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Temporal variation in soil detachment under different land uses in the Loess Plateau of China

✍ Scribed by Guang-hui Zhang; Ming-ke Tang; X. C. Zhang


Publisher
John Wiley and Sons
Year
2009
Tongue
English
Weight
347 KB
Volume
34
Category
Article
ISSN
0360-1269

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✦ Synopsis


Abstract

Measurements of temporal variations in soil detachability under different land uses are badly needed to develop new algorithms or evaluate the existing ones for temporal adjustment of soil detachability in continuous soil erosion models. Few studies have been conducted in the Loess Plateau to quantify temporal variations in detachment rate of runoff under different land uses. The objectives of this study were to investigate the temporal variations of soil detachment rate under different land uses and to further identify the potential factors causing the change in detachment rate in the Loess Plateau. Undisturbed soil samples were collected in the fields of arable land (millet, soybean, corn, and potato), grassland, shrub land, wasteland, and woodland and tested in a laboratory flume under a constant hydraulic condition. The measurements started in mid‐April and ended in early October, 2006. The results showed that soil detachment rate of each land use fluctuated considerably over time. Distinctive temporal variation in detachment rate was found throughout the summer growing season of measurement in each land use. The maximum detachment rates of different land uses varied from 0Β·019 to 0Β·490Β kgΒ m^–2^s^–1^ and the minimum detachment rates ranged from 0Β·004 to 0Β·092Β kgΒ m^–2^s^–1^. Statistical analysis using a paired‐samples __t‐__test indicated that variations in soil detachment rate differed significantly at the 0Β·05 level between land uses in most cases. The major factors responsible for the temporal variation of soil detachment were tillage operations (such as planting, ploughing, weeding, harvesting), soil consolidation, and root growth. The influence of tillage operations on soil detachment depended on the degree of soil disturbance caused by the operations. The consolidation of the topsoil over time after tillage was reflected by increases in soil bulk density and soil cohesion. As soil bulk density and cohesion increased, detachment rate decreased. The impact of root density was inconclusive in this study. Further studies are needed to quantify the effects of root density on temporal variations of soil detachment. This work provides useful information for developing temporal adjustments to soil detachment rate in continuous soil erosion models in the Loess Plateau. Copyright Β© 2009 John Wiley & Sons, Ltd.


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