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Late-twentieth-century warming in Lake Tanganyika unprecedented since AD 500

机译:自公元500年以来,坦尼喀湖的二十世纪末变暖史无前例

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Instrumental observations suggest that Lake Tanganyika, the largest rift lake in East Africa, has become warmer, increasingly stratified and less productive over the past 90 years (refs1,2). These trends have been attributed to anthropogenic climate change. However, it remains unclear whether the decrease in productivity is linked to the temperature rise, and whether the twentieth-century trends are anomalous within the context of longer-term variability. Here, we use the TEX 86 temperature proxy, the weight per cent of biogenic silica and charcoal abundance from Lake Tanganyika sediment cores to reconstruct lake-surface temperature, productivity and regional wildfire frequency, respectively, for the past 1,500 years. We detect a negative correlation between lake-surface temperature and primary productivity, and our estimates of fire frequency, and hence humidity, preclude decreased nutrient input through runoff as a cause for observed periods of low productivity. We suggest that, throughout the past 1,500 years, rising lake-surface temperatures increased the stratification of the lake water column, preventing nutrient recharge from below and limiting primary productivity. Our records indicate that changes in the temperature of Lake Tanganyika in the past few decades exceed previous natural variability. We conclude that these unprecedented temperatures and a corresponding decrease in productivity can be attributed to anthropogenic global warming, with potentially important implications for the Lake Tanganyika fishery.
机译:仪器观测表明,东非最大的裂谷湖坦any尼喀湖在过去90年里变得更温暖,越来越分层并且生产力更低(参考文献1,2)。这些趋势归因于人为气候变化。但是,尚不清楚生产率的下降是否与温度上升有关,以及在长期可变性的背景下,二十世纪的趋势是否异常。在这里,我们使用TEX 86温度代理,坦Tang尼喀湖沉积岩心中生物硅的重量百分比和木炭丰度,分别重构了过去1500年的湖面温度,生产力和区域野火频率。我们检测到湖面温度与初级生产力之间存在负相关关系,并且我们对火频和湿度的估计排除了由于径流而造成的养分输入减少,这是观察到的低生产力时期的原因。我们建议,在过去的1500年中,不断上升的湖面温度增加了湖水柱的分层,阻止了养分的补充并限制了初级生产力。我们的记录表明,过去几十年来坦Tang尼喀湖的温度变化超过了以前的自然变化。我们得出的结论是,这些空前的温度和相应的生产力下降可归因于人为的全球变暖,对坦any尼喀湖渔业具有潜在的重要影响。

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