植被恢复
草原
永久冻土
环境科学
高原(数学)
犁
土壤科学
水文学(农业)
农学
地质学
生态学
生态演替
岩土工程
数学分析
海洋学
数学
生物
作者
Yinglan Jia,Shengyun Chen,Minghui Wu,Yuzheng Gu,Peijie Wei,Tonghua Wu,Zhanhuan Shang,Shijin Wang,Hongyan Yu
出处
期刊:Geoderma
[Elsevier BV]
日期:2023-01-25
卷期号:430: 116350-116350
被引量:14
标识
DOI:10.1016/j.geoderma.2023.116350
摘要
Revegetation is an effective approach for restoring extremely degraded grassland (DG) in the Qinghai-Tibetan Plateau (QTP). However, little is known about its effects on permafrost stability. Our study investigated changes in the characteristics of DG and revegetated grassland (RG) in alpine permafrost regions of the QTP by means of in situ monitoring and sampling. Compared with DG, soil temperature was lower in warm months and slightly higher in cool months both at 2 and 10 cm depths after revegetation, while soil moisture generally decreased. Revegetation advanced the onset and increased the duration of completely frozen stage. The number of freeze–thaw days decreased at 2 cm but increased at 10 cm depth. The freeze–thaw strength weakened at 2 cm depth in spring and autumn, and at 10 cm depth in autumn, but increased at 10 cm depth in spring. The thawing index at the two depths and active layer thickness in RG were also significantly lower than those in DG. Revegetation significantly affected the particle size distribution and stability of soil aggregates by increasing the proportion of large macroaggregates. Thus, revegetation can effectively improve the permafrost stability of degraded grassland in the QTP and enhance the service functions of alpine grassland ecosystems.
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