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Microclimate affects soil chemical and mineralogical properties of cold alpine soils of the Altai Mountains (Russia)

机译:小气候影响阿尔泰山脉(俄罗斯)的高山冷土壤的土壤化学和矿物学性质

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摘要

Purpose: The present work focuses on cold alpine soils of the Altai Mountains (Siberia, Russia). Permafrost is widespread and often occurs at a depth of about 100 cm. The area is characterised by extremely cold winters and cool summers: the aim was consequently to find out whether weathering could be more intense on thermally less unfavoured conditions or whether the abundance of water could be a more important factor.\udMaterials and methods: We investigated 10 soils in a very small area close to a local glacier tongue. Five of the investigated soils were south-facing and the other five north-facing. The soils have the same parent material (mica-rich till), altitude, topography and soil age. The vegetation is alpine grassland that is partially intersected with some juniper and mosses. Soil chemical properties such as organic C, N, soil organic matter quality (using DRIFT), pH value, (oxy)hydroxides, total elemental contents (XRF) and soil micromorphology and mineralogy (using diagnostic treatments and XRD) were determined. The age constraint of the site was given by geomorphic studies together with 14C dating of a nearby peat bog and the stable organic matter fraction of the soils.\udResults and discussion: The soils have a Holocene age. The results showed astonishingly clearly—similarly to the European Alps—that the north-facing soils have a higher weathering state. This is expressed by lower pH values, higher oxalate and dithionite extractable Fe, Al, Mn and Si contents, higher C and N concentrations and stocks when compared to the south-facing sites. No statistically significant differences with respect to weathering indexes could be detected.\udThe geochemical evolution of the soils seems to be enhanced at north-facing sites, even though very severe climatic conditions prevail. Furthermore, biodegradation seems to be less pronounced on north-facing compared to south-facing sites as poorly degraded organic matter is accumulated. This gives rise to more organic ligands that promote metal binding and their subsequent eluviation along the soil profile.\udConclusions: We consequently must assume that weathering is not limited by low temperatures in the active layer but is rather controlled by soil moisture that seems to be higher during the warmer period in the north-facing soils.
机译:目的:目前的工作集中在阿尔泰山(俄罗斯西伯利亚)的高山冷土上。多年冻土很普遍,通常发生在约100厘米的深度。该地区的特点是冬季极为寒冷,夏季却凉爽:因此,目的是找出在较热不利的条件下天气是否会更加强烈,或者水的丰富程度是否可能是一个更重要的因素。\ ud材料和方法:我们进行了调查极小面积的10种土壤,靠近当地的冰川舌头。被调查的土壤中有五种是朝南的,其他五种是朝北的。土壤具有相同的母体材料(富含云母的耕作),海拔,地形和土壤年龄。植被是高山草原,部分与杜松和苔藓相交。确定了土壤化学性质,例如有机碳,氮,土壤有机质(使用DRIFT),pH值,氢氧化物,总元素含量(XRF)以及土壤微观形态和矿物学(使用诊断处理和XRD)。通过地貌研究,附近泥炭沼泽的14C测年以及土壤中稳定的有机物含量,给出了该地点的年龄限制。\ ud结果与讨论:土壤具有全新世时代。与欧洲阿尔卑斯山类似,结果令人惊讶地清楚地表明,朝北的土壤具有更高的风化状态。与朝南的地点相比,这表现为较低的pH值,较高的草酸盐和连二亚硫酸盐可提取的Fe,Al,Mn和Si含量,较高的C和N浓度以及储量。在风化指数方面,没有发现统计学上的显着差异。\ ud即使在非常恶劣的气候条件下,朝北的土壤的地球化学演化似乎也得到了增强。此外,与朝南的地点相比,朝北的地点的生物降解似乎不那么明显,因为积累的降解有机物很少。这产生了更多的有机配体,这些配体促进了金属的结合以及随后沿土壤剖面的淋溶。\ ud结论:因此,我们必须假定风化不受活性层中低温的限制,而是受似乎是土壤水分的控制在较暖的时期,朝北的土壤更高。

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