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AN EXPLORATORY STUDY OF THE TERRESTRIAL BIOGEOCHEMICAL SILICON CYCLE AT A FORESTED WATERSHED IN NORTHERN VERMONT

机译:佛蒙特州北部一个森林流域的陆地生物地球化学硅循环的探索研究

摘要

The importance of the global silicon cycle is becoming increasingly recognized because of its role in the consumption of atmospheric CO2. However, the terrestrial component of the silicon cycle is insufficiently understood, especially in temperate regions, since the majority of past research has ignored the effects of vegetation on the cycle. This study examines the terrestrial biogeochemical silicon cycle at a 40.5-ha sub-basin of the Sleepers River Research Watershed in Danville, VT. In particular, we examine the role of plants in the silicon cycle by analyzing silicon and germanium in plant leaves and cores, stream water, groundwater, soil water, bedrock, and soil obtained throughout 2005 from the watershed. Our results show that the amount of Si cycled by the vegetation is roughly the same as the amount weathered from bedrock and soil minerals. We also predict significant storage of Si in phytoliths in both the soil and the living biomass, slowing the rate of Si export from the watershed. Additionally, there appears to be a seasonal shift in the source of Si to the stream. We suggest this is because phytolith dissolution contributes more significantly in the early growing season than late in the season, when stream-flow is dominated by Si derived from mineral weathering.
机译:由于全球硅循环在大气CO2消耗中的作用,其重要性日益得到认可。然而,由于过去的大多数研究都忽略了植被对周期的影响,因此对硅周期的地面成分的了解不足,尤其是在温带地区。这项研究检查了位于佛蒙特州丹维尔市Sleepers River研究分水岭的40.5公顷子流域的陆地生物地球化学硅循环。尤其是,我们通过分析植物和植物中的硅和锗,溪流水,地下水,土壤水,基岩和2005年从流域获得的土壤中的硅和锗,来研究植物在硅循环中的作用。我们的结果表明,植被所循环的硅含量与基岩和土壤矿物风化的硅含量大致相同。我们还预测土壤和生物量中的硅藻土中硅的大量储存,将减缓流域中硅的出口速度。另外,硅源向水流的变化似乎是季节性的。我们认为这是因为在植物生长早期,植物的溶解作用要比生长后期的贡献更大,因为当溪流的流动以矿物风化产生的硅为主时。

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  • 作者

    Garvin Christopher J.;

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  • 年度 2006
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