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Integration of science and monitoring of river ecosystem health to guide investments in catchment protection and rehabilitation

机译:科学与河流生态系统健康监测相结合,以指导对流域保护和恢复的投资

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1. Stream ecosystem health monitoring and reporting need to be developed in the context of an adaptive process that is clearly linked to identified values and objectives, is informed by rigorous science, guides management actions and is responsive to changing perceptions and values of stakeholders. To be effective, monitoring programmes also need to be underpinned by an understanding of the probable causal factors that influence the condition or health of important environmental assets and values. This is often difficult in stream and river ecosystems where multiple stressors, acting at different spatial and temporal scales, interact to affect water quality, biodiversity and ecosystem processes. 2. In this article, we describe the development of a freshwater monitoring programme in South East Queensland, Australia, and how this has been used to report on ecosystem health at a regional scale and to guide investments in catchment protection and rehabilitation. We also discuss some of the emerging science needs to identify the appropriate scale and spatial arrangement of rehabilitation to maximise river ecosystem health outcomes and, at the same time, derive other benefits downstream. 3. An objective process was used to identify potential indicators of stream ecosystem health and then test these across a known catchment land-use disturbance gradient. From the 75 indicators initially tested, 22 from five indicator groups (water quality, ecosystem metabolism, nutrient cycling, invertebrates and fish) responded strongly to the disturbance gradient, and 16 were subsequently recommended for inclusion in the monitoring programme. The freshwater monitoring programme was implemented in 2002, funded by local and State government authorities, and currently involves the assessment of over 120 sites, twice per year. This information, together with data from a similar programme on the region's estuarine and coastal marine waters, forms the basis of an annual report card that is presented in a public ceremony to local politicians and the broader community. 4. Several key lessons from the SEQ Healthy Waterways Programme are likely to be transferable to other regional programmes aimed at improving aquatic ecosystem health, including the importance of a shared common vision, the involvement of committed individuals, a cooperative approach, the need for defensible science and effective communication. 5. Thematic implications: this study highlights the use of conceptual models and objective testing of potential indicators against a known disturbance gradient to develop a freshwater ecosystem health monitoring programme that can diagnose the probable causes of degradation from multiple stressors and identify the appropriate spatial scale for rehabilitation or protection. This approach can lead to more targeted management investments in catchment protection and rehabilitation, greater public confidence that limited funds are being well spent and better outcomes for stream and river ecosystem health.
机译:1.流域生态系统健康监测和报告需要在一个适应性过程的背景下发展,该过程与已确定的价值和目标明确相关,并受到严格科学的指导,指导管理行动,并对利益相关者的观念和价值的变化做出反应。为了使监测程序有效,还需要了解可能影响重要环境资产和价值的状况或健康的因果关系的基础。这在河流和河流生态系统中通常很困难,在这些生态系统中,多个压力因子在不同的时空尺度上相互作用,从而影响水质,生物多样性和生态系统过程。 2.在本文中,我们描述了在澳大利亚昆士兰州东南部制定的淡水监测计划,以及如何将其用于在区域范围内报告生态系统健康并指导对集水区保护和恢复的投资。我们还将讨论一些新兴的科学需求,以确定适当的恢复规模和空间安排,以最大程度地改善河流生态系统的健康状况,同时在下游获得其他收益。 3.使用了一个客观过程来识别河流生态系统健康的潜在指标,然后在一个已知的集水区土地利用扰动梯度上对这些指标进行测试。在最初测试的75个指标中,五个指标组(水质,生态系统代谢,营养循环,无脊椎动物和鱼类)中的22个对干扰梯度反应强烈,随后建议将16个指标纳入监测计划。淡水监测计划于2002年实施,由地方和州政府机构资助,目前涉及对120多个站点的评估,每年两次。这些信息,以及该地区河口和沿海海洋水域类似计划的数据,构成了年度报告卡的基础,该年度报告卡在公开仪式上向当地政客和更广泛的社区呈现。 4. SEQ健康水道计划的一些关键教训很可能会转移到旨在改善水生生态系统健康的其他区域计划中,包括共同共识的重要性,承诺的个人的参与,合作的方式,辩护的必要性科学和有效的沟通。 5.主题含义:本研究着重使用概念模型和针对已知扰动梯度的潜在指标的客观测试,以开发淡水生态系统健康监测程序,该程序可以诊断多种压力源可能造成的退化原因,并确定适当的空间尺度康复或保护。这种方法可以导致对流域保护和恢复进行更有针对性的管理投资,提高公众对有限资金正被合理使用的信心,并为河流和河流生态系统健康带来更好的结果。

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