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Modelling the sensitivity of soil mercury storage to climate-induced changes in soil carbon pools
O. Hararuk, D. Obrist,
Y. Luo
Research output
:
Contribution to journal
›
Article
›
peer-review
26
Scopus citations
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Dive into the research topics of 'Modelling the sensitivity of soil mercury storage to climate-induced changes in soil carbon pools'. Together they form a unique fingerprint.
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Agriculture & Biology
soil carbon
100%
carbon sinks
99%
mercury
85%
climate
65%
soil
41%
carbon dioxide
20%
atmospheric deposition
7%
global change
6%
edaphic factors
5%
soil organic carbon
5%
anthropogenic activities
5%
simulation models
5%
clay
4%
air temperature
4%
temperature
4%
coasts
4%
Earth & Environmental Sciences
soil carbon
84%
mercury
67%
climate
44%
soil
35%
modeling
34%
regional pattern
5%
terrestrial environment
5%
atmospheric deposition
5%
global change
4%
effect
4%
soil surface
4%
simulation
4%
air temperature
3%
carbon dioxide
3%
human activity
3%
organic carbon
3%
temperature
3%
clay
3%
coast
2%
land
2%