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The fate of
13
C
15
N labelled glycine in permafrost and surface soil at simulated thaw in mesocosms from high arctic and subarctic ecosystems
Nynne Marie Rand Ravn,
Bo Elberling
,
Anders Michelsen
*
*
Corresponding author for this work
Geography
Terrestrial Ecology
6
Citations (Scopus)
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Dive into the research topics of 'The fate of
13
C
15
N labelled glycine in permafrost and surface soil at simulated thaw in mesocosms from high arctic and subarctic ecosystems'. Together they form a unique fingerprint.
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Agriculture & Biology
permafrost
100%
Arctic region
68%
glycine (amino acid)
62%
ecosystems
49%
soil
33%
Salix
31%
ecosystem respiration
21%
Tetragona
20%
Arctica (Arcticidae)
18%
microorganisms
17%
nutrients
15%
soil microorganisms
14%
organic compounds
14%
thawing
13%
vegetation
9%
prediction
8%
uptake mechanisms
8%
carbon
8%
degradation
7%
amino acids
7%
methodology
3%
Earth & Environmental Sciences
Arctic ecosystem
91%
mesocosm
73%
permafrost
64%
soil surface
57%
ecosystem
38%
nutrient
21%
soil column
18%
thawing
17%
carbon flux
17%
distribution
17%
amino acid
15%
respiration
14%
organic compound
14%
microorganism
12%
substrate
11%
degradation
10%
vegetation
9%
prediction
8%
method
3%