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Long-term MODIS observations of cyanobacterial dynamics in Lake Taihu: Responses to nutrient enrichment and meteorological factors

机译:太湖蓝藻动力学的长期MODIS观测:对养分富集和气象因素的响应

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摘要

We developed and validated an empirical model for estimating chlorophyll a concentrations (Chla) in Lake Taihu to generate a long-term Chla and algal bloom area time series from MODIS-Aqua observations for 2003 to 2013. Then, based on the long-term time series data, we quantified the responses of cyanobacterial dynamics to nutrient enrichment and climatic conditions. Chla showed substantial spatial and temporal variability. In addition, the annual mean cyanobacterial surface bloom area exhibited an increasing trend across the entire lake from 2003 to 2013, with the exception of 2006 and 2007. High air temperature and phosphorus levels in the spring can prompt cyanobacterial growth, and low wind speeds and low atmospheric pressure levels favor cyanobacterial surface bloom formation. The sensitivity of cyanobacterial dynamics to climatic conditions was found to vary by region. Our results indicate that temperature is the most important factor controlling Chla inter-annual variability followed by phosphorus and that air pressure is the most important factor controlling cyanobacterial surface bloom formation followed by wind speeds in Lake Taihu.
机译:我们开发并验证了估算太湖中叶绿素a浓度(Chla)的经验模型,该模型可根据MODIS-Aqua观测结果生成2003年至2013年的长期Chla和藻类开花区域时间序列。然后,基于长期时间系列数据,我们量化了蓝细菌动力学对营养富集和气候条件的响应。 Chla显示出很大的时空变异性。此外,2003年至2013年,除2006年和2007年以外,整个湖面的年均蓝藻表面开花面积均呈增长趋势。春季的高气温和磷水平可促使蓝藻生长,低风速和低气压水平有利于蓝细菌表面水华的形成。发现蓝细菌动力学对气候条件的敏感性随区域而变化。我们的结果表明,温度是控制Chla年际变化的最重要因素,其次是磷,而气压是控制太湖蓝藻表面水华形成和风速的最重要因素。

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