Agricultural Sciences

Volume 2, Issue 2 (May 2011)

ISSN Print: 2156-8553   ISSN Online: 2156-8561

Google-based Impact Factor: 1.22  Citations  

Soil reinforcement by a root system and its effects on sediment yield in response to concentrated flow in the loess plateau

HTML  Download Download as PDF (Size: 133KB)  PP. 86-93  
DOI: 10.4236/as.2011.22013    9,843 Downloads   14,730 Views  Citations
Author(s)

Affiliation(s)

.

ABSTRACT

The importance of roots in soil conservation has long been underestimated due to a lack of sys-tematic studies conducted to evaluate root dis-tribution patterns and their effects on soil ero-sion. Current knowledge regarding root mor-phology and its impact on soil erosion by water is limited; therefore, detailed analysis of the role that root systems play in controlling soil ero-sion is needed. In this study, stratified runoff scouring at different soil depths in the field was conducted in a grassland area. The results in-dicated that both root biomass and soil wa-ter-stable aggregates decreased as soil depth increased at all three sites, while there was al-most no change in soil bulk density at 1.3g/cm3. Sediment yields under different runoff dis-charge at different sites showed similar trends, and the sediment yield increased as the soil depth increased at all three sites. Further analysis revealed that close relationships ex-isted between root biomass and the amount of water-stable aggregates and soil organic matter content, and that these factors greatly influ-enced soil erosion. Based on the data generated by the experiment, equations describing the relationship between sediment production at different soil depths and root biomass were determined.

Share and Cite:

Li, P. and Li, Z. (2011) Soil reinforcement by a root system and its effects on sediment yield in response to concentrated flow in the loess plateau. Agricultural Sciences, 2, 86-93. doi: 10.4236/as.2011.22013.

Cited by

[1] Quantification of the effectiveness of mitigation measures on erosion potential of soil with image analysis
Journal of Soils and …, 2024
[2] 植被调控水土流失机制研究进展及展望
中国水土保持科学, 2024
[3] Spatial analysis of environmentally sensitive areas to soil degradation using MEDALUS model and GIS in Amazonas (Peru): An alternative for ecological …
Cruz… - Sustainability, 2022
[4] Slope Stability Analysis for Optimal Tree Density of Cedrus Deodar Tree in Kumaon Region of Uttarakhand State in India
2021
[5] Resistance of salt marsh substrates to near‐instantaneous hydrodynamic forcing
2020
[6] Assessing Environmental Sensitivity Areas to Desertification using MEDALUS Model in Ziz-Rheris Watershed, Morocco
2020
[7] Use of local plants for ecological restoration and slope stability: a possible application in Yan'an, Loess Plateau, China
2019
[8] Desertification Assessment Using MEDALUS Model in Watershed Oued El Maleh, Morocco
Geosciences, 2017
[9] How do root and soil characteristics affect the erosion-reducing potential of plant species?
Ecological Engineering, 2017
[10] Evaluation of Soil Reinforcement Potential of Grass Variety
International Journal of Geological and Geotechnical Engineering, 2015
[11] A review of the mechanical effects of plant roots on concentrated flow erosion rates
Earth-Science Reviews, 2015
[12] Can we manipulate root system architecture to control soil erosion?
SOIL, Volume 1, Issue 2, 2015, pp. 603-612, 2015
[13] Biomechanics and Utility of Shallow Soil Fixation by Sabina Valgaris Ant. Roots in Arid and Semiarid Soils
Sensors & Transducers, 2014
[14] Effects of Perennial Vegetation on Runoff and Erosion for Field Plots on Loess Plateau in China
2013

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.

  翻译: