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Climate change enhances the mobilisation of naturally occurring metals in high altitude environments

机译:气候变化促进了高海拔环境中天然金属的动员

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Manmade climate change has expressed a plethora of complex effects on Earth's biogeochemical compartments. Climate change may also affect the mobilisation of natural metal sources, with potential ecological consequences beyond mountains' geographical limits; however, this question has remained largely unexplored. We investigated this by analysing a number of key climatic factors in relationship with trace metal accumulation in the sediment core of a Pyrenean lake. The sediment metal contents showed increasing accumulation trend over time, and their levels varied in step with recent climate change. The findings further revealed that a rise in the elevation of freezing level, a general increase in the frequency of drier periods, changes in the frequency of winter freezing days and a reducing snow cover since the early 1980s, together are responsible for the observed variability and augmented accumulation of trace metals. Our results provide clear evidence of increased mobilisation of natural metal sources - an overlooked effect of climate change on the environment With further alterations in climate equilibrium predicted over the ensuing decades, it is likely that mountain catchments in metamorphic areas may become significant sources of trace metals, with potentially harmful consequences for the wider environment.
机译:人为的气候变化已对地球的生物地球化学区隔产生了许多复杂的影响。气候变化也可能影响天然金属资源的动员,其潜在的生态后果超出山脉的地理范围;但是,这个问题在很大程度上尚未得到探讨。我们通过分析与比利牛斯山脉湖泊沉积物中的痕量金属积累有关的许多关键气候因素,对此进行了调查。沉积物中金属含量随时间呈增加趋势,其含量随近期气候变化而变化。研究结果进一步表明,自1980年代初以来,冰冻水平的升高,干燥期频率的普遍增加,冬季冰冻天数的变化以及积雪减少,共同导致了观测到的变化和微量金属的积累增加。我们的结果提供了增加的天然金属来源动员的明确证据-气候变化对环境的影响被忽视随着在随后几十年中气候平衡的进一步变化的预测,变质地区的山区集水区可能会成为痕量金属的重要来源,对更广泛的环境具有潜在的有害后果。

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