Anders Tunlid
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- 2018
-
Mark
Fenton reaction facilitates organic nitrogen acquisition by an ectomycorrhizal fungus
- Contribution to journal › Article
-
Mark
Generation of hydroxyl radicals from reactions between a dimethoxyhydroquinone and iron oxide nanoparticles
- Contribution to journal › Article
-
Mark
The soil organic matter decomposition mechanisms in ectomycorrhizal fungi are tuned for liberating soil organic nitrogen
(2018) In ISME Journal
- Contribution to journal › Article
-
Mark
Ferrihydrite Nanoparticle Aggregation Induced by Dissolved Organic Matter
- Contribution to journal › Article
- 2017
-
Mark
Mineral surface-reactive metabolites secreted during fungal decomposition contribute to the formation of soil organic matter
- Contribution to journal › Article
-
Mark
Oxidation of a Dimethoxyhydroquinone by Ferrihydrite and Goethite Nanoparticles : Iron Reduction versus Surface Catalysis
- Contribution to journal › Article
-
Mark
Chemical changes in organic matter after fungal colonization in a nitrogen fertilized and unfertilized Norway spruce forest
- Contribution to journal › Article
- 2016
-
Mark
Ectomycorrhizal fungi decompose soil organic matter using oxidative mechanisms adapted from saprotrophic ancestors.
- Contribution to journal › Article
-
Mark
Soil organic matter decomposition mechanisms in ectomycorrhizal fungi
(2016) p.257-275
- Chapter in Book/Report/Conference proceeding › Book chapter
- 2015
-
Mark
Evidence for Positive Selection within the PgiC1 Locus in the Grass Festuca ovina.
- Contribution to journal › Article
