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Early Detection of Cyanobacterial Blooms and Associated Cyanotoxins using Fast Detection Strategy
Published on: February 25, 2021
Intensifying extreme climatic events drive the normalization of cyanobacterial blooms in a large shallow eutrophic
Changqing Liu1, Kun Xue1, Jinsheng Yang2
1State Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 211135, China.
Abstract:
Under anthropogenic climate change, intensifying extreme climatic events are increasingly reshaping lake cyanobacterial blooms. However, their contributions remain poorly quantified and the causal pathways are unclear, limiting their integration into attribution and early warning systems and posing risks to drinking water safety. Here, we fuse 22 years of multisource daily records, build a distributed lag nonlinear model (DLNM) with counterfactual decomposition to separate the marginal effects of extremes from the concurrent normal climate load, and develop a transferable machine learning nowcast centered on extreme exposure features. From 2003 to 2024, extreme climatic events contributed more cumulatively than the normal climate load and served as proximate triggers through predominantly lagged responses. Extreme heat events (EHEs) and extreme drought events (EDEs) generally amplified blooms, whereas extreme rainfall events (EREs) tended to suppress them, primarily by altering water temperature and internal and external nutrient loading. Centering on daily extreme exposure features, we built a nowcasting and threshold alert model that requires no contemporaneous water quality inputs. Bias corrected projections indicate monotonic increases in the frequency, persistence, and cumulative exposure of heat and compound extremes toward 2100, driving a shift from frequent to near normalized blooms; under a high emission pathway (SSP5-8.5), annual bloom duration in Lake Hongze exceeds 200 days. Even when current nitrogen and phosphorus targets are met, blooms still intensify under increasingly severe extremes. Importantly, even with aggressive phosphorus abatement, strong extreme climate forcing alone can sustain frequent blooms. We thus propose an interpretable, transferable, extreme event centric framework that supports operational early warning and climate-resilient nutrient target setting in shallow eutrophic lakes.
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