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May 6, 2026Diversity0 citationsOpen Access

Effects of Five Planting Cover Measures on Soil Crust Particle Size Distribution Characteristics in Ulan Buh Desert

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LLLu LiuRWRuidong WangYGYong Gao

Key Points

  • To explore how different vegetation affects soil crust grain-size characteristics in sandy desert lands.
  • Analyzed five plant species in a vegetation restoration area.
  • Used laser granulometry to assess soil particle size distribution.
  • Examined correlations between soil parameters and plant morphological characteristics.
  • Vegetation types significantly increased content of fine particulate matter, with fine sand at 42.85% and silt at 23.64%.
  • Phragmites australis had the smallest average particle size (1.91) and worst sorting (sd 2.01).
  • Nitraria tangutorum had the largest average particle size (5.25) and highest fractal dimension (2.46).
  • Plant characteristics were negatively correlated with mean particle size, suggesting vegetation affects soil composition.

Abstract

To explore the regulatory mechanisms of different vegetation types on soil crust grain-size characteristics in sandy lands, this study focused on five typical plant species (Haloxylon ammodendron, Artemisia ordosica, Nitraria tangutorum, Agriophyllum squarrosum, and Phragmites australis) in an artificial vegetation restoration area on the northeastern edge of the Ulan Buh Desert. Using laser granulometry and graphical methods, we systematically determined the soil particle size composition and parameters of the crust (Layer A) and sub-crust (Layer B) layers, and analyzed their correlations with plant morphological parameters (crown width, plant height, basal diameter). The results showed that (1) different vegetation types significantly increased the content of soil fine particulate matter (silt and clay), with fine sand accounting for 42.85% and silt accounting for 23.64%; (2) there are significant differences in the impact of different vegetation types on particle size parameters. The average particle size of soil crust under Phragmites australis is the smallest (1.91), and the sorting is the worst (standard deviation 2.01). Under the vegetation type of Nitraria tangutorum, the average particle size of the soil crust layer is the largest (5.25), and the fractal dimension is the highest (2.46). (3) The crown width, plant height, and basal diameter of vegetation are negatively correlated with mean particle size, kurtosis, and fractal dimension (r= −0.62 to −0.45), and positively correlated with standard deviation and skewness (r = 0.51 to 0.68). (4) The frequency curve indicates that vegetation types broaden the distribution range of soil particles, and Phragmites australis and Artemisia ordosica exhibit bimodal characteristics. This study reveals the impact of vegetation restoration on soil grain size parameters in arid regions. These findings provide actionable strategies for optimizing vegetation configuration in actual desert restoration projects, notably proposing a “herbs first, shrubs follow” approach that can be directly applied to enhance restoration efficiency.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69fa97ce04f884e66b531b62https://doi.org/10.3390/d18050275
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