Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068, Koblenz, Germany.
Sci Rep. 2024 Jul 15;14(1):16298. doi: 10.1038/s41598-024-66586-w.
Harmful algae blooms are a rare phenomenon in rivers but seem to increase with climate change and river regulation. To understand the controlling factors of cyanobacteria blooms that occurred between 2017 and 2020 over long stretches (> 250 km) of the regulated Moselle River in Western Europe, we measured physico-chemical and biological variables and compared those with a long-term dataset (1997-2016). Cyanobacteria (Microcystis) dominated the phytoplankton community in the late summers of 2017-2020 (cyano-period) with up to 110 µg Chlorophyll-a/L, but had not been observed in the river in the previous 20 years. From June to September, the average discharge in the Moselle was reduced to 69-76% and water temperature was 0.9-1.8 °C higher compared to the reference period. Nitrogen (N), phosphorus (P) and silica (Si) declined since 1997, albeit total nutrient concentrations remained above limiting conditions in the study period. Cyanobacterial blooms correlated best with low discharge, high water temperature and low nitrate. We conclude that the recent cyanobacteria blooms have been caused by dry and warm weather resulting in low flow conditions and warm water temperature in the regulated Moselle. Under current climate projections, the Moselle may serve as an example for the future of regulated temperate rivers.
有害藻类水华在河流中较为罕见,但似乎随着气候变化和河流治理而有所增加。为了了解 2017 年至 2020 年期间在西欧受调控的摩泽尔河(Moselle River)长段(>250 公里)发生的蓝藻水华的控制因素,我们测量了理化和生物变量,并将这些变量与长期数据集(1997 年至 2016 年)进行了比较。蓝藻(微囊藻)在 2017 年至 2020 年的夏末主导了浮游植物群落(蓝藻期),叶绿素 a 浓度高达 110μg/L,但在之前的 20 年中,该河流中并未出现过蓝藻。6 月至 9 月,摩泽尔河的平均流量减少到 69-76%,与参考期相比,水温升高了 0.9-1.8°C。自 1997 年以来,氮(N)、磷(P)和硅(Si)的含量有所下降,尽管在研究期间,总养分浓度仍高于限制条件。蓝藻水华与低流量、高水温、低硝酸盐相关性最佳。我们得出结论,最近的蓝藻水华是由干燥和温暖的天气导致低流量条件和温暖的水温引起的,这种情况在受调控的摩泽尔河上出现。根据当前的气候预测,摩泽尔河可能成为未来受调控的温带河流的一个范例。