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      Identifying areas susceptible to desertification in the Brazilian northeast

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          Abstract

          <p><strong>Abstract.</strong> Approximately 57% of the Brazilian northeast region is recognized as semi-arid land and has been undergoing intense land use processes in the last decades, which have resulted in severe degradation of its natural assets. Therefore, the objective of this study is to identify the areas that are susceptible to desertification in this region based on the 11 influencing factors of desertification (pedology, geology, geomorphology, topography data, land use and land cover change, aridity index, livestock density, rural population density, fire hot spot density, human development index, conservation units) which were simulated for two different periods: 2000 and 2010. Each indicator were assigned weights ranging from 1 to 2 (representing the best and the worst conditions), representing classes indicating low, moderate and high susceptibility to desertification. The results indicate that 94% of the Brazilian northeast region is under moderate to high susceptibility to desertification. The areas that were susceptible to soil desertification increased by approximately 4.6% (83.4 km<sup>2</sup>) from 2000 to 2010. The implementation of the methodology provides the technical basis for decision-making that involves mitigating actions and the first comprehensive national assessment within the United Nations Convention to Combat Desertification framework.</p>

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          Shuttle radar topography mission produces a wealth of data

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            Dynamics of climatic hazards in northeast Brazil

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              Patch structure, dynamics and implications for the functioning of arid ecosystems.

              Arid ecosystems present a two-phase mosaic structure of high- and low-cover patches. Vegetation patches differ among ecosystems in size and shape. However, recent studies indicate striking similarities in patch dynamics and in mechanisms explaining their origin and maintenance. Two major types of system, banded and spotted vegetation, which are characterized by patch shape, both originate from common mechanisms, although each is dominated by a different driver. Banded vegetation occurs when water is the dominant driver of the redistribution of materials and propagules, whereas spotted vegetation results when wind is the major redistribution driver. Model analysis indicates that patchy vegetation structure enhances primary production.
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                Author and article information

                Journal
                Solid Earth
                Solid Earth
                Copernicus GmbH
                1869-9529
                2015
                March 18 2015
                : 6
                : 1
                : 347-360
                Article
                10.5194/se-6-347-2015
                3cde25f4-1ffe-489e-ad82-b87966752d5d
                © 2015

                https://creativecommons.org/licenses/by/3.0/

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