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Ash application enhances decomposition of recalcitrant organic matter
Louise Hindborg Mortensen
*
, Carla Cruz-Paredes, Olaf Schmidt, Regin Rønn, Mette Vestergård
*
Corresponding author for this work
Terrestrial Ecology
3
Citations (Scopus)
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Dive into the research topics of 'Ash application enhances decomposition of recalcitrant organic matter'. Together they form a unique fingerprint.
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Agriculture & Biology
organic matter
96%
manganese peroxidase
70%
degradation
65%
fungi
64%
combustion
57%
mosses and liverworts
52%
mites
49%
whole tree harvesting
43%
Mesostigmata
35%
nutrients
31%
temporal variation
28%
microbial activity
27%
mineralization
26%
soil pH
26%
biofuels
25%
plantations
22%
lignin
21%
fertilizers
20%
ecosystems
20%
biomass
16%
nitrogen
15%
dosage
13%
testing
10%
Medicine & Life Sciences
manganese peroxidase
100%
Fungi
96%
Bryophyta
84%
Mites
66%
Nutrients
45%
Fertilizers
41%
Lignin
41%
Biofuels
37%
Biomass
32%
Ecosystem
29%
Soil
28%
Nitrogen
26%
Earth & Environmental Sciences
ash
87%
decomposition
76%
organic matter
71%
fungus
28%
turnover
22%
mite
21%
moss
17%
manganese
14%
combustion
12%
tree biomass
11%
nutrient
10%
experiment
9%
lignin
8%
biofuel
8%
microbial activity
7%
plantation
7%
fertilizer
7%
temporal variation
6%
mineralization
6%
dose
6%
nitrogen
4%
indicator
4%
ecosystem
4%
removal
4%
soil
3%
test
3%