Spatial and temporal variations in algal phosphorus in Taihu Lake

Author:

Zhang Yu1,Zhu Wei1ORCID,Wang Ruochen1ORCID,Feng Gangyu1ORCID,Xue Zongpu2,Zhao Shuai1,Lv Yi1

Affiliation:

1. College of Environment, Hohai University, Nanjing, Jiangsu 210098, China

2. College of Hydrology and Water Resources, Hohai University, Nanjing, Jiangsu 210098, China

Abstract

Abstract Phosphorus circulation in Taihu Lake has attracted extensive attention, but the contribution of Microcystis to phosphorus circulation in this area is unknown. In this study, the phosphorus concentrations in algal samples collected from the lake in 2015–2016 were determined in the laboratory. From the concentration data, the total quantity of algal phosphorus was calculated and the seasonal variations in algal phosphorus were examined. The results indicated that the intracellular phosphorus content of Microcystis in Taihu varied from 0.044 to 0.130 pg/cell and tended to be high in spring and low in summer. The total amount of algal phosphorus in Taihu Lake ranged between 7.78 and 97.32 t over the study period. Algal phosphorus only accounted for between 1.5 and 18.5% of the phosphorus stock in the water. Because Microcystis accumulated downwind, there was a tendency for the total phosphorus concentrations to be low in the east of the lake and high in the west of the lake. This new information about the spatial and temporal distribution of algal phosphorus contributes to our understanding of how phosphorus in Microcystis contributes to phosphorus circulation in Taihu Lake.

Funder

Science and Technology Project of Jiangsu Province

Collaborative Innovation Center for Water Treatment Technology and Materials

Publisher

IWA Publishing

Subject

General Medicine

Reference24 articles.

1. Variations of cellular nitrogen and phosphorus in Microcystis during dense water-bloom;Advances in Biomedical Engineering,2011

2. Cyanobacteria as biological drivers of lake nitrogen and phosphorus cycling;Ecosphere,2015

3. Migration mechanism of biogenic elements and their quantification on the sediment-water interface of Lake Taihu: II. Chemical thermodynamic mechanism of phosphorus release and its source-sink transition;Scientia Limnologica Sinica,2006

4. Non-steady state dynamics of algal population growth: experiments with two chlorophytes;Journal of Phycology,2010

5. Several key parameters of dynamics of phosphorus uptake involved with competition for resources of Microcystis aerugionosa in Lake Taihu;Scientia Limnologica Sinica,2004

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