Carsten W. Müller
Associate Professor
Geography 1
Øster Voldgade 10
1350 København K
ORCID: 0000-0003-4119-0544
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Substitution of mineral fertilizers with biogas digestate plus biochar increases physically stabilized soil carbon but not crop biomass in a field trial
Greenberg, I., Kaiser, M., Gunina, A., Ledesma, P., Polifka, S., Wiedner, K., Mueller, Carsten W., Glaser, B. & Ludwig, B., 2019, In: Science of the Total Environment. 680, p. 181-189 9 p.Research output: Contribution to journal › Journal article › Research › peer-review
Soil Organic Matter and Phosphate Sorption on Natural and Synthetic Fe Oxides under in Situ Conditions
Dorau, K., Pohl, L., Just, C., Höschen, C., Ufer, K., Mansfeldt, T. & Mueller, Carsten W., 2019, In: Environmental Science and Technology. 53, 22, p. 13081-13087 7 p.Research output: Contribution to journal › Journal article › Research › peer-review
Soil organic carbon stability in forests: Distinct effects of tree species identity and traits
Angst, G., Mueller, K. E., Eissenstat, D. M., Trumbore, S., Freeman, K. H., Hobbie, S. E., Chorover, J., Oleksyn, J., Reich, P. B. & Mueller, Carsten W., 2019, In: Global Change Biology. 25, 4, p. 1529-1546 18 p.Research output: Contribution to journal › Journal article › Research › peer-review
Earthworms act as biochemical reactors to convert labile plant compounds into stabilized soil microbial necromass
Angst, G., Mueller, Carsten W., Prater, I., Angst, Š., Frouz, J., Jílková, V., Peterse, F. & Nierop, K. G. J., 2019, In: Communications Biology. 2, 1, 441.Research output: Contribution to journal › Journal article › Research › peer-review
ID: 238719274
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Differences in labile soil organic matter explain potential denitrification and denitrifying communities in a long-term fertilization experiment
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Synergies between mycorrhizal fungi and soil microbial communities increase plant nitrogen acquisition
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Particulate organic matter as a functional soil component for persistent soil organic carbon
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