太湖藻类群落结构改变对藻源性磷浓度的影响
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1.:江苏省无锡环境监测中心;2.江苏省无锡环境监测中心;3.:江南大学环境与生态学院

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江苏省生态环境监测科研基金


Influence and analysis of the shift of algae community structure on algae-derived phosphorus concentration of Lake Taihu
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1.:Jiangsu Wuxi Environmental Monitoring Center;2.:School of Environment and Ecology,Jiangnan University

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    摘要:

    为定量评估太湖藻源性磷含量以及藻类群落结构对其影响,更好地认识藻类生消与湖泊内源磷循环提供数据支撑,本文基于2021 ~ 2023年太湖藻类、水质监测资料和实验分析,测算了太湖藻源性磷浓度及其占总磷的比例。结果表明,2021 ~ 2023年期间,太湖总藻密度年均值由6.3×107 cells/L降至4.4×107 cells/L,微囊藻占比由79.8%降至35.6%,隐藻、绿藻、硅藻的藻密及占比则显著上升,藻类群落结构明显改变;同期的总磷浓度在0.053 ~ 0.062毫克/升波动,颗粒态总磷平均占比为60.4%,其中藻源性颗粒态磷(藻源性磷)占颗粒态总磷、总磷比例分别为49.4%、29.6%,表明藻源性磷是颗粒态磷的重要组成部分。从群落组成对藻源性磷的贡献上看,太湖的藻源性磷主要由蓝藻、硅藻、绿藻三个门类的藻种构成。2021 ~ 2022年,蓝藻门对藻源性磷贡献率在65%以上,随着蓝藻密度在2023年的迅速下降,其贡献的藻源性磷及占比也明显减少,硅藻门的藻源性磷及占比则由23.9%上升至56.1%。2023年的总藻、蓝藻密度相比2021年明显下降,但由于硅藻、绿藻等门类的占比有所上升,它们提供的藻源性磷增量补偿了蓝藻藻源性磷减量,最终导致全湖总藻源性磷不降反升。尽管硅藻等门类的藻类密度增量不及蓝藻密度减量,但其更大的细胞体积带来更高的单体磷含量,因而对藻源性磷补偿效应较为显著。

    Abstract:

    To quantitatively evaluate the content of algae-derived phosphorus in Lake Taihu and the influence of the algal community structure on it, and to provide data support for a better understanding of the growth and decay of algae and the internal phosphorus cycle in the lake, this study calculated the concentration of total algae-derived phosphorus in Lake Taihu and its proportion to total phosphorus in the lake based on the monitoring data and investigation data of algae and water quality of Lake Taihu from 2021 to 2023. The results showed that from 2021 to 2023, the total algal density of Lake Taihu decreased from 6.3 × 107 cells/L to 4.4 × 107 cells/L (annual average value), the proportion of Microcystis decreased from 79.8% to 35.6%. On the other hand, the density and proportion of cyanophyta, green algae and diatoms increased significantly, and the structure of the whole lake"s algal community changed significantly. During the same period, the total phosphorus concentration in the Lake Taihu fluctuated from 0.053 mg/L to 0.062 mg/L, and the average proportion of particulate total phosphorus was 60.4%, of which the proportion of algae-derived phosphorus in particulate total phosphorus and total phosphorus was 49.4% and 29.6%, respectively, indicating that algae-derived phosphorus is an important component of particulate phosphorus. According to the further subdivision of the algal community structure, it is found that the algae-derived phosphorus in Lake Taihu is mainly contributed by three categories including cyanobacteria, diatom and chlorophyta. From 2021 to 2022, the contribution rates of cyanobacteria to algae derived phosphorus were 66.5% and 65.7%, respectively. With the rapid decrease in cyanobacteria density in 2023, their contribution and proportion of algae derived-phosphorus also significantly decreased, while the contribution and proportion of algae-derived phosphorus from diatom increased from 23.9% to 56.1%. The total algae and cyanobacteria density in 2023 had significantly decreased compared to 2021, but due to the increase in the proportion of diatom, chlorophyta and other categories, the increase in algae-derived phosphorus provided by them compensated for the decrease in cyanobacteria algae-derived phosphorus, ultimately leading to an increase in the total algae-derived phosphorus in the entire lake instead of a decrease. Although the increase in algal density of diatom and other categories is not as significant as the decrease in cyanobacteria density, they have larger cell volume and higher monomeric phosphorus content, thus exhibiting a more significant compensatory effect on algal-derived phosphorus.

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  • 收稿日期:2025-01-24
  • 最后修改日期:2025-03-25
  • 录用日期:2025-03-26
  • 在线发布日期: 2025-06-04
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