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A stormflow/baseflow comparison of dissolved organic matter concentrations and bioavailability in an Appalachian stream

机译:阿巴拉契亚河流中溶解有机物浓度和生物利用度的暴雨/基流比较

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Patterns of dissolved organic carbon (DOC) and nitrogen (DON) delivery were compared between times of stormflow and baseflow in Paine Run, an Appalachian stream draining a 12.4 km2 forested catchment in the Shenandoah National Park (SNP), Virginia. The potential in-stream ecological impact of altered concentrations and/or chemical composition of DOM during storms also was examined, using standardized bacterial bioassays. DOC and DON concentrations in Paine Run were consistently low during baseflow and did not show a seasonal pattern. During storms however, mean DOC and DON concentrations approximately doubled, with maximum concentrations occurring on the rising limb of storm hydrographs. The rapid response of DOM concentration to changes in flow suggests a near-stream or in-stream source of DOM during storms. Stormflow (4% of the time, 36% of the annual discharge) contributed >50% of DOC, DON and NO3 − flux in Paine Run during 1997. In laboratory bacterial bioassays, growth rate constants were higher on Paine Run stormflow water than on baseflow water, but the fraction of total DOM which was bioavailable was not significantly different. The fraction of the total stream DOC pool taken up by water column bacteria was estimated to increase from 0.03 ± 0.02% h−1 during baseflow, to 0.15 ± 0.04% h−1 during storms. This uptake rate would have a minimal effect on bulk DOM concentrations in Paine Run, but storms may still have considerable impact on the bacterial stream communities by mobilizing them into the water column and by supplying a pulse of DOM.
机译:在弗吉尼亚州谢南多厄国家公园(SNP)排放了12.4 km2 森林集水区的阿巴拉契亚河流Paine Run中,比较了风暴流和底流时间之间溶解有机碳(DOC)和氮(DON)的输送方式。使用标准的细菌生物测定法,还检查了暴风雨期间DOM浓度和/或化学成分变化对河流产生的潜在生态影响。 Paine Run中的DOC和DON浓度在基流期间始终较低,并且没有显示出季节性模式。但是,在暴风雨期间,DOC和DON的平均浓度大约增加了一倍,最大浓度出现在暴风雨水位图的上升沿。 DOM浓度对流量变化的快速响应表明,暴风雨期间DOM是近流源还是流内源。在1997年的Paine Run中,暴风雨(占4%的时间,占年排放量的36%)贡献了DOC,DON和NO3 -通量的50%以上。在实验室细菌生物测定中,增长率常数为Paine Run暴雨水比基流水要高,但是总DOM的可生物利用分数没有显着差异。据估计,水柱细菌吸收的总溪流DOC池的比例在底流期间从0.03±0.02%h-1 增加到暴风雨期间的0.15±0.04%h-1 。在Paine Run中,这种吸收速率对总DOM浓度的影响最小,但风暴可能仍会通过将其迁移到水柱中并提供DOM脉冲而对细菌流群落产生相当大的影响。

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