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Effects of Weir Construction on Phytoplankton Assemblages and Water Quality in a Large River System

机译:堰施工对大河系统浮游植物组合和水质的影响

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摘要

Flow regulation is one of the most common anthropogenic factors affecting rivers worldwide. In Korea, 16 weirs were constructed along four major rivers from 2009 to 2012. This study aimed to elucidate initial changes in physical, chemical, and biological variables after the construction of consecutive weirs on the Nakdong River, a major large river system. Water quality variables and phytoplankton cell densities were investigated at eight representative sites and compared with the data recorded before the weir construction. There were spatial and temporal changes in the hydraulic retention time (HRT), total phosphorus (TP), and chlorophyll a concentrations among the eight weir sections. HRT increased after the weir construction, while TP and chlorophyll a tended to decrease from the middle to lower section of the Nakdong River. Furthermore, differences were observed in the phytoplankton community composition between 2006⁻2007 and 2013. There was a marginal decrease in the duration of centric diatom (Stephanodiscus hantzschii) blooms after weir construction. However, Microcystis aeruginosa proliferated more extensively during summer and autumn than it did before the weir construction. Our results suggest that changes in hydrological factors, in response to consecutive weir construction, may contribute to greater physical, chemical, and ecological variability.
机译:流量调节是影响全世界河流的最常见的人为因素之一。在韩国,从2009年到2012年的四个主要河流建造了16名堰。本研究旨在在大型河流系统的连续堰施工后阐明物理,化学和生物变量的初步变化。在八个代表性地点调查了水质变量和浮游植物细胞密度,并与堰施工前记录的数据进行比较。液压保留时间(HRT),总磷(TP)和叶绿素浓度存在液压保留时间(HRT),叶绿素部分的空间和时间变化。 HRT在堰建设后增加,而TP和叶绿素A倾向于从内东河的中部到下部减少。此外,在2006年2007和2013之间的植物植物群落组合物中观察到差异。在堰建设后,以中心硅藻(Stephanodiscus Hantzschii)的持续时间有边缘下降。然而,微囊杆菌铜绿假单胞菌在夏季和秋季比在堰建设之前更广泛地增殖。我们的研究结果表明,对于连续堰建设,水文因素的变化可能导致更大的物理,化学和生态变异性。

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