SOIL EROSION, CONSERVATION, AND ECO-ENVIRONMENT CHANGES IN THE LOESS PLATEAU OF CHINA

ABSTRACT As one of the best‐known areas in the world, the Loess Plateau, has long been suffering from serious soil erosion. The present paper reviewed the historical variation of climate, vegetation cover, and environment changes in order to understand the causes of severe soil erosion. Documentary...

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Published inLand degradation & development Vol. 24; no. 5; pp. 499 - 510
Main Authors Zhao, G., Mu, X., Wen, Z., Wang, F., Gao, P.
Format Journal Article
LanguageEnglish
Published Chichester Blackwell Publishing Ltd 01.09.2013
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Summary:ABSTRACT As one of the best‐known areas in the world, the Loess Plateau, has long been suffering from serious soil erosion. The present paper reviewed the historical variation of climate, vegetation cover, and environment changes in order to understand the causes of severe soil erosion. Documentary evidence indicated that climate changes and vegetation cover were the dominant natural factors influencing the soil erosion rates during the Holocene. Intensive human activities consisting of warfare, population growth, deforestation, and soil and water conservation measures were responsible for the changes of soil erosion during the anthropogenic period. Spatial and temporal changes of specific sediment yields presented significant decrease within the last several decades, which resulted from decreasing rainfall, large scale soil and water conservation measures, agricultural irrigation, and reservoir construction. Different phase of soil conservation measures demonstrated the development of policies and techniques on soil erosion control. Effective strategies of soil and water conservation, consisting of terracing, afforestation, natural rehabilitation, and check‐dams construction, were carried out on the Loess Plateau during the past six decades. The progress of soil conservation measures confirmed that the check‐dams systems might be suitable for Loess hilly Plateau, and natural vegetation rehabilitation is the best way for soil erosion control and should be implemented in other regions with emphasis of improving the quality of conservation measures based on natural rehabilitation. Copyright © 2013 John Wiley & Sons, Ltd.
Bibliography:istex:B6E61F83A83E99EA94052C143CA40EF8070918B3
ArticleID:LDR2246
Key Research Program of the Chinese Academy of Sciences - No. KZZD-EW-04
National Natural Sciences Foundation of China - No. Nos.: 41201266, 41271295
Key Project of the National Science and Technology Ministry - No. 2012BAB02B05
ark:/67375/WNG-JQL9M40W-C
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 14
ISSN:1085-3278
1099-145X
DOI:10.1002/ldr.2246