A modified cyanobacteria prediction model based on cellular automata model using N and P concentration reverse data: a case study in Taihu Lake

Environ Sci Pollut Res Int. 2022 May;29(23):34546-34557. doi: 10.1007/s11356-022-18612-5. Epub 2022 Jan 17.

Abstract

The problem of algal bloom caused by eutrophication has attracted global attention. Many scholars have studied the problem associated with algae bloom, but few have carried out dynamic monitoring, instead focusing on the formation mechanism of cyanobacteria. For our study of the Taihu Lake in China, we used Moderate-Resolution Imaging Spectroradiometer (MODIS) and Landsat remote sensing image data from 2017 to establish a prediction model. First, we used MODIS data to retrieve the concentration of N, P, and chlorophyll a in water. Then, we applied the analytic hierarchy process (AHP) model to the inversion results to construct the diffusion potential index. Finally, we used C# to compile the cellular automata (CA) model. We found that the distribution of cyanobacteria predicted by our method was consistent with the algal bloom situation of Taihu Lake in 2017. The results showed that the method effectively predicts the dynamic transfer of cyanobacteria from outbreak to diffusion in a short period of time, which can help decision-makers monitor lake health.

Keywords: Cellular automata; Cyanobacteria; Nitrogen; Phosphorus; Prediction model; Taihu Lake.

MeSH terms

  • Cellular Automata
  • China
  • Chlorophyll A
  • Cyanobacteria*
  • Environmental Monitoring
  • Eutrophication
  • Lakes*
  • Phosphorus / analysis

Substances

  • Phosphorus
  • Chlorophyll A