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Choosing an optimal land-use pattern for restoring eco-environments in a semiarid region of the Chinese Loess Plateau

  • Yunqiang Wang
  • , Ming'an Shao
  • , Chencheng Zhang
  • , Xiangwei Han
  • , Tianxu Mao
  • , Xiaoxu Jia
  • CAS - Institute of Earth Environment
  • CAS - Institute of Geographical Sciences and Natural Resources Research
  • CAS - Institute of Soil and Water Conservation

Research output: Contribution to journalArticlepeer-review

90 Scopus citations

Abstract

The natural environments in the semiarid regions of the Chinese Loess Plateau (CLP) are fragile due to the serious soil erosion and the weak ecological services of the plants. To ascertain and then evaluate a sustainable land-use pattern in these regions, we selected six typical land-use patterns (i.e., a farmland, a natural grassland, a homogeneous shrubland (S), a mix of shrubland and cultivated grassland (S-Alf), a mix of shrubland and orchard (S-O) and a mix of shrubland and grassland (S-G)) on the plateau and then measured the soil water, related soil properties and plant root indices to a depth of 1800cm. We also measured the aboveground net primary productivities (ANPPs). The mean soil water content (SWC) within the 0-1800cm profile was significantly highest (15.2%) in farmland, followed by grassland (11.4%) and S-Alf (8.0%). The available water (AW), the ratio between AW and AW capacity, and the thickness of the dried soil layers also demonstrated that farmland had the best conditions of soil water, followed by grassland and shrubland. The aboveground biomasses of grassland in both non-growing (140gm-2) and growing (370gm-2) seasons were significantly higher than those of shrublands. The ANPPs of the grassland (2.0gm-2d-1) demonstrated a similar trend. The patterns of land use (including the mixtures of different plant species) greatly affected the patterns of vertical distribution and quantities of soil water within the 1800-cm profile. The data for the soil-water regime and the ANPP further indicated that grassland would be an optimal use of the land for these semiarid regions. This information should be useful to the ecological scientists and policy makers for developing strategies for the sustainable management of vegetation on the CLP and possibly other water-limited regions around the world.

Original languageEnglish
Pages (from-to)213-222
Number of pages10
JournalEcological Engineering
Volume74
DOIs
StatePublished - 1 Jan 2015
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • Aboveground net primary productivity
  • Deep soils
  • Dried soil layer
  • Grassland
  • Shrubland
  • Soil water

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