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DOI | 10.1007/s11368-023-03593-w |
Effects of degradation level and vegetation recovery age on soil erodibility of alpine grasslands on the Qinghai-Tibetan Plateau | |
Li, Yuanze; Lu, Bingbing; Zhou, Huakun; Zhang, Yue; Zhao, Ziwen; Chen, Wenjing; Wu, Yang; Guo, Ziqi; Jiang, Jun; Xue, Sha | |
发表日期 | 2023 |
ISSN | 1439-0108 |
EISSN | 1614-7480 |
英文摘要 | PurposeThe study of soil erodibility is an important step in understanding the mechanism of soil erosion, and is crucial to the sustainable development of grassland ecosystems. However, few studies have investigated the potential effects of different degradation levels and restoration ages on soil erodibility on the Qinghai-Tibetan Plateau where many alpine grasslands suffering from severe degradation have been restored for different years.Materials and methodsIn order to quantify the impact of alpine grassland degradation and restoration on soil erodibility, we selected different degradation levels (non-degraded, lightly degraded, moderately degraded, and heavily degraded) and restored ages (3, 8, 13, and 19 years) on the Qinghai-Tibet Plateau. Soil sampling was carried out at different depths, and the microaggregate fractal dimension (D-v), multifractal theory (D-m) and erodibility factor (K) were measured and calculated to quantify the soil changes in erodibility.Results and discussionWith the degree of degradation increased, the K value in the surface soil changed little, but the D-v value increased significantly. On the grassland recovery sequence, the K value showed a trend of increasing first and then decreasing, and the K factor and D-m of 19-y restored grasslands was reverted to the same level as that of the non-degraded site. Furthermore, the K value and D-v value increased with the increase in soil depth. Our result also shows that root biomass, microorganisms, and soil physicochemical properties including SOC, TN, TP, PSD, and MSD were all significantly correlated with K value.ConclusionsOur research proves that restoration of alpine grassland on the Qinghai-Tibet Plateau helps reduce soil erodibility, and reveals that plant roots, soil physical and chemical properties, and microorganisms play an important role in reducing soil erodibility, further deepening the influence on soil erodibility. This understanding can provide a certain theoretical basis for the sustainable development of grassland ecosystems. |
关键词 | Degradation levelsRestoration agesAlpine grasslandsErodibility |
英文关键词 | PARTICLE-SIZE DISTRIBUTION; LOESS PLATEAU; LAND-USE; AGGREGATE STABILITY; RESTORATION; EROSION; MEADOW; CARBON; MANAGEMENT; NITROGEN |
WOS研究方向 | Environmental Sciences ; Soil Science |
WOS记录号 | WOS:001031303600002 |
来源期刊 | JOURNAL OF SOILS AND SEDIMENTS |
文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/283621 |
作者单位 | Chinese Academy of Sciences; Institute of Soil & Water Conservation (ISWC), CAS; Northwest A&F University - China; Chinese Academy of Sciences; Qinghai University; Ministry of Water Resources; Chinese Academy of Sciences; Institute of Soil & Water Conservation (ISWC), CAS; Chinese Academy of Sciences; University of Chinese Academy of Sciences, CAS |
推荐引用方式 GB/T 7714 | Li, Yuanze,Lu, Bingbing,Zhou, Huakun,et al. Effects of degradation level and vegetation recovery age on soil erodibility of alpine grasslands on the Qinghai-Tibetan Plateau[J],2023. |
APA | Li, Yuanze.,Lu, Bingbing.,Zhou, Huakun.,Zhang, Yue.,Zhao, Ziwen.,...&Xue, Sha.(2023).Effects of degradation level and vegetation recovery age on soil erodibility of alpine grasslands on the Qinghai-Tibetan Plateau.JOURNAL OF SOILS AND SEDIMENTS. |
MLA | Li, Yuanze,et al."Effects of degradation level and vegetation recovery age on soil erodibility of alpine grasslands on the Qinghai-Tibetan Plateau".JOURNAL OF SOILS AND SEDIMENTS (2023). |
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