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Phytoplankton gross primary production increases along cascading impoundments in a temperate low-discharge river: Insights from high frequency water quality monitoring

机译:温带低流量河流中浮游植物的初级生产总值随着级联蓄水量的增加:高频水质监测的见解

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摘要

Damming alters carbon processing along river continua. Estimating carbon transport along rivers intersected by multiple dams requires an understanding of the effects of cascading impoundments on the riverine metabolism. We analyzed patterns of riverine metabolism and phytoplankton biomass (chlorophyll a; Chla) along a 74.4-km river reach intersected by six low-head navigation dams. Calculating gross primary production (GPP) from continuous measurements of dissolved oxygen concentration, we found a maximum increase in the mean GPP by a factor of 3.5 (absolute difference of 0.45 g C m−3 d−1) along the first 26.5 km of the study reach, while Chla increased over the entire reach by a factor of 2.9 (8.7 µg l−1). In the intermittently stratified section of the deepest impoundment the mean GPP between the 1 and 4 m water layer differed by a factor of 1.4 (0.31 g C m−3 d−1). Due to the strong increase in GPP, the river featured a wide range of conditions characteristic of low- to medium-production rivers. We suggest that cascading impoundments have the potential to stimulate riverine GPP, and conclude that phytoplankton CO2 uptake is an important carbon flux in the river Saar, where a considerable amount of organic matter is of autochthonous origin.
机译:筑坝改变了沿河连续带的碳处理。估算沿着由多个水坝相交的河流的碳传输需要了解级联蓄水对河流代谢的影响。我们分析了沿河水新陈代谢和浮游植物生物量(叶绿素a; Chla)的模式,该河沿74.4公里的河段与六个低水位航行水坝相交。通过对溶解氧浓度的连续测量来计算总初级生产量(GPP),我们发现平均GPP的最大值增加了3.5倍(绝对差为0.45 g C m -3 d 沿研究范围的前26.5公里进行-1(sup>),而Chla在整个范围内增加了2.9(8.7µggll -1 )。在最深水库的间歇分层区域中,1和4μm水层之间的平均GPP相差1.4(0.310.3g C m -3 d -1 )。由于GPP的强劲增长,这条河流的特征是中低产河流的各种条件。我们认为,级联蓄水库有可能刺激河道GPP,并得出结论,浮游植物的CO 2吸收是萨尔河的重要碳通量,那里大量的有机物是自生的。

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