首页> 外文期刊>Marine & freshwater research >Defining the importance of ecological processes for monitoring aquatic habitats for conservation and rehabilitation objectives at the Ranger uranium mine, Kakadu Region, Australia
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Defining the importance of ecological processes for monitoring aquatic habitats for conservation and rehabilitation objectives at the Ranger uranium mine, Kakadu Region, Australia

机译:澳大利亚卡卡杜地区的植物铀矿保护和康复目标监测生态过程的重要性

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摘要

Key ecological processes must be present and maintained in ecosystems to ensure the success of ecological restoration and conservation programs. The present paper identifies and defines key ecological processes operating at various spatial scales within aquatic ecosystems of the Magela Creek catchment, within Kakadu National Park, and prioritises those that may be vulnerable to potential mine-derived stressors. This assessment was required to ensure that current and future environmental monitoring programs are in place to safeguard the protection of these processes, particularly in the context of rehabilitation of Ranger uranium mine. Ecological processes within riparian habitats and biotic interactions across all habitats were at a higher risk of exposure to potential stressors. Generally, the selected assessment endpoints used for the operational phase of the mine are sufficient to measure and assess ecological processes. However, biological endpoints require additional suitable early detection indicators because marked lags exist in their response, which will be more important during the rehabilitation phase of the mine because of the longer timeframes to be assessed. The lags would otherwise allow potential impacts to underpinning processes to pass undetected. Risk identification allows monitoring programs to move beyond simple measurement variables to full evaluation of underlying ecological processes, which maintain both structure and function in ecosystems.
机译:必须在生态系统中存在和维护重点生态过程,以确保生态修复和保护计划的成功。本文识别并定义了在卡卡杜国家公园内Magela Creek集水区的水生生态系统中的各种空间鳞片上运行的关键生态过程,并追求那些可能易受潜在的地雷衍生的压力源的压力。该评估是确保当前和未来的环境监测计划来维护保护这些流程,特别是在游侠铀矿的康复的背景下。在河岸栖息地和所有栖息地的生物互动中的生态过程处于暴露于潜在压力的风险较高。通常,用于矿井操作阶段的所选评估终点足以测量和评估生态过程。然而,生物终点需要额外的早期检测指标,因为标记的滞后存在于它们的响应中,这在矿井的康复阶段期间将更加重要,因为待评估较长的时间措施。否则滞后会允许潜在的影响到支撑未知的过程。风险识别允许监控程序以超越简单的测量变量,以完全评估潜在的生态过程,这在生态系统中维护结构和功能。

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