Arid
DOI10.1016/j.catena.2016.07.004
The reduction of partitioned wind and water erosion by conservation agriculture
Van Pelt, R. Scott1; Hushmurodov, Shaymonkul X.2; Baumhardt, R. Louis3; Chappell, Adrian4; Nearing, Mark A.5; Polyakov, Viktor O.5; Strack, John E.1
通讯作者Van Pelt, R. Scott
来源期刊CATENA
ISSN0341-8162
EISSN1872-6887
出版年2017
卷号148页码:160-167
英文摘要

Soil loss due to wind and water erosion degrades the soil on-site and results in environmental problems due to deposition in off-site areas downstream and downwind of the source field. Wind and water erosion may both occur to varying extents particularly in semi-arid environments. Soil conservation strategies require information about the processes of soil redistribution to mitigate its impact. However, very few studies have partitioned soil erosion between contributions of wind and water. We quantified wind and water erosion on six graded terraces under a uniform crop rotation since 1949 and two tillage management practices begun in 1981. Detailed runoff and sediment yield data have been recorded on all the terraces since 1984. We used a stratified random sampling design to collect soil which were then bulked to form six composites for each terrace. From an adjacent undisturbed native prairie, soil cores were collected and composited similarly to provide a reference. The cores were composited by 15 cm layers in the terraces and, in the reference area, the upper 15 cm layer was subdivided into 5 cm layers and all were measured for 137Cs activity which was converted to 137Cs inventory. We then employed an established computer model that equates loss of 137C5 inventory with soil loss and direct measurement of water-borne sediment loss to estimate 30 year mean wind erosion losses on the terraces by tillage type. We found that no-till management reduced total soil loss by one-third compared with stubble mulch tillage, reduced water-borne sediment loss by about the same amount, and that for both tillage systems, wind erosion was responsible for about 75% of the total soil loss. Published by Elsevier B.V.


英文关键词Wind erosion Water erosion (CS)-C-137 Cropping systems No-till
类型Article ; Proceedings Paper
语种英语
国家USA ; Uzbekistan ; Australia
收录类别SCI-E ; CPCI-S
WOS记录号WOS:000389166800008
WOS关键词SOIL REDISTRIBUTION ; ESTIMATE RATES ; MODELS ; CS-137 ; RANGELAND ; TILLAGE ; DRYLAND ; RUNOFF ; PLAINS
WOS类目Geosciences, Multidisciplinary ; Soil Science ; Water Resources
WOS研究方向Geology ; Agriculture ; Water Resources
来源机构Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/198024
作者单位1.ARS, USDA, Cropping Syst Res Lab, Big Spring, TX 79720 USA;
2.Samarkand State Univ, Dept Nucl Phys, Samarkand, Uzbekistan;
3.ARS, USDA, Conservat & Prod Res Lab, Bushland, TX USA;
4.Commonwealth Sci & Ind Res Org Flagship, Canberra, NSW, Australia;
5.ARS, USDA, Southwest Watershed Res, Tucson, AZ USA
推荐引用方式
GB/T 7714
Van Pelt, R. Scott,Hushmurodov, Shaymonkul X.,Baumhardt, R. Louis,et al. The reduction of partitioned wind and water erosion by conservation agriculture[J]. Commonwealth Scientific and Industrial Research Organisation,2017,148:160-167.
APA Van Pelt, R. Scott.,Hushmurodov, Shaymonkul X..,Baumhardt, R. Louis.,Chappell, Adrian.,Nearing, Mark A..,...&Strack, John E..(2017).The reduction of partitioned wind and water erosion by conservation agriculture.CATENA,148,160-167.
MLA Van Pelt, R. Scott,et al."The reduction of partitioned wind and water erosion by conservation agriculture".CATENA 148(2017):160-167.
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