MARTINEZ, CRISTINA

MARTINEZ, CRISTINA  

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Risultati 1 - 13 di 13 (tempo di esecuzione: 0.008 secondi).
Data di pubblicazione Titolo Autore(i) Tipo File
1-gen-2017 Anthropogenic charcoal-rich soils of the XIX century reveal that biochar leads to enhanced fertility and fodder quality of alpine grasslands Criscuoli, I.; Baronti, S.; Alberti, G.; Rumpel, C.; Giordan, M.; Camin, F.; Ziller, L.; Martinez, C.; Pusceddu, E.; Miglietta, F. Articolo in rivista
1-gen-2016 Belowground carbon allocation patterns as determined by the in-growth soil core 13C technique across different ecosystem types Martinez, C.; Alberti, G.; Cotrufo, M.F.; Magnani, F.; Zanotelli, D.; Camin, F.; Gianelle, D.; Cescatti, A.; Rodeghiero, M. Articolo in rivista
1-gen-2016 Belowground carbon allocation patterns as determined by the in-growth. Soil core 13C technique across different ecosystem types Martinez, C.; Alberti, G.; Cotrufo, M.F.; Magnani, F.; Zanotelli, D.; Camin, F.; Gianelle, D.; Cescatti, A.; Rodeghiero, M. Abstract in Atti di convegno
1-gen-2014 Carbon Sequestration and Fertility after Centennial Time Scale Incorporation of Charcoal into Soil Criscuoli, I.; Alberti, G.; Baronti, S.; Favilli, F.; Martinez, C.; Calzolari, C.; Pusceddu, E.; Rumpel, C.; Viola, R.; Miglietta, F. Articolo in rivista
1-gen-2012 Components of forest soil CO2 efflux as estimated from 14C values of SOM Rodeghiero, M.; Hakkenberg, R.; Churkina, G.; Martinez, C.; Scholten, T.; Cescatti, A. Poster
1-gen-2013 Components of forest soil CO2 efflux estimated from Δ14C values of soil organic matter Rodeghiero, M.; Churkina, G.; Martinez, C.; Scholten, T.; Gianelle, D.; Cescatti, A. Articolo in rivista
1-gen-2014 Current status, uncertainty and future needs in soil organic carbon monitoring Jandl, R.; Rodeghiero, M.; Martinez, C.; Cotrufo, M.F.; Bampa, F.; Van Wesemael, B.; Harrison, R.B.; Guerrini, I.A.; Richter, D.; Rustad, L.; Lorenz, K.; Chabbi, A.; Miglietta, F. Articolo in rivista
1-gen-2013 Different ecosystem types show similar trends in plant rhizodeposition as determined by 13C natural abundance Rodeghiero, M.; Martinez, C.; Camin, F.; Gianelle, D. Abstract in Atti di convegno
1-gen-2013 Ecosystem carbon partitioning: aboveground net primary productivity correlates with the root carbon input in different land use types of Southern Alps Rodeghiero, M.; Martinez, C.; Gianelle, D.; Camin, F.; Zanotelli, D.; Magnani, F. Abstract in Atti di convegno
1-gen-2012 Measuring plant below-ground carbon imputs using 13C natural abundance method : comparison between different use land types Rodeghiero, M.; Martinez, C.; Camin, F.; Cotrufo, F.; Zanotelli, D.; Gianelle, D. Abstract in Atti di convegno
1-gen-2013 Net root C input as determined by C natural abundance correlates with aboveground net primary productivity across different ecosystem types Martinez, C.; Alberti, G.; Cotrufo, M.F.; Cescatti, A.; Magnani, F.; Camin, F.; Zanotelli, D.; Gianelle, D.; Rodeghiero, M. Poster
1-gen-2015 Soil C:N stoichiometry controls carbon sink partitioning between above-ground tree biomass and soil organic matter in high fertility forests Alberti, G.; Vicca, S.; Inglima, I.; Belelli Marchesini, L.; Genesio, L.; Miglietta, F.; Marjanovic, H.; Martinez, C.; Matteucci, G.; D'Andrea, E.; Peressotti, A.; Petrella, F.; Rodeghiero, M.; Cotrufo, M.F. Articolo in rivista
1-gen-2011 The role of ground reference data collection in the prediction of stem volume with LiDAR data in mountain areas Dalponte, M.; Martinez, C.; Rodeghiero, M.; Gianelle, D. Articolo in rivista