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Modelling Dissolved Oxygen Depression in an Urban River in China

机译:模拟中国城市河流中的溶解氧压降

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Dissolved oxygen (DO) depression in urban rivers appears to be increasing in developing countries, which causes severe aquatic ecosystem stresses. One urban river which suffers DO depression under low flow conditions and requires systematic research for effective mitigation strategies is the Nanfei River (Hefei, China). We investigated its longitudinal profiles of DO and other related water constituents with high spatial resolution monitoring at low flow. A mechanistic DO model for the reach was customized and calibrated with the data obtained. We found that the daily average DO levels within the 11 km study reach shifted from supersaturation (11.5 mg L ?1 ) upstream of the Wangtang Wastewater Treatment Plant (WWTP) to serious depletion (3.6 mg L ?1 ) downstream. Process analysis indicated that DO production via strong algal photosynthesis overwhelmed the DO consumptions upstream from the WWTP. In contrast, DO sources could not compensate for DO consumptions, wherein carbonaceous deoxygenation was the largest consumer of the DO (approximately 70%) downstream the WWTP. Rather than directly contributing labile organics, the WWTP effluent affected the DO balance by shifting the metabolism from upstream autotrophy to downstream heterotrophy. Finally, mitigation strategies for DO depression in rivers in rapidly-urbanizing regions were suggested accordingly.
机译:在发展中国家,城市河流中溶解氧(DO)的下降似乎正在增加,这导致了严重的水生生态系统压力。南fei河(中国合肥)是一条在低流量条件下遭受DO降低并需要系统研究以采取有效缓解策略的城市河。我们以低流量下的高空间分辨率监测研究了DO和其他相关水成分的纵向分布。定制了用于范围的机械DO模型,并使用获得的数据进行了校准。我们发现,在11公里的研究中,每日平均溶解氧水平从王塘污水处理厂(WWTP)上游的过饱和(11.5 mg L?1)转变为下游的严重耗水(3.6 mg L?1)。过程分析表明,通过强大的藻类光合作用产生的DO淹没了WWTP上游的DO消耗。相反,DO源无法补偿DO的消耗,其中碳质脱氧是WWTP下游DO的最大消耗者(约70%)。污水处理厂废水不是直接贡献不稳定的有机物,而是通过将新陈代谢从上游自养转向下游异养而影响溶解氧的平衡。最后,据此提出了快速城市化地区河流中DO降低的缓解策略。

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