Responses of alpine grassland on Qinghai-Tibetan plateau to climate warming and permafrost degradation: a modeling perspective

Permafrost plays a critical role in soil hydrology. Thus, the degradation of permafrost under warming climate conditions may affect the alpine grassland ecosystem on the Qinghai-Tibetan Plateau. Previous space-for-time studies using plot and basin scales have reached contradictory conclusions. In th...

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Published inEnvironmental research letters Vol. 9; no. 7; pp. 74014 - 12
Main Authors Yi, Shuhua, Wang, Xiaoyun, Qin, Yu, Xiang, Bo, Ding, Yongjian
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.07.2014
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Abstract Permafrost plays a critical role in soil hydrology. Thus, the degradation of permafrost under warming climate conditions may affect the alpine grassland ecosystem on the Qinghai-Tibetan Plateau. Previous space-for-time studies using plot and basin scales have reached contradictory conclusions. In this study, we applied a process-based ecosystem model (DOS-TEM) with a state-of-the-art permafrost hydrology scheme to examine this issue. Our results showed that 1) the DOS-TEM model could properly simulate the responses of soil thermal and hydrological dynamics and of ecosystem dynamics to climate warming and spatial differences in precipitation; 2) the simulated results were consistent with plot-scale studies showing that warming caused an increase in maximum unfrozen thickness, a reduction in vegetation and soil carbon pools as a whole, and decreases in soil water content, net primary production, and heterotrophic respiration; and 3) the simulated results were also consistent with basin-scale studies showing that the ecosystem responses to warming were different in regions with different combinations of water and energy constraints. Permafrost prevents water from draining into water reservoirs. However, the degradation of permafrost in response to warming is a long-term process that also enhances evapotranspiration. Thus, the degradation of the alpine grassland ecosystem on the Qinghai-Tibetan Plateau (releasing carbon) cannot be mainly attributed to the disappearing waterproofing function of permafrost.
AbstractList Permafrost plays a critical role in soil hydrology. Thus, the degradation of permafrost under warming climate conditions may affect the alpine grassland ecosystem on the Qinghai–Tibetan Plateau. Previous space-for-time studies using plot and basin scales have reached contradictory conclusions. In this study, we applied a process-based ecosystem model (DOS-TEM) with a state-of-the-art permafrost hydrology scheme to examine this issue. Our results showed that 1) the DOS-TEM model could properly simulate the responses of soil thermal and hydrological dynamics and of ecosystem dynamics to climate warming and spatial differences in precipitation; 2) the simulated results were consistent with plot-scale studies showing that warming caused an increase in maximum unfrozen thickness, a reduction in vegetation and soil carbon pools as a whole, and decreases in soil water content, net primary production, and heterotrophic respiration; and 3) the simulated results were also consistent with basin-scale studies showing that the ecosystem responses to warming were different in regions with different combinations of water and energy constraints. Permafrost prevents water from draining into water reservoirs. However, the degradation of permafrost in response to warming is a long-term process that also enhances evapotranspiration. Thus, the degradation of the alpine grassland ecosystem on the Qinghai–Tibetan Plateau (releasing carbon) cannot be mainly attributed to the disappearing waterproofing function of permafrost.
Author Wang, Xiaoyun
Ding, Yongjian
Xiang, Bo
Qin, Yu
Yi, Shuhua
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  givenname: Shuhua
  surname: Yi
  fullname: Yi, Shuhua
  email: yis@lzb.ac.cn
  organization: State Key Laboratory of Cryospheric Sciences, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, 320 Donggang West Road, 730000, Lanzhou, Gansu, People's Republic of China
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  organization: University of Chinese Academy of Sciences , 100049, Beijing, People's Republic of China
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  givenname: Yu
  surname: Qin
  fullname: Qin, Yu
  organization: State Key Laboratory of Cryospheric Sciences, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, 320 Donggang West Road, 730000, Lanzhou, Gansu, People's Republic of China
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  organization: Chongqing Meteorological Administration, 404100, Chongqing, People's Republic of China
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  surname: Ding
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  organization: State Key Laboratory of Cryospheric Sciences, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, 320 Donggang West Road, 730000, Lanzhou, Gansu, People's Republic of China
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Snippet Permafrost plays a critical role in soil hydrology. Thus, the degradation of permafrost under warming climate conditions may affect the alpine grassland...
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SubjectTerms alpine grassland
Carbon
Climate
Climate change
Climate models
climate warming
Climatic conditions
Degradation
Drainage
Ecosystem dynamics
Ecosystem models
Ecosystems
Evapotranspiration
Global warming
Grasslands
Hydrology
modeling
Moisture content
Net Primary Productivity
Permafrost
permafrost degradation
Primary production
Simulation
Soil (material)
Soil degradation
Soil dynamics
Soil hydrology
Soil water
Water content
Waterproofing
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Title Responses of alpine grassland on Qinghai-Tibetan plateau to climate warming and permafrost degradation: a modeling perspective
URI https://iopscience.iop.org/article/10.1088/1748-9326/9/7/074014
https://www.proquest.com/docview/2550674018
https://www.proquest.com/docview/1709165456
https://www.proquest.com/docview/1730069054
https://doaj.org/article/e816f301dbc8440482ab6c87429a2f3b
Volume 9
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