PEATLANDS

作品数:24被引量:43H指数:4
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相关领域:天文地球环境科学与工程更多>>
相关机构:中国科学院大学更多>>
相关期刊:《Science China Earth Sciences》《Geoscience Frontiers》《Chinese Geographical Science》《International Journal of Digital Earth》更多>>
相关基金:国家自然科学基金更多>>
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Paludification reduces black spruce growth rate but does not alter tree water use efficiency in Canadian boreal forested peatlands
《Forest Ecosystems》2021年第2期373-386,共14页Joannie Beaulne Étienne Boucher Michelle Garneau Gabriel Magnan 
Scholarships to J.B.were provided by the Natural Sciences and Engineering Research Council of Canada(NSERC-CGS M);the Fonds de recherche du Québec–Nature et technologies(FRQNT);funded by the Natural Sciences and Engineering Research Council of Canada through discovery grants to M.G.andÉB。
Background:Black spruce(Picea mariana(Mill.)BSP)-forested peatlands are widespread ecosystems in boreal North America in which peat accumulation,known as the paludification process,has been shown to induce forest grow...
关键词:Black spruce growth Boreal biome Carbon allocation Ecophysiological mechanisms Forested peatland Paludification Stable isotope Water use efficiency 
Assessment of VIIRS 375 m active fire using tropical peatland combustion algorithm applied to Landsat-8 over Indonesia’s peatlands
《International Journal of Digital Earth》2020年第12期1695-1716,共22页Parwati Sofan David Bruce Wilfrid Schroeder Eriita Jones Jackie Marsden 
This research was funded by STEM-University of South Australia under scholarship programme of Research and Innovation in Science and Technology Project(RISET-Pro)in Ministry of Research,Technology and Higher Edu-cation of the Republic of Indonesia(Kemenristekdikti)with World Bank Loan No.8245-ID.
VIIRS 375 m active fire data(VNP14IMG),the highest spatial resolution available cost-free fire product,were assessed for representing fire in typical degraded tropical peatlands in Indonesia.The results of applying th...
关键词:Active fire assessment VIIRS 375 m active fire(VNP14IMG) ToPeCAlLandsat-8 peatland fires 
Net primary productivity and its control of the Middle Jurassic peatlands: An example from the southern Junggar coalfield被引量:5
《Science China Earth Sciences》2018年第11期1633-1643,共11页Yanan LI Longyi SHAO Zhiming YAN Haihai HOU Yue TANG David J.LARGE 
supported by the National Natural Science Foundation of China (Grant No. 41572090);the China Geological Survey Project (Grant No. DD20160204-YQ17W01)
The Jurassic is an important period of global coal formation, including the development of several large coalfields in central Asia and northern China. Individual seams within these peatlands represent sustained perio...
关键词:PEATLAND Middle Jurassic Milankovitch cycle Net primary productivity Mid-latitude region PALEOCLIMATE 
Characterization and Comparison of Microbial Soil Diversity in Two Andean Peatlands in Different States of Conservation-Vega Tocorpuri
《Journal of Geoscience and Environment Protection》2018年第4期194-210,共17页Carolina Belfiore Ana Fernandez Ana Paula Santos Manuel Contreras María Eugenia Farías 
Cerro Tocorpuri, belongs to the II region of Chile, in San Pedro de Atacama, on the border of Chile-Bolivia. The presence of a more or less constant supply of water conditions the existence of characteristic vegetatio...
关键词:PEATLAND MICROBIAL DIVERSITY ALTERED SOIL 
Methane emissions from natural and drained peatlands in the Zoigê, eastern Qinghai-Tibet Plateau被引量:7
《Journal of Forestry Research》2017年第3期539-547,共9页Wenchang Zhou Lijuan Cui Yifei Wang Wei Li 
financially supported by Grant Projects on Clean Development Mechanism in China(No.2012076);the special basic scientific research expenses from Research Institute of Forestry New Technology,Chinese Academy of Forestry(No.CAFINT2014K06)
Peatlands are one of the major natural sources of methane (CH4), but the level of CH4 efflux is uncertain, especially in alpine peatlands. In this study, CH4 emission fluxes from natural and drained peatlands on the...
关键词:Drainage CH4 emission PEATLAND Zoige PLATEAU 
Temperature Responses to Infrared-Loading and Water Table Manipulations in Peatland Mesocosms被引量:2
《Journal of Integrative Plant Biology》2008年第11期1484-1496,共13页Jiquan Chen Scott Bridgham Jason Keller John Pastor Asko Noormets Jake F.Weltzin 
Supported by the National Science Foundation (DEB9707426).
We initiated a multi-factor global change experiment to explore the effects of infrared heat loading (HT) and water table level (WL) treatment on soil temperature (T) in bog and fen peatland mesocosms. We found ...
关键词:global change INFRARED MESOCOSM PEATLANDS warming experiment water table. 
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