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Comparative Study on Rain Splash Erosion of Representative Soils in China 被引量:6

Comparative Study on Rain Splash Erosion of Representative Soils in China
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摘要 As the first event of soil erosion, rain splash erosion supplies materials for subsequent transportation and en-trainment. The Loess Plateau, the southern hilly region and the Northeast China are subject to serious soil and water loss; however, the characteristics of rain splash erosion in those regions are still unclear. The objectives of the study are to ana-lyze the characteristics of splash erosion on loess soil, red soil, purple soil and black soil, and to discuss the relationship between splash erosion and soil properties. Soil samples spatially distributed in the abovementioned regions were col-lected and underwent simulated rainfalls at a high intensity of 1.2mm/min, lasting for 5, 10, 15, and 20min, respectively. Rain splash and soil crust development were analyzed. It shows that black soil sample from Heilongjiang Province corre-sponds to the minimum splash erosion amount because it has high aggregate content, aggregate stability and organic mat-ter content. Loess soil sample from Inner Mongolia corresponds to the maximum splash erosion amount because it has high content of sand particles. Loess soil sample from Shanxi Province has relatively lower splash erosion amount be-cause it has high silt particle content and low aggregate stability easily to be disrupted under rainfalls with high intensity. Although aggregate contents of red soil and purple soil samples from Hubei and Guangdong provinces are high, the sta-bility is weak and prone to be disrupted, so the splash erosion amount is medium. Splash rate which fluctuates over time is observed because soil crust development follows a cycling processes of formation and disruption. In addition, there are two locations of soil crust development, one appears at the surface, and the other occurs at the subsurface. As the first event of soil erosion, rain splash erosion supplies materials for subsequent transportation and entrainment. The Loess Plateau, the southern hilly region and the Northeast China are subject to serious soil and water loss; however, the characteristics of rain splash erosion in those regions are still unclear. The objectives of the study are to analyze the characteristics of splash erosion on loess soil, red soil, purple soil and black soil, and to discuss the relationship between splash erosion and soil properties. Soil samples spatially distributed in the abovementioned regions were collected and underwent simulated rainfalls at a high intensity of 1.2mm/min, lasting for 5, 10, 15, and 20min, respectively. Rain splash and soil crust development were analyzed. It shows that black soil sample from Heilongjiang Province corresponds to the minimum splash erosion amount because it has high aggregate content, aggregate stability and organic matter content. Loess soil sample from Inner Mongolia corresponds to the maximum splash erosion amount because it has high content of sand particles. Loess soil sample from Shanxi Province has relatively lower splash erosion amount because it has high silt particle content and low aggregate stability easily to be disrupted under rainfalls with high intensity. Although aggregate contents of red soil and purple soil samples from Hubei and Guangdong provinces are high, the stability is weak and prone to be disrupted, so the splash erosion amount is medium. Splash rate which fluctuates over time is observed because soil crust development follows a cycling processes of formation and disruption. In addition, there are two locations of soil crust development, one appears at the surface, and the other occurs at the subsurface.
出处 《Chinese Geographical Science》 SCIE CSCD 2008年第2期155-161,共7页 中国地理科学(英文版)
基金 Under the auspices of National Natural Science Foundation of China ( No. 40471084) Innovation Program of Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences (No. 066U0104SZ) State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau (No. 10501-173)
关键词 rain splash erosion black soil loess soil red soil purple soil soil crust 雨水侵蚀 黑土 黄土 红土 地壳土壤 中国
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  • 1江忠善,刘志.降雨因素和坡度对溅蚀影响的研究[J].水土保持学报,1989,3(2):29-35. 被引量:52
  • 2[3]Braford J M,Huang L. Comparison of interill soil loss for laboratory and field procedures. Soil Technology, 1993, 6(2): 154~169
  • 3[4]Eldridge D J, Green R S B. The effect of time since fire on the cover and composition of cryptogamic soil crusts on a Eucalypus shrubland soil. Cunninghamia, 1994, 3:581~599
  • 4[5]Mualem J, Assouline S, Rohaenburc H. Rainfall induced soil seal (A): A critical review of observations and models. Catena, 1990, 17: 185~205
  • 5江忠善,中国科学院西北水土保持研究所集刊,1988年,7期
  • 6陈治,人民黄河,1986年,1期
  • 7蔡国强,中国水土保持,1986年,6期
  • 8王万忠,水土保持通报,1983年,5期
  • 9江忠善,中国水土保持,1983年,3期
  • 10周佩华,水土保持通报,1981年,1期

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