Grassland is an important part of the ecosystem, which plays a good role in soil and water conservation. The degradation of grassland is easy to cause soil erosion in related areas. The reason is that overgrazing makes the grassland degrade rapidly. Ningxia has introduced a policy to ban grazing on natural grasslands, which can effectively safeguard grassland ecology, improve the condition of grasslands in Ningxia, and reduce the risk of grassland loss. This paper mainly analyzed the vegetation dynamics and soil erosion of grassland in Ningxia, and explored the changes before and after the grazing ban, to accumulate experience for ecological management.
Zhang PH, Xing GY, Zhao JM, et al., 2024, Soil Physical and Mechanical Properties of Lightly Grazed and Forbidden Grassland: A Case Study of Xiazangtan Landslide Area. Journal of Arid Zone Research, 41(8): 1364–1372.
Bai CD, Qiao LD, Guan SL, 2024, Vegetation Coverage Extraction of Grassland Based on Visible Light Vegetation Index. Proceedings of the 15th Academic Exchange Conference on Ecological and Environmental Monitoring, 8.
Li RS, 2024, Effects of Grazing Management on Aerodynamic Characteristics and Soil-air-water-heat Flux of Semi-arid Grassland, thesis, Inner Mongolia Agricultural University.
Li YW, Zhu ZJ, Wang YQ, et al., 2023, Effects of Different Grassland Utilization Methods on Vegetation and Soil Characteristics in Bashang Area. Pratacultural Science, 40(9): 2213–2225.
Chen M, Zhang G, Pan JF, et al., 2023, Estimation of Mercury Flux during Carbon Sequestration in Grassland Vegetation in China. Proceedings of 2023 Science and Technology Annual Meeting of Chinese Society of Environmental Sciences.
Wang YD, 2021, Effects of Grazing Livestock Type and Intensity on Surface Arthropod Community in Typical Grasslands of Inner Mongolia, thesis, Inner Mongolia University.
Zhang XL, Hu YF, Shu XY, et al., 2019, Effects of Nitrogen Addition on Vegetation Diversity, Biomass and Net Primary Productivity of Grassland Based on Integrated Analysis. Journal of Sichuan Agricultural University, 38(3): 290–298.
Sun HF, Li XL, Jin LQ, et al., 2019, Effects of Biological Soil Crust on Vegetation and Soil Physicochemical Properties of Artificial Grassland in the Source Region of the Yellow River. Journal of Grassland Science, 28(2): 509–520.
Han HL, Li ZW, Li SX, 2020, Interannual Dynamic Study on Vegetation Characteristics of Artificial Grassland with Different Years of Establishment. Qinghai Journal of Animal Husbandry and Veterinary Medicine, 50(1): 22–26.
Xie WD, Dan JB, Yan J, et al., 2020, Effect of Rodent Isolation and Control Technology on Vegetation Restoration of Alpine Grassland in Northern Tibet. Animal Husbandry Environment, 2020(2): 11–12
Chen RX, Lv XZ, Ni YXX, et al., 2020, Regulation and Critical Threshold of Grassland on Slope Runoff in Loess Hill-gully Region Under Artificial Rainfall. Chinese Journal of Ecology and Environment, 29(1): 122–128.
Zhao W, Yin YL, Li SX, et al., 2020, Vegetation Reconstruction to the Characteristics of Grassland Vegetation, and the Influence of the Microbial Community Characteristics. Journal of Ecological Environment, 29(1): 71–80.
Ma R, Zhao JM, 2020, Vegetation Community Characteristics and their Relationship with Soil Characters in Alpine Grassland of East Qilian Mountain Valley. Arid Zone Research, 2020(2): 374–381.
Yang Q, Chen ZF, Zhou JJ, et al., 2019, Response of Leaf Functional Traits of Dominant Species of Grassland Vegetation Community to Nitrogen and Phosphorus Supplementation in Loess Hilly Area. Chinese Journal of Applied Ecology, 30(11): 3697–3706.
Zhao WL, Luo TX, Zhang L, 2019, Relative Effects of Climate Change and Grazing on Vegetation Index of Typical Alpine Desert Grassland in Tibet. Acta Ecologica Sinica, 39(22): 8494–8503.