globalchange  > 气候变化事实与影响
DOI: 10.1016/j.atmosenv.2017.03.024
Scopus记录号: 2-s2.0-85015407649
论文题名:
Effects of warming and nitrogen fertilization on GHG flux in the permafrost region of an alpine meadow
作者: Chen X; , Wang G; , Zhang T; , Mao T; , Wei D; , Hu Z; , Song C
刊名: Atmospheric Environment
ISSN: 0168-2563
EISSN: 1573-515X
出版年: 2017
卷: 157
起始页码: 111
结束页码: 124
语种: 英语
英文关键词: Freeze-thaw cycles ; Greenhouse gas ; Nitrogen addition ; Simulated warming
Scopus关键词: Carbon ; Deposition ; Ecology ; Ecosystems ; Freezing ; Greenhouse effect ; Nitrogen ; Nitrogen fertilizers ; Permafrost ; Soil mechanics ; Soils ; Thawing ; Ecosystem respiration ; Freeze-thaw cycles ; Greenhouse gas (GHG) ; Nitrogen additions ; Nitrogen fertilization ; Qinghai Tibet plateau ; Simulated warming ; Surface soil temperatures ; Greenhouse gases ; nitrogen ; nitrogen oxide ; rain ; alpine environment ; carbon sink ; freeze-thaw cycle ; global warming ; greenhouse gas ; growing season ; meadow ; methane ; nitric oxide ; nitrogen ; permafrost ; air temperature ; Article ; carbon cycling ; carbon sink ; climate ; climate change ; ecosystem ; fertilization ; freeze thawing ; greenhouse effect ; greenhouse gas ; growing season ; permafrost ; priority journal ; soil ; soil moisture ; soil temperature ; surface soil ; temperature ; Tibet ; vegetation ; warming ; China ; Qinghai-Xizang Plateau
Scopus学科分类: Environmental Science: Water Science and Technology ; Earth and Planetary Sciences: Earth-Surface Processes ; Environmental Science: Environmental Chemistry
英文摘要: The limited number of in situ measurements of greenhouse gas (GHG) flux during soil freeze-thaw cycles in permafrost regions limits our ability to accurately predict how the alpine ecosystem carbon sink or source function will vary under future warming and increased nitrogen (N) deposition. An alpine meadow in the permafrost region of the Qinghai-Tibet Plateau was selected, and a simulated warming with N fertilization experiment was carried out to investigate the key GHG fluxes (ecosystem respiration [Re], CH4 and N2O) in the early (EG), mid (MG) and late (LG) growing seasons. The results showed that: (i) warming (4.5 �C) increased the average seasonal Re, CH4 uptake and N2O emission by 73.5%, 65.9% and 431.6%, respectively. N fertilization (4 g N m−2) alone had no significant effect on GHG flux; the interaction of warming and N fertilization enhanced CH4 uptake by 10.3% and N2O emissions by 27.2% than warming, while there was no significant effect on the Re; (ii) the average seasonal fluxes of Re, CH4 and N2O were MG > LG > EG, and Re and CH4 uptake were most sensitive to the soil freezing process instead of soil thawing process; (iii) surface soil temperature was the main driving factor of the Re and CH4 fluxes, and the N2O flux was mainly affected by daily rainfall; (iv) in the growing season, warming increased greenhouse warming potential (GWP) of the alpine meadow by 74.5%, the N fertilization decreased GWP of the warming plots by 13.9% but it was not statistically significant. These results indicate that (i) relative to future climate warming (or permafrost thawing), there could be a hysteresis of GHG flux in the alpine meadow of permafrost region; (ii) under the scenario of climate warming, increasing N deposition has limited impacts on the feedback of GHG flux of the alpine meadow. � 2017 Elsevier Ltd
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/82601
Appears in Collections:气候变化事实与影响

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作者单位: Key Laboratory of Mountain Environment Evolvement and Regulation, Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu, China; University of Chinese Academy of Sciences, Beijing, China

Recommended Citation:
Chen X,, Wang G,, Zhang T,et al. Effects of warming and nitrogen fertilization on GHG flux in the permafrost region of an alpine meadow[J]. Atmospheric Environment,2017-01-01,157
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