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Spatial variability of chlorophyll-a and abiotic variables in a river-floodplain system during different hydrological phases

机译:不同水文阶段河流漫滩系统中叶绿素-a和非生物变量的空间变异性

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Chlorophyll-a (Chl-a) and abiotic variables were measured in the main channel and floodplain waterbodies of the Middle Parana River to analyse the system dynamics and to assess their spatial variability during different hydrological phases, including an extreme flood. We wanted to test that the flood does not always have a homogenising effect in a river-floodplain system. An explanatory model for Chl-a was performed according to Akaike's Information Criterion (AIC), and the relation of water level with the coefficient of variation (CV) among sites for each variable was explored. The model explained 64% of Chl-a variability. Water level, depth:euphotic zone ratio (Z (d):Z (eu)) (inverse correlation) and conductivity (direct correlation) were the significant explicative variables. The CV of Chl-a decreased with flood from the main channel to the floodplain, but for turbidity, Z (d):Z (eu), pH, dissolved oxygen, soluble reactive phosphorus and Chl-a:pheophytin-a ratio, it increased. However, within the floodplain, CV of turbidity, Z (d):Z (eu) and pH decreased during flood. These suggest that the homogenising effect frequently observed during inundation cannot be generalised and that the floodplain may maintain its identity even during flood. The extreme flood and its overlap with the warm season and sedimentological pulse probably contributed to the heterogeneity in the spatial gradient.
机译:在巴拉那河中游的主要河道和洪泛区水体中测量了叶绿素-α(Chl-a)和非生物变量,以分析系统动力学并评估其在不同水文阶段(包括极端洪水)的空间变异性。我们想测试洪水在河漫滩系统中并不总是具有均质作用。根据Akaike的信息标准(AIC)进行了Chl-a的解释模型,并探讨了每个变量的位点之间水位与变异系数(CV)的关系。该模型解释了Chl-a变异的64%。水位,深度:富营养区比(Z(d):Z(eu))(反相关)和电导率(直接相关)是重要的解释变量。 Chl-a的CV随主渠道至洪泛区的洪水而降低,但对于浊度,Z(d):Z(eu),pH,溶解氧,可溶性活性磷和Chl-a:ophophytin-a的比率,增加。然而,在洪泛区内,洪水期间浊度,Z(d):Z(eu)和pH值的CV降低。这些表明,泛滥期间经常观察到的均质化效果不能一概而论,泛滥平原甚至在泛滥期间也可能保持其特性。极端洪水及其与暖季和沉积脉动的重叠可能是造成空间梯度异质性的原因。

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