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Mineralogy and Chemical Composition of Cryosols and Andosols in Antarctica

机译:南极洲冷冻酚和沙糖醇的矿物学和化学成分

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Variations in mineralogical and elemental composition of Turbic Cryosol (King George Island and James Ross Island), Skeletic Cryosol (J. Ross Island, the Trinity Peninsula), Leptic Andosols (Deception Island), and Skeletic Andosols (Deception Island) were studied. Significant differences in mineralogical composition in size fraction, vertical and horizontal position were determined by X-ray diffraction quantitative analysis. The differences were attributed to a variable degree of chemical weathering process. As a product of weathering were defined montmorillonite, chlorite, microcrystalline polymorphous silica, Fe oxides, and oxyhydroxides. Their content was increased towards the surface and in a finer fraction. Crystal thickness and size distribution of montmorillonite was measured by the Bertaut-Warren-Averbach technique and the results confirmed higher intensity of chemical weathering in Turbic Cryosols (J. Ross Island and King George Island). Feldspars and volcanic glass were the main phases found in soil samples from Deception Island. They were determined as phases of parent rock and indicated low intensity of chemical weathering. Clinoptilolite was identified in soil samples from J. Ross Island and Deception Islad and its hydrothermal origin was supposed. Soil (sample AP) from Base General Bernardo O'Higgins Riquelme had significantly higher content of phosphate minerals, which was a result of ornithogenic activities. Macro elements content was consistent with mineralogical analyses. Turbic Cryosols were rich in iron, aluminium, magnesium, and manganese ( 2%). Skeletic Cryosols contained also iron, aluminium, magnesium, manganese, calcium, and sulphur ( 1%). Leptic Andosols were rich in iron and aluminium ( 2%). Soil properties and humic substances quality were evaluted. Results of chemical and physical analyses indicated that poorly developed soils of Antarctica varied in acidity, conductivity, humus content, and texture. Humic substances content and quality were low. Mainly mechanical (physical) and chemical weathering processes played major role in the soil development accompanied by low intensity of biological activity.
机译:研究了碳切碎和乔治岛和詹姆斯罗斯岛国王的元素组成的变化,屠杀大豆(J.Ross Island,Trinity半岛),Leptic和溶溶胶(欺骗岛)和麻烦和糖醇(欺骗岛)。通过X射线衍射定量分析确定尺寸分数,垂直和水平位置的矿物学组合物的显着差异。差异归因于可变程度的化学风化过程。作为耐候产品,定义了蒙脱石,亚氯酸盐,微晶多晶硅二氧化硅,Fe氧化物和羟基氧化物。它们的内容朝向表面和更细的分数增加。通过Bertaut-Warren-Averbach技术测量Montmorillonite的晶体厚度和尺寸分布,结果证实了涡轮机冷冻溶胶(J. Ross Island和King George Island)中的化学风化更高强度。长石和火山玻璃是来自欺骗岛土壤样本中的主要阶段。它们被确定为父岩阶段,并表明了低强度的化学风化。在来自J. Ross Island和Deception islad的土壤样品中鉴定了Clinophetolite及其水热源的原因。来自基础一般Bernardo O'higgins Riquelme的土壤(样品AP)具有显着较高的磷酸矿物含量,这是织造活性的结果。宏观元素内容与矿物学分析一致。涡轮机冷冻溶胶富含铁,铝,镁和锰(& 2%)。麻醉剂冷冻溶胶也含有铁,铝,镁,锰,钙和硫(& 1%)。 Leptic andosols富含铁和铝(& 2%)。评价土壤性质和腐殖质物质。化学和物理分析结果表明,抗野凝土壤不良,酸度,电导率,腐殖质含量和质地变化。腐殖质物质含量和质量低。主要是机械(物理)和化学风化过程在土壤发展中发挥了重要作用,伴随着低强度的生物活性。

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