| Literature DB >> 33137524 |
Tong Yindong1, Xu Xiwen2, Qi Miao2, Sun Jingjing2, Zhang Yiyan2, Zhang Wei3, Wang Mengzhu2, Wang Xuejun4, Zhang Yang5.
Abstract
Lake warming induced by climate change has constituted a particular challenge for the restoration of eutrophic lakes. However, a quantitative analysis about impacts of lake warming on the internal nutrient cycling in eutrophic lakes is limited. In this study, monthly nutrient monitoring data set in 2015-2016 in eutrophic Lake Chaohu, China, revealed a regular seasonal pattern of nutrient concentration. A process-based water quality model was established to quantify contributions from internal loadings on seasonal nutrient variations and predict responses under climate change scenarios. Results indicated that internal nutrient loading was responsible for the intra-annual variations of nutrient concentrations in the lake, and the internal loadings fluctuated much more between different seasons than the external nutrient inputs. We predicted that lake warming might probably result in stronger seasonal fluctuations of internal loading and create conditions beneficial for longer duration of cyanobacteria blooms in the year. Evidence derived from this study could help water managers to rethink the existing mitigation strategies in the restoration of eutrophic lakes and emphasize the potential interactions among lake warming, eutrophication and internal nutrient cycling in the future.Entities:
Keywords: Algal bloom; Climate change; Eutrophic lake; Internal nutrient cycling; Lake warming; Seasonal pattern
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Year: 2020 PMID: 33137524 DOI: 10.1016/j.watres.2020.116570
Source DB: PubMed Journal: Water Res ISSN: 0043-1354 Impact factor: 11.236