[1]YU Xin-xiao,CHEN Li-hua,ZHANG Xiao-ming,et al.Study on Anti-arid Afforestation Technology Based on Slope Catchment Project in Loess Plateau[J].Research of Soil and Water Conservation,2008,15(01):23-27,31.
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Research of Soil and Water Conservation[ISSN 1005-3409/CN 61-1272/P] Volume:
15
Number of periods:
2008 01
Page number:
23-27,31
Column:
Public date:
2008-02-20
- Title:
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Study on Anti-arid Afforestation Technology Based on Slope Catchment Project in Loess Plateau
- Author(s):
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YU Xin-xiao1, CHEN Li-hua1, ZHANG Xiao-ming1, YANG Feng-wei1,2
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1. College of Soil and Water Conservation in Beijing Forestry University, Key Laboratory of Soil and Water Conservation and Desertification Combating, Ministry of Education, Beijing 100083, China;
2. Department of Science and Technology of State Forestry Administration, Beijing 100714, China
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- Keywords:
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slope catchment project; anti-arid afforestation technology; the Loess Plateau
- CLC:
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S728.2
- DOI:
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- Abstract:
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This paper selected 4 different slope catchment measures (organic silicon, bare and smooth, lichen and grass slope), and discussed the effect of slope catchment project on catchment rainfall amount and catchment rainfall efficiency, and on stand growth either.This paper aimed at offering the basic theoretic foundation for the Loess Plateau ecological construction and drought resistant and water saving forestation scheme.The results show that: the maximum of catchment rainfall amount and catchment rainfall efficiency is organic silicon surface, next order is concret surface, lichen surface, bare and smooth surface and grass slope surface; but, on the considering of ecological, bare and smooth surface is the best; bare and smooth surface and lichensurface can accelerate the forest growth than that of the common surface, and the lichen surface have more effect than the bare and smooth surface.This paper chose 4 efficiencies of Robinia pseudoacacia under 6 stand density including water use efficiency, rainfall production efficiency, evapotranspiration water production efficiency and transpiration water production efficiency.With the decreasing of stand density of Robinia pseudoacacia, all the four efficiencies have been improved.