation policy development. In particular, we find that benefits exceed costs in the River Wey for all levels of investment in barrier mitigation considered (2.5 pound to 53.4 M). Furthermore, from an economic efficiency standpoint, a total budget of approximately 22.5M pound allocated to barrier mitigation would maximize net societal benefits derived from anticipated increases fish species richness and abundance.
机译:河基础设施可能会对鱼群产生不利影响,反过来损害了河流生态系统提供了一系列生态系统服务的能力。在本文中,我们提出了一种通过去除和减轻鱼类分散屏障来评估河流连接增强的潜在经济性成本和益处的方法。我们的方法结合了对河流河流的非使用者的偏好研究的结果,以及鱼群的统计模型对综合生物经济优化框架内的屏障缓解动作。我们展示了通过对英格兰东南部河湿度集水区的案例研究来展示了我们的方法。其中包含超过650个人工障碍。我们的结果揭示了有利成本权衡的存在,可以构成河流阻隔政策发展的基础。特别是,我们发现福伊河河河河河河河的障碍级别(2.5磅至53.4米)的投资中的收益超过了成本。此外,从经济效率的角度来看,分配给障碍缓解的总预算约为22.5米,最大化净社会益处源于预期的鱼类丰富和丰富。

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