数字农科院2.0

The fluxes of CO2 from grazed and fenced temperate steppe during two drought years on the Inner Mongolia Plateau, China

文献类型: 外文期刊

作者: Wang, Y. F.;Cui, X. Y.;Hao, Y. B.;Huang, X. Z.;Mei, X. R.;Yu, G. R.;Kang, X. M.;Zhou, X. Q.

作者机构:

关键词: Eddy covariance;Net ecosystem exchange;Leymus chinensis steppe;Drought

期刊名称: SCIENCE OF THE TOTAL ENVIRONMENT

ISSN: 0048-9697

年卷期: 2011 年 410 卷

页码:

收录情况: SCI

摘要: The CO2 flux was measured by the eddy covariance method on a temperate Leymus chinensis steppe over a period of 17 months spanning two consecutive growing seasons. The amount of precipitation was nearly normal, but it was low in the early and high in the late growing period in 2006. In the 2007 growing season, the amount of precipitation was about 45% less than the multi-year average and more evenly distributed. Comparisons were made between a moderately grazed site and a 28-year-old fenced site. The maximum instantaneous CO2 release and uptake rates were 0.12 (May) and 0.11 mg CO2 m(-2) s(-1) (July) at the fenced site, and 0.11 and 0.16 mg CO2 m(-2) s(-1) (both in July) at the grazed site. In both growing seasons, the grazed site always had a higher daily uptake rate or lower release rate than the fenced site. The grazed site was a CO2 sink during the growing season of 2007 and a CO2 source in the growing season of 2006, whereas the fenced site was a CO2 source in both seasons. Lower precipitation decreased CO2 loss during the growing season more in the grazed site than in the fenced site, mainly because of depression of total ecosystem respiration (R-e) in the former and stimulation in the latter. During the dormant season (from October to April), the fenced and grazed sites released 60.0 and 32.4 g of C per m(2), respectively. Path analysis showed that temperature had the greatest effect on daily variation of ecosystem CO2 exchange during the growing seasons at the two study sites. The results suggest that decrease of precipitation and/or increase of temperature will likely promote C loss from L chinensis steppes, whether fenced or grazed, and that a grazed site is more sensitive. (C) 2011 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Predominance of Precipitation and Temperature Controls on Ecosystem CO2 Exchange in Zoige Alpine Wetlands of Southwest China. Hao, Yan Bin,Cui, Xiao Yong,Wang, Yan Fen,Kang, Xiao Ming,Mei, Xu Rong,Wu, Ning,Luo, Peng,Zhu, Dan. 2011

[2]Comparison of multi-level water use efficiency between plastic film partially mulched and non-mulched croplands at eastern Loess Plateau of China. Gong, Daozhi,Mei, Xurong,Hao, Weiping,Wang, Hanbo,Mei, Xurong,Caylor, Kelly K..

[3]Spatiotemporal characteristics of Net Ecosystem Exchange in the Beijing-Tianjin sand source region and its response to drought. Wenyang Si,Zhitao Wu,Ziqiang Du,Hanxue Liang,Tianjie Lei,Bin Sun. 2024

[4]Dynamics and biophysical controls of nocturnal water loss in a winter wheat-summer maize rotation cropland: a multi-temporal scale analysis. Xiaonan Guo,Jingfeng Xiao,Tianshan Zha,Guofei Shang,Peng Liu,Chuan Jin,Yucui Zhang. 2023

[5]CO(2)H(2)O and energy exchange of an Inner Mongolia steppe ecosystem during a dry and wet year. Wang, Yanfen,Cui, Xiaoyong,Zhou, Xiaoqi,Niu, Haishan,Hao, Yanbin,Huang, Xiangzhong,Cui, Xiaoyong,Mei, Xurong. 2008

[6]Comparison of ET partitioning and crop coefficients between partial plastic mulched and non -mulched maize fields. Gong, Daozhi,Mei, Xurong,Hao, Weiping,Wang, Hanbo,Gong, Daozhi,Mei, Xurong,Hao, Weiping,Wang, Hanbo,Mei, Xurong,Caylor, Kelly K..

