技术景观中的土壤形成:趋势、结果和当前分类中的代表性(综述)

D. Sokolov, V. Androkhanov, E. Abakumov
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引用次数: 3

摘要

数百年来,人类一直是土壤形成的一个因素。随着近年来广大地区工业的发展,在技术和后人类活动条件下土壤的形成需要更多的关注。本文综述了人类改造或人造景观(技术景观)土壤的相关文献,其中土壤的形成始于新的技术基质。这种土壤可能出现在不同的生物气候条件下。我们关注的是控制土壤形态和随后这些土壤转化的过程。通常,技术景观的土壤具有高体积密度值和存在密集接触的特点。它们的性质主要受有机质积累(腐殖质、凋落物和泥炭)的影响。本文还介绍了技术景观复垦的方法、主要阶段和部分复垦方案。人们注意到,填海活动的效率取决于现有资源和及时的决策。我们评估了土壤复垦方法的效率,并提出了技术景观调查技术。简要讨论了国内外土壤分类系统中技术景观土壤分类的主要方法,并提出了不同系统中土壤名称的近似相关性。所有考虑的分类都提供了评估土壤性质和技术景观中土壤形成特征的机会。然而,在大多数研究中,土壤诊断仅局限于顶级分类群。全文包括图3,表2,参考文献140篇。
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Soil formation in technogenic landscapes: trends, results, and representation in the current classifications (Review)
For hundreds of years, humans have been a soil formation factor. With the recent industrial development of vast territories, the formation of soils in technogenic and postanthropogenic conditions requires more attention. This study reviews the literature on the soils of human-transformed or human-made landscapes (technogenic landscapes), in which soil formation starts on a new technogenic substrate. Such soils may occur in different bioclimatic conditions. We focused on processes that govern soil morphology and the subsequent transformation of these soils. Often, the soils of technogenic landscapes are characterized by high bulk density values and by the presence of dense contact. Their properties are affected mainly by organic matter accumulation (humus, litter, and peat). The paper also covers approaches to the reclamation of technogenic landscapes, the main stages, and partly the reclamation options. It is noted that the efficiency of reclamation activities depends on the available resources and timely decision-making. We assessed the efficiency of soil reclamation methods and suggested technogenic landscape survey techniques. The major approaches to soil classification in technogenic landscapes in national and international soil classification systems are briefly discussed, and an approximate correlation of soil names used in different systems is suggested. All considered classifications provide the opportunity to assess the soil properties and specifics of soil formation in technogenic landscapes. However, in most studies, the soil diagnostics are limited to top-order taxa only. The paper contains 3 Figures, 2 Tables, and 140 References.
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