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Soils and cultural layers of ancient cities in the south of European Russia

机译:欧洲俄罗斯南部古代城市的土壤和文化层

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Antique cities in the south of European Russia are characterized by a considerable thickness of their cultural layers (urbosediments) accumulated as construction debris and household wastes. Under the impact of pedogenesis and weathering in dry climate of the steppe zone, these sediments have acquired the features of loesslike low-humus calcareous and alkaline deposits. They are also enriched in many elements (P, Zn, Ca, Cu, Pb, As) related to the diverse anthropogenic activities. The soils developed from such urbosediments can be classified as urbanozems (Urban Technosols), whereas chernozems close to their zonal analogues have developed in the surface layer of sediments covering long-abandoned ancient cities. Similar characteristics have been found for the soils of the medieval and more recent cities in the studied region. Maximum concentrations of the pollutants are locally found in the antique and medieval urbosediments enriched in dyes, handicrafts from nonferrous metals, and other artifacts. Surface soils of ancient cities inherit the properties and composition of the cultural layer. Even in chernozems that developed under steppe vegetation on the surface of the abandoned antique cities of Phanagoria and Tanais for about 1000-1500 years, the concentrations of copper, zinc, and calcium carbonates remain high. Extremely high phosphorus concentrations in these soils should be noted. This is related to the stability of calcium phosphates from animal bones that are abundant in the cultural layer acting as parent material for surface soils.
机译:俄罗斯欧洲南部的古董城市的特点是其文化层(城市建筑)的厚度相当大,这些建筑层作为建筑垃圾和生活垃圾而积累。在草原区干旱气候下的成岩作用和风化作用的影响下,这些沉积物具有黄土样低腐殖质钙质和碱性沉积物的特征。它们还富含与多种人为活动相关的许多元素(P,Zn,Ca,Cu,Pb,As)。从这些城市沉积物发育而来的土壤可被归类为Urbanozems(城市技术溶胶),而与它们的带状类似物接近的黑钙石在沉积物表层中已形成,覆盖了长期废弃的古代城市。在所研究地区的中世纪和最近城市的土壤中也发现了类似的特征。污染物的最大浓度在富含染料,有色金属手工艺品和其他人工制品的古董和中世纪城市局部地区找到。古代城市的表层土壤继承了文化层的特性和组成。甚至在废弃植被Phanagoria和Tanais的古城表面上草原植被下生长的黑钙石中,大约1000-1500年的时间里,铜,锌和碳酸钙的浓度仍然很高。应注意这些土壤中的磷含量极高。这与来自动物骨骼的磷酸钙的稳定性有关,后者在作为地表土壤母体的培养层中非常丰富。

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