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Target setting for pollutant discharge management of rivers\ud in the Great Barrier Reef catchment area

机译:河流污染物排放管理目标设定\ ud 在大堡礁集水区

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摘要

Water Quality Improvement Plans (WQIPs) are being developed for individual river basins on the Great Barrier Reef (GBR) catchment associated with the GBR Water Quality Protection Plan. Within each WQIP, marine ecosystem targets are linked to end-of-river pollutant (suspended sediments, nutrients and pesticides) load targets and to farm level management practice targets. The targets are linked through quantitative models; e.g. one model connects GBR chlorophyll concentrations (marine target) to end-of-river nitrate loads, a second connects the end-of-river nitrate loads to fertiliser management targets in the catchment, whereas a third model links fertiliser application to nitrate loss at the farm scale. The difficulties of applying these linked models to derive credible and practical management targets are great, given the high degree of uncertainty in each model. Our understanding of the generation of suspended sediments, nutrients and pesticides in catchments and the relationship to on-farm management, the transport of these materials to the ocean, their transport in coastal waters and their effects on marine ecosystems is incomplete. The challenge is to produce estimates from the models, with known levels of uncertainty, but robust enough for management purposes. Case studies from the Tully–Murray basin and the Burdekin basin in north Queensland are discussed.
机译:正在为与大堡礁(GBR)集水区相关的单个流域制定与GBR水质保护计划相关的水质改善计划(WQIP)。在每个WQIP中,海洋生态系统目标都与河流末端污染物(悬浮的沉积物,营养物质和农药)的负荷目标以及农场一级的管理实践目标相关联。通过定量模型将目标联系在一起;例如一个模型将GBR叶绿素浓度(海洋目标)与河流末端的硝酸盐负荷联系起来,第二个模型将河流末端的硝酸盐负荷与集水区的肥料管理目标联系起来,而第三个模型将肥料施用与流域的硝酸盐损失联系起来。农场规模。考虑到每个模型的高度不确定性,应用这些链接的模型来得出可靠和实用的管理目标的困难很大。我们对流域内悬浮沉积物,养分和农药的产生以及与农场管理,这些物质向海洋的运输,其在沿海水域的运输及其对海洋生态系统的影响之间的关系的了解还不完整。面临的挑战是从模型中获得估计值,这些估计值具有已知的不确定性水平,但对于管理目的而言足够强大。讨论了昆士兰州北部的塔利-默里盆地和伯德金盆地的案例研究。

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