Changes of DOM and its correlation with internal nutrient release during cyanobacterial growth and decline in Lake Chaohu, China

IF 6.9 Q1 Environmental Science
Yan Bao , Tao Huang , Chengwu Ning , Tingting Sun , Pengliang Tao , Jie Wang , Qingye Sun
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引用次数: 12

Abstract

The seasonal changes in dissolved organic matter (DOM), and its correlation with the release of internal nutrients during the annual cycle of cyanobacteria in the eutrophic Lake Chaohu, China, were investigated from four sampling periods between November 2020 and July 2021. The DOM fluorescence components were identified as protein-like C1, microbial humic-like C2, and terrestrial humic-like C3. The highest total fluorescence intensity (FT) of DOM in sediments during the incubation stage is due to the decomposition and degradation of cyanobacteria remains. The lowest humification of DOM and the highest proportion of C1 in waters during the initial cyanobacterial growth indicate that fresh algae are the main source. The highest molecular weight of DOM and FT of the C2 in sediments during cyanobacterial outbreaks indicate the concurrent deposition of undegraded cyanobacterial remains and microbial degradation. The components of DOM are affected mainly by the dissolved total phosphorus in waters, while the temperature drives the annual cycle of cyanobacteria. The decreasing C1 in sediments and increasing nutrients in waters from the cyanobacterial incubation to outbreak indicate that mineralization of algal organic matter contributes importantly to the release of internal nutrients, with the strongest release of phosphorus observed during the early growth of cyanobacteria. The humic-like C2 and C3 components could also affect the dynamics of internal phosphorus through the formation of organic colloids and organic–inorganic ligands. The results show that the degradation of DOM leads to nutrients release and thus supports the continuous growth of cyanobacteria in eutrophic Lake Chaohu.

Abstract Image

巢湖蓝藻生长衰退过程中DOM的变化及其与内部养分释放的相关性
在2020年11月至2021年7月的四个采样期,研究了富营养化巢湖蓝藻年周期中溶解有机物(DOM)的季节变化及其与内部营养物质释放的相关性。DOM荧光成分被鉴定为蛋白质样C1、微生物类腐殖C2和陆地类腐殖C3。培养阶段沉积物中DOM的最高总荧光强度(FT)是由于蓝藻残留物的分解和降解。在蓝藻生长初期,水体中DOM的腐殖化程度最低,C1的比例最高,这表明新鲜藻类是主要来源。在蓝藻爆发期间,沉积物中C2的DOM和FT的最高分子量表明未降解蓝藻残余物的沉积和微生物降解同时发生。DOM的组成主要受水体中溶解总磷的影响,而温度驱动蓝藻的年周期。从蓝藻孵化到爆发,沉积物中C1的减少和水中营养物质的增加表明,藻类有机物的矿化对内部营养物质的释放有重要贡献,在蓝藻早期生长期间观察到磷的释放最强。腐殖类C2和C3组分也可以通过形成有机胶体和有机-无机配体来影响内部磷的动力学。结果表明,DOM的降解导致营养物质的释放,从而支持富营养化巢湖蓝藻的持续生长。
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来源期刊
Journal of environmental sciences
Journal of environmental sciences Environmental Science (General)
CiteScore
12.80
自引率
0.00%
发文量
0
审稿时长
17 days
期刊介绍: Journal of Environmental Sciences is an international peer-reviewed journal established in 1989. It is sponsored by the Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, and it is jointly published by Elsevier and Science Press. It aims to foster interdisciplinary communication and promote understanding of significant environmental issues. The journal seeks to publish significant and novel research on the fate and behaviour of emerging contaminants, human impact on the environment, human exposure to environmental contaminants and their health effects, and environmental remediation and management. Original research articles, critical reviews, highlights, and perspectives of high quality are published both in print and online.
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