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Temporal and spatial variability in concentrations of phosphorus species under thermal pollution conditions of a dam reservoir - the Rybnik Reservoir case study

机译:坝水库热污染条件下磷种类浓度的时间和空间变异 - rybnik储层案例研究

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摘要

The research objective was to study temporal and spatial relations between specific phosphorus species as well as to examine total phosphorus content in the bottom sediments of an anthropogenic, hypertrophic limnic ecosystem Rybnik Reservoir, functioning under thermal pollution conditions. The chemical extraction procedure for the speciation of bioavailable phosphorus forms was used. It was found that available algae phosphorus was the most dominant phosphorus species in both sediment layers (83%), while the lower share was readily desorbed phosphorus form (0.1%). The phosphorus species concentrations depended on the organic matter concentration. The differences between phosphorus species contents in the upper (5 cm) and lower (15-20 cm) sediment core layers were low. The biologically active sediment layer extended from the sediment surface to at least 20 cm depth of the sediment core. Distributions of the concentrations within the year and at specific sampling points resulted from the variability observed for particular points and transformation intensity. Furthermore in the following study, the reaction rate constant for the increase and decrease in the concentrations of the phosphorus species in sediments was given. It was indicated that the speed of the phosphorus species transformations was affected by the environment temperature. In the heated water discharge zone (water temp. 17-35 degrees C) the concentrations of selected speciation phosphorus forms increased more than in the dam zone (5-25 degrees C). It was also found that the abundance of the bottom sediments with phosphorus species was related to the oblong and transverse asymmetry of reservoir depth.
机译:研究目的是研究特定磷物种之间的时间和空间关系,以及在热污染条件下运作人为,肥厚性石灰岩生态系统Rybnik储层的底部沉积物中的总磷含量。使用了生物可利用磷形式的化学提取方法。发现可用的藻类磷是沉积物层(83%)中最多的磷种类,而较低的份额易于解吸的磷形式(0.1%)。磷物种浓度依赖于有机物质浓度。上部(5cm)和更低(15-20cm)沉积物芯层的磷物质含量之间的差异低。从沉积物表面延伸到沉积物芯的至少20cm深度的生物活性沉积物层。年内浓度和特定采样点的分布由特定点和转化强度观察到的可变性产生。此外,在以下研究中,给出了沉积物中磷含量浓度的增加和降低的反应速率常数。结果表明,磷种类转化的速度受环境温度的影响。在加热的排水区(水温17-35℃)中,所选物质磷形式的浓度比在坝区(5-25℃)中增加。还发现,磷脂底部沉积物的丰度与储层深度的椭圆形和横向不对称有关。

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