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Dissolved oxygen modeling of effluent-dominated macrophyte-rich Silver Bow Creek

机译:溶解氧气造型富含富铬富铬的银弓溪

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摘要

A dissolved oxygen (DO) mass balance was developed for a 5.9 km reach of the heavily eutrophied and macrophyte-rich wastewater effluent dominated Silver Bow Creek, MT, USA, to assess water-quality changes following an upgrade to the municipal wastewater facility. Surveys of diurnal DO were completed in 2015 and 2016, and various mass transfer rates were quantified including macrophyte photosynthesis and respiration, macrophyte density, sediment oxygen demand, and reaeration. A DO mass balance model was then developed in QUAL2K, where oxygen equivalents of macrophytes were incorporated as closely spaced diurnally varying point sources (sinusoids). Overall, diurnal DO swings and longitudinal oxygen profiles were reasonably replicated in the pre- and post-upgrade synoptic surveys and models, and the facility upgrade greatly enhanced DO concentrations in the stream. Improvements, however, were not enough to meet the minimum DO criterion for the waterbody. The results above have important implications for assessing DO responses and impairment status in macrophyte-rich streams. Moreover, they suggest wastewater treatment upgrades may not always achieve desired results and that modeling should be conducted a priori to understand receiving-water responses.
机译:溶解的氧气(DO)质量平衡是为5.9公里达到了5.9公里的大型富营养物和丰富的废水污水占据银弓Creek,MT,USA,以评估升级到市政废水设施后的水质变化。昼夜DO的调查在2015年和2016年完成,量化了各种传统转移率,包括宏观物质光合作用和呼吸,巨级细胞密度,沉积物需氧量和炎热。然后在质量2K中开发了DO质量平衡模型,其中氧气等当量被掺入紧密间隔的不同点源(正弦曲线)。总体而言,在升级前和后期升级概要调查和模型中,昼夜播放和纵向氧概况合理地复制,并且设施升级大大增强了流中的浓度。然而,改进是不足以满足水体的最低规范。以上结果对评估富含宏观物流的溪流的对响应和减值地位进行了重要意义。此外,他们建议废水处理升级可能并不总是实现所需的结果,并且应该先验到理解接受水反应的先验。

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