。kamianets-podilskyi国家历史保护区博物馆的形态特征

A. Kyrylchuk, R. Malik, S. Doroshkevich
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引用次数: 0

摘要

本文介绍了研究区域重点区域土壤剖面的微形态描述。对所选土壤样品进行了微形态分析和合成。本文首次通过对其微形态结构的评价,研究了它们的发育过程和遗传特征。Kamianets-Podilskyi国家历史保护博物馆belbelative景观综合体的Urborendzins是受到长期人为影响的具有复杂系统发育的带内生物成岩多成因土壤。确定它们的成因是很重要的,这伴随着一些障碍,这些障碍是由土壤剖面的显著幅度、形态特征、物理和化学特征以及这种土壤中埋藏层的存在造成的。为了解决城市土壤年龄和个体发育阶段的问题,以及比较和地理的问题,我们使用了一种复杂的古土壤学方法,积极应用微形态分析,根据微观固相形成的可持续特征诊断基本土壤过程,从而建立土壤的过程和遗传特征。微形态结构评价可以在微观水平上将土壤视为一个系统,并在所有形态水平上观察土壤形成过程的相互作用和比例的自然流动-从微观小体积的土壤质量到一般的土壤剖面。因此,微形态分析是一种独特的自然地理学方法,与其他自然地理学方法相比具有显著的优势。研究对象的Urborendzins具有复杂的成因问题,利用微形态分析和微形态合成可以解决这些问题。本文首次对这些土壤的微形态结构进行了评价,对其微形态特征和成因进行了初步研究。我们的微观形态分析使我们能够建立所研究土壤的过程和诊断特征,并表明与背景土壤相比,“日塔”的沉积物碳化程度更高。在冲刷条件下,石灰岩沉积物的碎片在土壤形成过程中不断提供新的风化碳酸化物质,这促进了土壤溶液中钙离子的饱和,从而形成了更稳定的土壤微团聚体,减少了粉质颗粒沿剖面向下的流动性,通过微形态学研究以高阶微团聚体的存在形式进行了固定。将背景土壤与“日塔”的沉积物进行比较,可以说,与从碳酸盐中浸出的城市土壤相比,典型的农业土壤土壤的特点是实际上没有微颗粒,腐殖质物质主要处于分散状态,有机粘土物质向下移动的迹象可以更清楚地追溯到剖面。这表明本底胶凝素是在活跃的生物成因和积累过程、碳酸盐浸出和微泥化作用的条件下形成的。关键词:微形态分析;合成;土壤;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
. MORPHOLOGICAL CHARACTERISTICS SOILS OF THE BELIGATIVE STRUCTURES OF THE KAMIANETS-PODILSKYI KAMIANETS-PODILSKYI STATE HISTORICAL RESERVE MUSEUM
The article presents micromorphological descriptions of soil profiles of key areas of the research territory. The results of micromorphological analysis and synthesis of selected soil samples are illustrated. For the first time the process-and-genetic features of urborendzins of beligerative structures were studied through the evaluation of their micromorphological structure. Urborendzins of the beligerative landscape complex of the Kamianets-Podilskyi State Historical Preserve Museum are intrazonal biolithogenic polygenetic soils with complex phylogeny exposed to a long-term anthropogenic influence. It is important to establish their genesis, which is accompanied by a number of obstacles caused by the significant amplitude of the soil profile, morphological features, physical-and-chemical features and the presence of buried horizons in such soils. To solve the problem of age and ontogenesis staging of urborendzins, along with comparative-and-geographical, we use a complex paleopedological method with active application of micromorphological analysis, which allows to establish process-and-genetic features of soils by diagnosing elementary soil processes according to sustainable features at the micro level of solid phase formation. Micromorphological structure evaluation makes it possible to consider soil as a system at the microscopic level and observe the natural flow of soil-forming processes in their interaction and ratio at all morphological levels - from microscopically small volumes of soil mass to soil profile in general. Consequently, micromorphological analysis is a unique one and possesses significant advantages over other methods of physical geography. Urborendzins of the object under study have a complex problematic genesis and the use of micromorphological analysis and micromorphological synthesis is acceptable to solve these problems. The evaluation of the micromorphological structure of these soils was carried out for the first time, their micromorphological features were not previously determined as well as the genesis in general. Our micromorphological analysis allowed us to establish the process-and-diagnostic features of the studied soils and shows that in comparison with the background soil, the deposits of the «Day Tower» are more carbonated. Under the conditions of the washing regime, fragments of limestone deposits provide constant involvement of new weathered carbonated material in soil formation processes, which promotes saturation of soil solutions with calcium cations and, accordingly, formation of more stable microaggregation of soil mass and reduction of mobility of silty particles downwards the profile, fixed through by micromorphological researches in the form of the presence of high-order microaggregates. Comparing the background soil with the sediments of the «Day Tower», it can be stated that the agrorendzin typical, in contrast to urborendzin, leached from carbonates, is characterized by the practical absence of microorshteins, humic substances are mainly in a dispersed state and signs of movement of organo-clay substances downwards the profile can be traced much more clearly. This indicates that the background agrorendzin is formed under conditions of active biogenic and accumulative processes, carbonate leaching and illimerization. Key words: micromorphological analysis, synthesis, soil, beligerative complex.
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