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解析连续大型水坝导致的南洞江蓝藻水华时空异质性的关键因素

Deciphering the key factors determining spatio-temporal heterogeneity of cyanobacterial bloom dynamics in the Nakdong River with consecutive large weirs.

机构信息

Nakdong River Environment Research Center, National Institute of Environmental Research, Daegu, Republic of Korea.

Nakdong River Environment Research Center, National Institute of Environmental Research, Daegu, Republic of Korea; Water Environmental Engineering Research Division, National Institute of Environmental Research, Incheon, Republic of Korea.

出版信息

Sci Total Environ. 2021 Feb 10;755(Pt 2):143079. doi: 10.1016/j.scitotenv.2020.143079. Epub 2020 Oct 17.

Abstract

Following the construction of eight large weirs in a 200-km section of the Nakdong River, which is a major water source for the region, harmful cyanobacterial blooms have been occurring annually, causing severe problems with water quality. The present study investigated the community structure of harmful cyanobacteria and identified temporal and spatial patterns in harmful cyanobacterial blooms and their dynamic relationships with physicochemical, hydrological, and meteorological variables in the eight weir sections for 6 years from 2013 to 2018. The dominant harmful cyanobacteria in the eight weir sections were Aphanizomenon and Microcystis spp. There was a successional phenomenon wherein Aphanizomenon spp. first bloomed in spring, and then Microcystis spp. bloomed as water temperatures increased. Additionally, the initiation and duration of the blooms of both genera were affected by the timing and volume of heavy rainfall that caused flushing of cyanobacterial biomass, resulting in direct reduction of cyanobacterial growth in all sections. The harmful cyanobacteria of upstream weirs did not affect the biomass of downstream weirs in terms of either growth initiation or time taken to reach peak biomass, despite being physically connected. Owing to the long retention time during the dry season, similar to what occurs in separate reservoirs, the water quality of each weir section, particularly regarding nutrient characteristics and retention time, were the major factors determining the harmful cyanobacterial abundance, resulting in heterogeneous spatial distribution of harmful cyanobacterial blooms in the Nakdong River.

摘要

在对该地区主要水源的南道河 200 公里河段建造了 8 座大型水坝之后,每年都会发生有害蓝藻水华,导致水质严重恶化。本研究调查了有害蓝藻的群落结构,并确定了 6 年来(2013 年至 2018 年)在 8 个水坝段有害蓝藻水华的时空模式及其与理化、水文学和气象变量的动态关系。8 个水坝段的优势有害蓝藻为鱼腥藻属和微囊藻属。存在一个演替现象,即鱼腥藻属首先在春季开花,然后随着水温升高微囊藻属开花。此外,这两个属的水华的起始和持续时间都受到强降雨的时间和水量的影响,强降雨会导致蓝藻生物量被冲刷,从而直接减少所有水坝段的蓝藻生长。尽管上游水坝的有害蓝藻与下游水坝在物理上是相连的,但无论是在生长开始还是达到峰值生物量的时间方面,都不会影响下游水坝的生物量。由于旱季的停留时间较长,类似于单独水库的情况,每个水坝段的水质,特别是营养特征和停留时间,是决定有害蓝藻丰度的主要因素,导致南道河有害蓝藻水华的空间分布不均匀。

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