[7]Energy balance and partitioning in partial plastic mulched and non-mulched maize fields on the Loess Plateau of China. Feng, Yu,Gong, Daozhi,Mei, Xurong,Hao, Weiping,Tang, Dahua,Cui, Ningbo,Cui, Ningbo.

[8]Carbon budget of a rainfed spring maize cropland with straw returning on the Loess Plateau, China. Hao, Weiping,Mei, Xurong,Gao, Xiang,Gu, Fengxue,Li, Haoru,Gong, Daozhi,Mao, Lili,Zhang, Zuguang.

[9]Comparison of satellite-based evapotranspiration models over terrestrial ecosystems in China. Chen, Yang,Xia, Jiangzhou,Feng, Jinming,Wang, Kaicun,Yuan, Wenping,Chen, Yang,Xia, Jiangzhou,Liang, Shunlin,Li, Xianglan,Wang, Kaicun,Chen, Yang,Xia, Jiangzhou,Liang, Shunlin,Li, Xianglan,Wang, Kaicun,Liang, Shunlin,Feng, Jinming,Ma, Zhuguo,Zhao, Tianbao,Fisher, Joshua B.,Li, Xin,Wen, Jun,Liu, Shuguang,Miyata, Akira,Mu, Qiaozhen,Sun, Liang,Tang, Jianwei,Zhang, Qiang,Xue, Yueju,Yu, Guirui,Zha, Tonggang,Zhang, Li,Zhao, Liang,Yuan, Wenping.

[10]Geographical statistical assessments of carbon fluxes in terrestrial ecosystems of China: Results from upscaling network observations. Zhu, Xian-Jin,Yu, Gui-Rui,He, Hong-Lin,Wang, Qiu-Feng,Chen, Zhi,Gao, Yan-Ni,Wang, Hui-Min,Shi, Pei-Li,Zhao, Feng-Hua,Fu, Yu-Ling,Wen, Xue-Fa,Liu, Ying-Chun,Zhang, Lei-Ming,Zhang, Li,Su, Wen,Li, Sheng-Gong,Sun, Xiao-Min,Wang, Yan-Fen,Liu, Ying-Chun,Zhang, Yi-Ping,Zhang, Jun-Hui,Yan, Jun-Hua,Zhou, Guang-Sheng,Jia, Bing-Rui,Chen, Shi-Ping,Xiang, Wen-Hua,Li, Ying-Nian,Zhao, Liang,Xin, Xiao-Ping,Wang, Yu-Ying,Tong, Cheng-Li.

[11]Ecosystem responses dominate the trends of annual gross primary productivity over terrestrial ecosystems of China during 2000–2020. Xian Jin Zhu,Gui Rui Yu,Zhi Chen,Wei Kang Zhang,Lang Han,Qiu Feng Wang,Hua Qi,Meng Yang,Zhao Gang Liu,Xiao Jun Dou,Le Xin Ma,Shi Ping Chen,Shao Min Liu,Hui Min Wang,Jun Hua Yan,Jun Lei Tan,Fa Wei Zhang,Feng Hua Zhao,Ying Nian Li,Yi Ping Zhang,Pei Li Shi,Jiao Jun Zhu,Jia Bing Wu,Zhong Hui Zhao,Yan Bin Hao,Li Qing Sha,Yu Cui Zhang,Shi Cheng Jiang,Feng Xue Gu,Zhi Xiang Wu,Yang Jian Zhang,Li Zhou,Ya Kun Tang,Bing Rui Jia,Yu Qiang Li,Qing Hai Song,Gang Dong,Yan Hong Gao,Zheng De Jiang,Dan Sun,Jian Lin Wang,Qi Hua He,Xin Hu Li,Fei Wang,Wen Xue Wei,Zheng Miao Deng,Xiang Xiang Hao,Xiao Li Liu,Xi Feng Zhang,Zhi Lin Zhu. 2023

[12]The effect of relative humidity on eddy covariance latent heat flux measurements and its implication for partitioning into transpiration and evaporation. Weijie Zhang,Martin Jung,Mirco Migliavacca,Rafael Poyatos,Diego G. Miralles,Tarek S. El-Madany,Marta Galvagno,Arnaud Carrara,Nicola Arriga,Andreas Ibrom,Ivan Mammarella,Dario Papale,Jamie R. Cleverly,Michael Liddell,Georg Wohlfahrt,Christia. 2023

