LIU Guanzhi, LI Qingfeng, HE Wei, et al. Efficiency of Sand Resistance of Three Main Plant Communities in Mu Us Sandland[J]. Bulletin of Soiland Water Conservation, 2016, 36(2): 234-238.
DOI:
LIU Guanzhi, LI Qingfeng, HE Wei, et al. Efficiency of Sand Resistance of Three Main Plant Communities in Mu Us Sandland[J]. Bulletin of Soiland Water Conservation, 2016, 36(2): 234-238. DOI: 10.13961/j.cnki.stbctb.2016.02.044.
Efficiency of Sand Resistance of Three Main Plant Communities in Mu Us Sandland
[Objective] The state of wind erosion and sand resistance of three main natural plant communities
Artemisia ordosica
Salix psammophllia and Caragana microphylla
in Mu Us Sandland
were demonstrated and the efficiency of sand resistance of them was analyzed in order to provide references for desertification control and environment preservation. [Methods] Erosion rods were set upright and the buried scales were observed to calculate the indices of wind erosion and sand resistance by the three communities. [Results] The large vegetation coverage was the high efficiency of sand resistance of these communities had. Under similar terrain condition and the same wind speed
their threshold vegetation coverage were different in erosive season. The critical vegetation coverage for controlling wind erosion of Artemisia ordosica
was about 60%
smaller than those of Salix psammophllia and Caragana microphylla. The threshold vegetation coverage of Salix psammophllia and Caragana microphylla were larger than 60%
but the former was bigger than the one of the latter. Under same coverage
the amount of wind erosion and sand resistance ranked as Salix psammophllia > Caragana microphylla > Artemisia ordosica. [Conclusion] Artemisia ordosica had the most significant efficiency of sand resistance and be promoted to act as the main sand-fixation plant in Mu Us Sandland.
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Related Author
TANG Guo-an
YAN Zheng-long
WU Bin
ZHANG Yu-qing
SUN Bao-ping
SHANG Run-yang
DING Guo-dong
ZHAO Ming-yan
Related Institution
Nanjing Normal University
GeoInformation Ltd. Company of ARSC
Research Institute of Geotechnical Engineering, Xi’an University of Technology
Haihe River Water Conservancy Committee
Key Laboratory of Soil and Water Conservation and Combating Desertification of the Ministry of Education, and College of Soil and Water Conservation, Beijing Forestry University