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首页> 外文期刊>Journal of Paleolimnology >Sediment dynamics in an upland temperate catchment: changing sediment sources, rates and deposition
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Sediment dynamics in an upland temperate catchment: changing sediment sources, rates and deposition

机译:高地温带流域的沉积物动力学:改变沉积物来源,速率和沉积

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摘要

We examine sediment dynamics in an upland, temperate lake system, Lake Bassenthwaite (NW England), in the context of changing climate and land use, using magnetic and physical core properties. Dating and analysis of the sedimentary records of nine recovered cores identify spatially variable sedimentation rates across the deep lake basin. Mineral magnetic techniques, supported by independent geochemical analyses, identify significant variations both in sediment source and flux over the last ~2100 years. Between ~100 years BC and ~1700 AD, sediment fluxes to the lake were low and dominated by material sourced from within the River Derwent sub-catchment (providing 80% of the hydraulic load at the present day). Post-1700 AD, the lake sediments became dominantly sourced from Newlands Beck (presently providing ~10% of the lake’s hydraulic load). Three successive, major pulses of erosion and increased sediment flux appear linked to specific activities within the catchment, specifically: mining activities and associated deforestation in the mid-late nineteenth century; agricultural intensification in the mid-twentieth century and, within the last decade, the additional possible impact of climate change. These results are important for all upland areas as modifications in climate become progressively superimposed upon the effects of previous and/or ongoing anthropogenic catchment disturbance.
机译:我们利用磁性和物理核心特性,在气候变化和土地利用变化的背景下,检验了高地,温带湖泊系统Bassenthwaite(英格兰西北部)中的沉积物动力学。通过对9个已回收岩心的沉积记录进行定年和分析,可以确定整个深湖流域的沉积速率在空间上存在差异。矿物磁技术在独立的地球化学分析的支持下,发现了过去〜2100年间沉积物来源和通量的重大变化。在公元前约100年到公元约1700年之间,流向湖泊的沉积物通量很低,并且主要由Derwent河子集水区内部提供的物质(目前提供了80%的水力负荷)。公元1700年以后,湖泊沉积物主要来自Newlands Beck(目前提供了约10%的水力负荷)。连续三个主要的侵蚀脉动和沉积物通量的增加与流域内的特定活动有关,特别是:十九世纪中后期的采矿活动和相关的森林砍伐;二十世纪中叶的农业集约化以及过去十年中气候变化可能带来的其他影响。这些结果对于所有高地地区都很重要,因为气候变化逐渐叠加在先前和/或持续的人为集水区干扰的影响上。

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