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Water quality in two Australian dryland rivers: Spatial and temporal variability and the role of flow

机译:澳大利亚两条旱地河流的水质:时空变化和流量的作用

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Water quality, along with hydrology, plays an important role in the spatial and temporal dynamics of a range of ecological patterns and processes in large rivers and is also often a key component of river health assessments. Geology and land use are significant drivers of water quality during flow periods while during periods of no-flow, local-scale factors such as evaporation, groundwater influence and the concentration and precipitation of compounds are important. This study explored the water quality changes in two Australian dryland rivers, the Cooper Creek (Lake Eyre Basin) and the Warrego River (Murray-Darling Basin), across different hydrological phases over several years. Water quality varied both spatially and temporally; the greatest spatial variability occurred during the no-flow phase, with temporal changes driven by flow. Concentrations of major anions and cations also varied spatially and temporally, with an overall cation dominance of calcium and magnesium and an anion dominance of bicarbonate. This bicarbonate dominance contrasts with previous data from inland lentic systems where sodium chloride was found to dominate. Such extreme spatial and temporal variability hampers successful derivation of water quality guidelines for these variable rivers and suggests such guidelines would need to be developed with respect to 'flow phase'.
机译:在大河流中,水质和水文在一系列生态模式和过程的时空动态中起着重要作用,并且通常也是河流健康评估的关键组成部分。地质和土地利用是水流期间水质的重要驱动力,而在无水流期间,局部尺度的因素(例如蒸发,地下水影响以及化合物的浓度和沉淀)很重要。这项研究探索了几年来不同水文阶段的两条澳大利亚旱地河流,库珀河(艾尔湖盆地)和沃里戈河(默里-达令盆地)的水质变化。水质在空间和时间上都有变化;最大的空间变化发生在无流量阶段,时间变化由流量驱动。主要阴离子和阳离子的浓度在空间和时间上也不同,钙和镁的总体阳离子占主导地位,碳酸氢盐的阴离子占主导地位。这种碳酸氢盐的优势与以前的内陆透镜系统数据相反,后者发现氯化钠占主导地位。这种极端的时空变化会阻碍这些可变河流水质准则的成功推导,并建议需要针对“水流阶段”制定此类准则。

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