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Soil water repellency: its causes, characteristics and hydro-geomorphological significance [Review]

机译:土壤憎水性:成因,特征及水文地貌意义[综述]

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Water repellency (hydrophobicity) of soils is a property with major repercussions for plant growth, surface and subsurface hydrology, and for soil erosion. Important advances have been made since the late 1980s in identifying the range of environments affected by water repellency, its characteristics and its hydro-geomorphological impacts. This review summarises earlier work, but focusses particularly on these recent advances and identifies remaining research gaps. The associations of water repellency with (a) soils other than coarse-textured ones, (b) an expanding list of plant species, and (c) a widening range of climates other than seasonally dry types have been recurrent themes emphasised in recent literature. Nevertheless, knowledge about the extent of water repellency amongst world soils is still comparatively sparse. Its origin by the accumulation of long-chained organic compounds on or between soil particles is now widely accepted, but understanding of their exact chemical composition and means of attachment to particle surfaces remains incomplete. The transient nature of water repellency has been found to be mainly associated with fluctuations in soil moisture, but the precise processes and required conditions for the changes from hydrophobic to hydrophilic and vice versa are so far only poorly understood. Significant advances relating to the hydro-geomorphological impacts of hydrophobic layers have been made since the late 1980s in identifying and separating the various effects of such layers on surface and subsurface water flow. It has become evident that these effects in turn are influenced by variables such as the frequency and effectiveness of flow pathways through hydrophobic layers as well as their position and transitory behaviour. Recent literature has continued to highlight the role of water repellency in promoting soil erosion and it is now recognised that it can promote rainsplash detachment and soil loss not only by water, but also by wind. Major research gaps, however, remain in (a) isolating the erosional impact of water repellency from other factors, and (b) identifying the exact role of, and the interactions between the different variables controlling development and effectiveness of flow pathways through hydrophobic soil. Improved understanding of the effects of soil water repellency will enable its overall role in surface and subsurface hydrological and erosional processes to become more clearly defined. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 160]
机译:土壤的疏水性(疏水性)是一种对植物生长,地表和地下水文学以及土壤侵蚀具有重大影响的性质。自1980年代末以来,在确定受拒水影响的环境范围,其特性及其水文地貌影响方面取得了重要进展。这篇综述总结了早期的工作,但重点是这些最新的进展,并指出了仍存在的研究空白。拒斥性与(a)除粗糙结构土壤以外的土壤,(b)植物种类的增加以及(c)季节性干燥类型以外的广泛气候的关联是最近文献中强调的主题。然而,关于世界土壤之间的憎水程度的知识仍然相对较少。它的起源是土壤中或土壤颗粒之间长链有机化合物的积累,现在已被广泛接受,但对它们的确切化学组成和与颗粒表面的附着方式的了解仍不完全。已经发现疏水性的瞬时性质主要与土壤水分的波动有关,但是迄今为止,人们对疏水性到亲水性以及反之亦然的精确过程和所需条件的了解还很少。自1980年代末以来,在识别和分离此类层对地表水和地下水流的各种影响方面,已经取得了与疏水层的水文地质形态影响有关的重大进展。显而易见的是,这些影响又受到变量的影响,例如通过疏水层的流路的频率和有效性,以及它们的位置和短暂行为。最近的文献继续强调疏水性在促进水土流失中的作用,并且现在人们认识到它不仅可以通过水而且可以通过风来促进雨滴脱落和土壤流失。然而,主要的研究空白仍然存在:(a)将疏水性的侵蚀影响与其他因素隔离开来;(b)确定疏水性土壤的确切作用以及不同变量之间的相互作用,这些变量控制着水流道的发育和有效性。更好地了解土壤疏水性的作用将使其在地表和地下水文和侵蚀过程中的总体作用变得更加清晰。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:160]

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