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首页> 外文期刊>Climatic Change >14,000 years of climate-induced changes in carbon resources sustaining benthic consumers in a small boreal lake (Lake Tollari, Estonia)
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14,000 years of climate-induced changes in carbon resources sustaining benthic consumers in a small boreal lake (Lake Tollari, Estonia)

机译:14,000年气候诱导的碳资源变化碳资源维持底座消费者在一个小型博尔湖(塔拉里湖)

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In order to forecast the influence of future climate change on lake ecosystems, the paleolimnological approaches are needed to understand the impact of past climate variability. We reconstruct temporal changes in carbon resources sustaining chironomid biomass over the last 14,000 years, by means of carbon stable isotope analysis of subfossil chironomids (delta C-13(HC)), with the aim of identifying the response of carbon processing in the benthic food web to climate change. We find a negative linear correlation between reconstructed summer mean air temperature and delta C-13(HC) values, revealing that (i) the contribution of allochthonous organic carbon to the chironomid biomass is high during the coldest and low-productive period, (ii) the aquatic organic matter is the main carbon source during intermediate climate conditions, and (iii) a significant part of the chironomid biomass is sustained by methane-derived carbon during the Holocene Thermal Maximum and the Bolling-Allerod. This study confirms that climate change may significantly affect the recycling process of organic carbon in the benthic food web of small lakes. However, deforestation and agricultural practices within the catchment area induced important organic matter inputs into the lake sediments, which seem to disrupt the observed relationship between climate variability and carbon processing in the benthic food web. In this context, complementary studies are needed to better understand the combined effects of the ongoing global warming and human activities on the lake carbon cycling.
机译:为了预测未来气候变化对湖泊生态系统的影响,需要古代治理方法来了解过去气候变异性的影响。通过碳稳定同位素分析(Delta C-13(HC)),通过碳稳定同位素分析来重建碳资源维持型挥发性碳化物体生物量的时间变化(Delta C-13(HC)),目的是鉴定碳加工​​在底栖食品中的反应网上到气候变化。我们在重建的夏季平均空气温度和δC-13(HC)值之间发现了负线性相关性,揭示(i)在最寒冷和低生产期间,表发碳对甲型仑的生物量的贡献高(II) )水生物有机物是中间气候条件下的主要碳源,(iii)在全茂热最大值和蒴果 - 填充剂期间,甲烷衍生的碳的甲烷衍生碳的大部分是甲烷衍生的碳的主要部分。本研究证实,气候变化可能会显着影响小湖泊的底栖食品网中有机碳的回收过程。然而,集水区内的森林砍伐和农业实践诱导了重要的有机物投入进入湖泊沉积物,这似乎破坏了底栖食品网中气候变异性和碳加工之间的观察到的关系。在这种情况下,需要补充研究以更好地了解持续的全球变暖和人类活动对碳循环的综合影响。

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