Park Yongeun, Pachepsky Yakov, Hong Eun-Mi, Shelton Daniel, Coppock Cary
J Environ Qual. 2017 Jan;46(1):219-226. doi: 10.2134/jeq2016.03.0114.
Streambed sediments can harbor large populations that are released into the water column during high-flow events. Few studies have been conducted on the rates of transfer from streambed sediment to water column in low-flow conditions in natural streams. The aim of this work was to apply the watershed-scale model SWAT (Soil and Water Assessment Tool) to a natural stream to evaluate the need to account for the release from streambed sediments during baseflow periods and to compare the results of simulating such a release by assuming predominantly passive transport, driven by groundwater influx, against simulations assuming predominantly active transport of random or chemotaxis-driven bacteria movement. concentrations in water during baseflow periods were substantially underestimated when release from the streambed was attributed only to streambed sediment resuspension. When considered in addition to the release due to sediment resuspension at high flows, the active and passive release assumptions provided 42 and 4% improvement, respectively, in the RMSE of logarithms of concentrations. Estimated fluxes to water column during the baseflow periods from June to November ranged from 3.3 × 10 colony-forming units (CFU) m d in the game land area to 1.4 × 10 CFU m d in the mixed pasture and cropland. Results demonstrate that release of from streambed sediments during baseflow periods is substantial and that water column concentrations are dependent on not only land management practices but also on in-stream processes.
河床沉积物中可能含有大量微生物,在高流量事件期间会释放到水柱中。关于自然溪流在低流量条件下从河床沉积物向水柱的转移速率,相关研究较少。本研究的目的是将流域尺度模型SWAT(土壤和水资源评估工具)应用于一条自然溪流,以评估在基流期考虑河床沉积物释放的必要性,并比较以下两种模拟结果:一种假设主要是由地下水流入驱动的被动输运,另一种假设主要是随机或趋化性驱动的细菌运动的主动输运。当仅将河床释放归因于河床沉积物再悬浮时,基流期水中的浓度被大幅低估。除了高流量时沉积物再悬浮导致的释放外,主动和被动释放假设分别使浓度对数的均方根误差(RMSE)提高了42%和4%。6月至11月基流期向水柱的估计通量范围为,狩猎区为3.3×10菌落形成单位(CFU)/(m²·d),混合牧场和农田为1.4×10 CFU/(m²·d)。结果表明,基流期河床沉积物的释放量很大,水柱浓度不仅取决于土地管理实践,还取决于河流内部过程。