[13]Application of a multiple model integration framework for mapping evapotranspiration with high spatial–temporal resolution in the Haihe River Basin, China. Yang Chen,Tianjie Lei,Jiangzhou Xia,Yan Tu,Yidong Wang,Zhong Liang Wang. 2022

[14]Diel, seasonal, and inter-annual variation in carbon dioxide effluxes from lakes and reservoirs. Golub, Malgorzata,Koupaei-Abyazani, Nikaan,Vesala, Timo,Mammarella, Ivan,Ojala, Anne,Bohrer, Gil,Weyhenmeyer, Gesa A.,Blanken, Peter D.,Eugster, Werner,Koebsch, Franziska,Chen, Jiquan,Czajkowski, Kevin,Deshmukh, Chandrashekhar,Guerin, Frederic,Heiskanen, Jouni,Humphreys, Elyn,Jonsson, Anders,Karlsson, Jan,Kling, George,Lee, Xuhui,Liu, Heping,Lohila, Annalea,Lundin, Erik,Morin, Tim,Podgrajsek, Eva,Provenzale, Maria,Rutgersson, Anna,Sachs, Torsten,Sahlee, Erik,Serca, Dominique,Shao, Changliang,Spence, Christopher,Strachan, Ian B.,Xiao, Wei,Desai, Ankur R.. 2023

[15]Energy balance and partitioning over grasslands on the Mongolian Plateau. Jingyan Chen,Gang Dong,Jiquan Chen,Shicheng Jiang,Luping Qu,Tsegaye Gemechu Legesse,Fangyuan Zhao,Qi Tong,Changliang Shao,Xingguo Han. 2022

[16]Contributions Of Landscape Heterogeneity Within T.he Footprint Of Eddy-Covariance T owers To Flux Measurements. Giannico, V, Chen, JQ, Shao, CL, Ouyang, ZT, John, R, Lafortezza, R. 2018

[17]A novel TIR-derived three-source energy balance model for estimating daily latent heat flux in mainland China using an all-weather land surface temperature product. Junming Yang,Yunjun Yao,Changliang Shao,Yufu Li,Joshua B. Fisher,Jie Cheng,Jiquan Chen,Kun Jia,Xiaotong Zhang,Ke Shang,Ruiyang Yu,Xiaozheng Guo,Zijing Xie,Lu Liu,Jing Ning,Lilin Zhang. 2022

[18]Energy and evapotranspiration partitioning over a humid region orchard: Field measurements and partitioning model comparisons. Shouzheng Jiang,Chuan Liang,Lu Zhao,Daozhi Gong,Yaowei Huang,Liwen Xing,Shidan Zhu,Yu Feng,Li Guo,Ningbo Cui. 2022

[19]Climate-shaped vegetation dominated the spatial pattern of the Bowen ratio over terrestrial ecosystems in China. Sun M.,Yu G.,Chen Z.,Hao T.,Yang M.,Zhu X.,Zhang W.,Han L.,Liu Z.,Ma L.,Dou X.,Yao Y.,Wang J.,Luo W.,Lin Y.,Chen S.,Deng Z.,Dong G.,Du H.,Gao Y.,Gu F.,Hao X.,Hao Y.,He Q.,He Y.,He J.,Ji X.,Jiang S.,Jiang Z.,Li X.,Li Y.,Li Y.,Li Y.,Liu R.,Liu S.,Luo W.,Mo X.,Sha L.,Shi P.,Song Q.,Sun D.,Tan J.,Tang Y.,Wang F.,Wang H.,Wang J.,Wei W.,Wu J.,Wu Z.,Xin X.,Yan J.,Zhang F.,Zhang Y.,Zhang Y.,Zhang Y.,Zhao F.,Zhao L.,Zhou L.,Zhu J.,Zhu Z.. 2024

[20]Reclamation alters evapotranspiration and its biophysical controls in a meadow grassland on the Mongolian Plateau. Xiaobing Dong,Gang Dong,Jingyan Chen,Tsegaye Gemechu Legesse,Shicheng Jiang,Muhammad Adnan Akram,Lu Ping Qu,Lulu Wang,Jianming Deng,Changliang Shao. 2024

作者其他论文 更多>>