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DOI10.1029/2018GB006051
Increased Global Land Carbon Sink Due to Aerosol-Induced Cooling
Zhang, Yuan; Goll, Daniel; Bastos, Ana; Balkanski, Yves; Boucher, Olivier; Cescatti, Alessandro; Collier, Mark; Gasser, Thomas; Ghattas, Josefine; Li, Laurent; Piao, Shilong; Viovy, Nicolas; Zhu, Dan; Ciais, Philippe
发表日期2019-03-01
ISSN0886-6236
EISSN1944-9224
卷号33期号:3页码:439-457
英文摘要Anthropogenic aerosols have contributed to historical climate change through their interactions with radiation and clouds. In turn, climate change due to aerosols has impacted the C cycle. Here we use a set of offline simulations made with the Organising
学科领域Environmental Sciences;Geosciences, Multidisciplinary;Meteorology & Atmospheric Sciences
语种英语
WOS记录号WOS:000464651600011
来源期刊GLOBAL BIOGEOCHEMICAL CYCLES
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/80309
作者单位CEA CNRS UVSQ, IPSL, LSCE, Gif Sur Yvette, France
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Zhang, Yuan,Goll, Daniel,Bastos, Ana,et al. Increased Global Land Carbon Sink Due to Aerosol-Induced Cooling[J],2019,33(3):439-457.
APA Zhang, Yuan.,Goll, Daniel.,Bastos, Ana.,Balkanski, Yves.,Boucher, Olivier.,...&Ciais, Philippe.(2019).Increased Global Land Carbon Sink Due to Aerosol-Induced Cooling.GLOBAL BIOGEOCHEMICAL CYCLES,33(3),439-457.
MLA Zhang, Yuan,et al."Increased Global Land Carbon Sink Due to Aerosol-Induced Cooling".GLOBAL BIOGEOCHEMICAL CYCLES 33.3(2019):439-457.
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