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A Rusch, M Valatin-Morison, J.P. Sarthou, J Roger-Estrade (2011). Effects of crop management and lanscape context on insect pest populations and crop damage. ''Agriculture, Ecosystems & Environment'', ''166'', pp. 118-125, doi: http://dx.doi.org/10.1016/j.agee.2011.05.004.  +
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S&P Global Market Intelligence (2017). ''World Electric Power Plants Database, March 2017''.Harvard Dataverse.URL: https://doi.org/10.7910/DVN/OKEZ8A  +
sCBD (2010). ''Strategic action plan for biodiversity 2011-2020 and the Aichi targets''.secretariat of the Convention on Biological Diversity.Montreal, Canada.  +
F. Salvagiotti, K. G. Cassman, J. E. Specht, D. T. Walters, A. Weiss, A. Dobermann (2008). Nitrogen uptake, fixation and response to fertilizer N in soybeans: A review. ''Field Crops Research'', ''108''(1), pp. 1-13.  +
M.J. Santos, S.C. Dekker, V. Daioglou, M.C. Braakhekke, D.P. van Vuuren (2017). Modeling the effects of future growing demand for charcoal in the tropics. ''Frontiers in Environmental Science'', ''5''(JUN), doi: http://dx.doi.org/10.3389/fenvs.2017.00028.  +
S. Z. Sattari, A. F. Bouwman, K. E. Giller, M. K. Van Ittersum (2012). Residual soil phosphorus as the missing piece in the global phosphorus crisis puzzle. ''Proceedings of the National Academy of Sciences of the United States of America'', ''109''(16), pp. 6348-6353, doi: http://dx.doi.org/10.1073/pnas.1113675109.  +
S. Z. Sattari, M. K. van Ittersum, A. F. Bouwman, A. L. Smit, B. H. Janssen (2014). Crop yield response to soil fertility and N, P, K inputs in different environments: Testing and improving the QUEFTS model. ''Field Crops Research'', ''157'', pp. 35-46, doi: http://dx.doi.org/10.1016/j.fcr.2013.12.005.  +
S. Z. Sattari, M. K. Van Ittersum, K. E. Giller, F. Zhang, A. F. Bouwman (2014). Key role of China and its agriculture in global sustainable phosphorus management. ''Environmental Research Letters'', ''9''(5), doi: http://dx.doi.org/10.1088/1748-9326/9/5/054003.  +
S. Z. Sattari, A. F. Bouwman, R. Martinez Rodríguez, A. H. W. Beusen, M. K. Van Ittersum (2016). Negative global phosphorus budgets challenge sustainable intensification of grasslands. ''Nature Communications'', ''7'', doi: http://dx.doi.org/10.1038/ncomms10696.  +
M. Schaeffer, B. Eickhout, M. Hoogwijk, B. Strengers, D. van Vuuren, R. Leemans, T. Opsteegh (2006). CO2 and albedo climate impacts of extratropical carbon and biomass plantations. ''Global Biogeochemical Cycles'', ''20''(2), doi: http://dx.doi.org/10.1029/2005GB002581.  +
M. Schaeffer, B. Eickhout, M. Hoogwijk, B. Strengers, D. van Vuuren, R. Leemans, T. Opsteegh (2007). The albedo climate impacts of biomass and carbon plantations compared with the co2 impact, ''Human-Induced Climate Change: An Interdisciplinary Assessment'', pp. 72-83, URL: 10.1017/CBO9780511619472.008.  +
M. Schaeffer, T. Kram, M. Meinshausen, D. P. Van Vuuren, W. L. Hare (2008). Near-linear cost increase to reduce climate-change risk. ''Proceedings of the National Academy of Sciences of the United States of America'', ''105''(52), pp. 20621-20626, doi: http://dx.doi.org/10.1073/pnas.0802416106.  +
M. Schaeffer, L. Gohar, E. Kriegler, J. Lowe, K. Riahi, D. van Vuuren (2015). Mid- and long-term climate projections for fragmented and delayed-action scenarios. ''Technological Forecasting and Social Change'', ''90''(PA), pp. 257-268, doi: http://dx.doi.org/10.1016/j.techfore.2013.09.013.  +
S. Schaphoff, U. Heyder, S. Ostberg, D. Gerten, J. Heinke, W. Lucht (2013). Contribution of permafrost soils to the global carbon budget. ''Environmental Research Letters'', ''8''(1), pp. 014026, doi: http://dx.doi.org/10.1088/1748-9326/8/1/014026.  +
Sibyll Schaphoff, Werner von Bloh, Anja Rammig, Kirsten Thonicke, Hester Biemans, Matthias Forkel, Dieter Gerten, Jens Heinke, Jonas Jägermeyr, Jürgen Knauer, Fanny Langerwisch, Wolfgang Lucht, Christoph Müller, Susanne Rolinski, and Katharina Waha (2018). LPJmL4 – a dynamic global vegetation model with managed land – Part 1: Model description. ''Geoscientific Model Development'', ''11'', pp. 1343–1375, doi: http://dx.doi.org/https://doi.org/10.5194/gmd-11-1343-2018.  +
Sibyll Schaphoff, Matthias Forkel, Christoph Müller, Jürgen Knauer, Werner von Bloh, Dieter Gerten, Jonas Jägermeyr, Wolfgang Lucht, Anja Rammig, Kirsten Thonicke, and Katharina Waha (2018). LPJmL4 – a dynamic global vegetation model with managed land – Part 2: Model evaluation. ''Geoscientific Model Development'', ''11'', pp. 1377–1403, doi: http://dx.doi.org/https://doi.org/10.5194/gmd-11-1377-2018.  +
Schipper A.M., Hilbers J.P., Meijer J.R., Antão L.H., Benítez-López A., de Jonge M.M.J., Leemans L.H., Scheper E., Alkemade R., Doelman J.C., Mylius S., Stehfest E., van Vuuren D.P., van Zeist W.-J. (2020). Projecting terrestrial biodiversity intactness with GLOBIO 4. ''Global Change Biology'', ''26''(2), pp. 760-771, doi: http://dx.doi.org/10.1111/gcb.14848.  +
M.E. Schlesinger, S. Malyshev, E.V. Rozanov, F. Yang, N.G. Andronova, B. De Vries, A. Grübler, K. Jiang, T. Masui, T. Morita, J. Penner, W. Pepper, A. Sankovski, Y. Zhang (2000). Geographical Distributions of Temperature Change for Scenarios of Greenhouse Gas and Sulfur Dioxide Emissions. ''Technological Forecasting and Social Change'', ''65''(2), pp. 167-193, doi: http://dx.doi.org/10.1016/S0040-1625(99)00114-6.  +
K. Schmidinger, E. Stehfest (2012). Including CO2 implications of land occupation in LCAs-method and example for livestock products. ''International Journal of Life Cycle Assessment'', ''17''(8), pp. 962-972, doi: http://dx.doi.org/10.1007/s11367-012-0434-7.  +
R.J. Scholes, R. Biggs (2005). A biodiversity intactness index. ''Nature'', ''434'', pp. 45-49.  +