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Titlebook: Combating Desertification and Land Degradation; Spatial Strategies U Janet Hooke,Peter Sandercock Book 2017 Springer International Publishi

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Andrew A. du Plessis,Charles T. C. Walltural lands. In the ephemeral stream channels a wide range of variables was analyzed and presence of species found to be clearly related to substrate and hydrological zone. The results on differential conditions necessary for or favouring growth of various species are used in subsequent design of op
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Igor Burban,Yuriy Drozd,Volodymyr Gavranil detachment calculated. Differences in root architecture and in orientation of rows of plants were tested. Plant stem density, stem bending and trapping efficiency effects were also assessed experimentally and plant species growing in the Mediterranean study area were grouped according to their er
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2191-5547 ormation about processes and vegetation in the Mediterranean environment and the species effectiveness in soil erosion control.978-3-319-44449-9978-3-319-44451-2Series ISSN 2191-5547 Series E-ISSN 2191-5555
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Introduction,tion to combat desertification and land degradation by water. The research approach combined understanding of the processes of erosion and land degradation with identification of suitable and effective plants and types of vegetation that could be used to decrease the intensity of soil erosion. The p
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Conditions for Growth of Plants,rranean landscape and that could potentially be used in restoration strategies and mitigation of desertified and degraded land. Species occurring in the various land units in the study catchment in southeast Spain are identified. These units are reforested land, rainfed croplands, semi-natural and a
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Applications and Economicsting bottlenecked capacity versus distillation and adsorption with molecular 132 sieves. Although the level of energy consumption is considerably less in pervaporation than other competing processes, it is a much less important factor in the United States than is pollution abatement in the selection of pervaporation or integrated pervaporation.
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