Global Change Biology, 1354-1013

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  1. Shrub expansion may reduce summer permafrost thaw in Siberian tundra

    Blok, D., Heijmans, M. M. P. D., Schaepman-Strub, G., Kononov, A. V., Maximov, T. C. & Berendse, F., 2010, In : Global Change Biology. 16, 4, p. 1296-1305

    Research output: Contribution to journalArticle

  2. Contrasting above- and belowground organic matter decomposition and carbon and nitrogen dynamics in response to warming in High Arctic tundra

    Blok, D., Faucherre, S., Banyasz, I., Rinnan, R., Michelsen, A. & Elberling, B., 2018 Jun 1, In : Global Change Biology. 24, 6, p. 2660-2672 13 p.

    Research output: Contribution to journalArticle

  3. Comparing the performance of different stomatal conductance models using modelled and measured plant carbon isotope ratios (δ(13) C): implications for assessing physiological forcing

    Bodin, P., Gagen, M., McCarroll, D., Loader, N. J., Jalkanen, R., Robertson, I., R Switsur, V., Waterhouse, J. S., Woodley, E. J., Young, G. H. F. & Alton, P., 2013, In : Global Change Biology. 19, 6, p. 1709-1719

    Research output: Contribution to journalArticle

  4. Modelling the role of agriculture for the 20th century global terrestrial carbon balance

    Bondeau, A., Smith, P. C., Zaehle, S., Schaphoff, S., Lucht, W., Cramer, W., Gerten, D., Reichstein, M. & Benjamin Smith, 2007, In : Global Change Biology. 13, 3, p. 679-706

    Research output: Contribution to journalReview article

  5. Biotic interactions modify multiple-stressor effects on juvenile brown trout in an experimental stream food web

    Bruder, A., Romana K. Salis, Jones, P. E. & Matthaei, C. D., 2017 Sep 1, In : Global Change Biology. 23, 9, p. 3882-3894

    Research output: Contribution to journalArticle

  6. Enhanced summer warming reduces fungal decomposer diversity and litter mass loss more strongly in dry than in wet tundra

    Christiansen, C. T., Haugwitz, M. S., Priemé, A., Nielsen, C. S., Elberling, B., Michelsen, A., Grogan, P. & Blok, D., 2017 Jan, In : Global Change Biology. 23, 1, p. 406-420

    Research output: Contribution to journalArticle

  7. Temperature and soil C decomposition – synthesis of current knowledge and a way forward

    Conant, R. T., Ågren, G. I., Birge, H. E., Bradford, M. A., Davidson, E. A., Eliasson, P., Evans, S. E., Frey, S. D., Giardina, C. P., Hopkins, F., Hyvönen, R., Kirschbaum, M. U. F., Lavallee, J. M., Leifeld, J., Parton, W. J., Steinweg, J. M., Wallenstein, M. D., Wetterstedt, J. A. M. & Ryan, M. G., 2011, In : Global Change Biology. 17, 11, p. 3392-3404

    Research output: Contribution to journalArticle

  8. Deforestation causes increased dissolved silicate losses in the Hubbard Brook Experimental Forest

    Daniel Conley, Likens, G. E., Buso, D. C., Saccone, L., Bailey, S. W. & Johnson, C. E., 2008, In : Global Change Biology. 14, 11, p. 2548-2554

    Research output: Contribution to journalArticle

  9. Global response of terrestrial ecosystem structure and function to CO2 and climate change: results from six dynamic global vegetation models

    Cramer, W., Bondeau, A., Woodward, FI., Prentice, IC., Betts, RA., Brovkin, V., Cox, PM., Fisher, V., Foley, JA., Friend, AD., Kucharik, C., Lomas, MR., Ramankutty, N., Sitch, S., Benjamin Smith, White, A. & Young-Molling, C., 2001, In : Global Change Biology. 7, p. 357-373

    Research output: Contribution to journalArticle

  10. Global change-driven effects on dissolved organic matter composition: Implications for food webs of northern lakes

    Creed, I. F., Bergström, A. K., Trick, C. G., Grimm, N. B., Hessen, D. O., Karlsson, J., Kidd, K. A., Kritzberg, E., Mcknight, D. M., Freeman, E. C., Senar, O. E., Andersson, A., Ask, J., Berggren, M., Cherif, M., Giesler, R., Hotchkiss, E. R., Kortelainen, P., Palta, M. M., Vrede, T. & 1 othersWeyhenmeyer, G. A., 2018 Aug, In : Global Change Biology. 24, 8, p. 3692-3714

    Research output: Contribution to journalArticle

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