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Construction and progress of Chinese terrestrial ecosystem carbon, nitrogen and water fluxes coordinated observation
Yu G. R.; Ren, W.; Chen, Z.; Zhang, L. M.; Wang, Q. F.; Wen, X. F.; He, N. P.; Zhang, L.; Fang, H. J.; Zhu, X. J.; Gao, Y.; Sun, X. M.
Source PublicationJournal of Geographical Sciences
2016
Volume26
Issue7
Pages803-826
Keywordeddy covariance technique carbon-water-nitrogen fluxes coupling cycle coordinated observation ChinaFLUX gross primary production qinghai-tibetan plateau pine mixed forest subtropical coniferous forest north-south transect tropical rain-forest data fusion approach alpine meadow soil use efficiency co2 exchange
AbstractEddy Covariance technique (EC) achieves the direct measurement on ecosystem carbon, nitrogen and water fluxes, and it provides scientific data for accurately assessing ecosystem functions in mitigating global climate change. This paper briefly reviewed the construction and development of Chinese terrestrial ecosystem flux observation and research network (ChinaFLUX), and systematically introduced the design principle and technology of the terrestrial ecosystem carbon, nitrogen and water fluxes coordinated observation system of ChinaFLUX. In addition, this paper summarized the main progress of ChinaFLUX in the ecosystem carbon, nitrogen and water exchange and environmental controlling mechanisms, the spatial pattern of carbon, nitrogen and water fluxes and biogeographical mechanisms, and the regional terrestrial ecosystem carbon budget assessment. Finally, the prospects and emphases of the terrestrial ecosystem carbon, nitrogen and water fluxes coordinated observation of ChinaFLUX are put forward to provide theoretical references for the development of flux observation and research in China.
Indexed BySCI
Language英语
ISSN1009-637X
DOI10.1007/s11442-016-1300-5
Citation statistics
Document TypeSCI/SSCI论文
Identifierhttp://ir.igsnrr.ac.cn/handle/311030/43370
Collection历年回溯文献
Recommended Citation
GB/T 7714
Yu G. R.,Ren, W.,Chen, Z.,et al. Construction and progress of Chinese terrestrial ecosystem carbon, nitrogen and water fluxes coordinated observation. 2016.
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