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Evaluation of watershed-derived mass loads to prioritize TMDL decision-making

机译:评估流域派生的质量负载,以优先考虑TMDL决策

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摘要

A total maximum daily load (TMDL) for oxygen demanding substances is being implemented in the San Joaquin River (SJR) in California (USA) due to frequently occurring low dissolved oxygen conditions. The SJR is a eutrophic river, heavily impacted by agriculture. A mass balance was developed to identify the sources of oxygen-demanding substances and nutrients to the river with the objective of providing a scientific basis for management actions needed to meet TMDL requirements. Data were collected for flow and water quality and mass loads calculated for sites within the main stem of the SJR, river inputs (tributaries), and diversions in the study area. Using a quadrant analysis, tributary flows and loads are ranked to identify targets for water quality improvement efforts. Additionally, all mass loads were summed (inputs minus diversions) and compared with observed loads at the downstream limit of the study area. The mass balance analysis identifies major contributors of mass loads and mass balance closure is assessed for each constituent. These analysis methods inform the TMDL process which includes a load allocation, and is useful for determining locations for implementation of improvement projects needed to improve the health of the river.
机译:由于频繁发生的低溶解氧条件,美国加利福尼亚州的圣华金河(SJR)正在实施耗氧物质的总最大日负荷(TMDL)。 SJR是一条富营养化的河流,受到农业的严重影响。开发了质量平衡以识别河流中的需氧物质和养分的来源,目的是为满足TMDL要求所需的管理行动提供科学依据。收集了有关SJR主干内站点,河流输入量(支流)和研究区域中的分流点的流量,水质和质量负荷的数据。使用象限分析,对支流和负荷进行排名,以确定改善水质的目标。此外,将所有质量载荷相加(输入减去转向),并与研究区域下游极限处的观察到的载荷进行比较。质量平衡分析确定了质量负荷的主要贡献者,并对每种成分的质量平衡关闭进行了评估。这些分析方法告知TMDL过程,其中包括负荷分配,对于确定实施改善河流健康所需的改善项目的位置很有用。

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