Property:HasFormattedReference
Jump to navigation
Jump to search
V
Z. Vrontisi, G. Luderer, B. Saveyn, K. Keramidas, A.R. Lara, L. Baumstark, C. Bertram, H.S. De Boer, L. Drouet, K. Fragkiadakis, O. Fricko, S. Fujimori, C. Guivarch, A. Kitous, V. Krey, E. Kriegler, E.Ó. Broin, L. Paroussos, D. Van Vuuren (2018).
Enhancing global climate policy ambition towards a 1.5 °c stabilization: A short-term multi-model assessment. ''Environmental Research Letters'', ''13''(4), doi: http://dx.doi.org/10.1088/1748-9326/aab53e. +
Q. C. Vuong, A. F. Hof, H. H. Bülthoff, I. M. Thornton (2006).
An advantage for detecting dynamic targets in natural scenes. ''Journal of Vision'', ''6''(1), pp. 87-96, doi: http://dx.doi.org/10.1167/6.1.2. +
C.J. Vörösmarty, P. Green, J. Salisbury, R. B. Lammers (2000).
Global water resources: Vulnerability from climate change and population growth. ''Science'', ''289''(5477), pp. 284-288. +
W
WHO (2002).
''The World Health Report 2002: Reducing risks, promoting healthy life'', World Health Organization, Geneva. +
WHO (2009).
''Global health risks: Mortality and burden of disease attributable to selected major risks'', World Health Organization, Geneva. +
WHO/UNICEF (2012).
''Joint monitoring programme for water and sanitation: 2011 update'', World Health Organization/UNICEF. +
WMO/UNEP (2013).
''Integrated assessment of black carbon and tropospheric ozone'', WMO/UNEP. +
Y. Wada, L. P. H. van Beek, D. Viviroli, H. H. Dürr, R. Weingartner, M. F. P. Bierkens (2011).
Global monthly water stress: 2. Water demand and severity of water stress. ''Water Resources Research'', ''47'', pp. W07518, doi: http://dx.doi.org/10.1029/2010WR009792. +
K. Waha, L.G.J. van Bussel, C. Müller, A. Bondeau (2012).
Climate-driven simulation of global crop sowing dates. ''Global Ecology and Biogeography'', ''21''(2), pp. 247-259, doi: http://dx.doi.org/10.1111/j.1466-8238.2011.00678.x. +
B. Walsh, P. Ciais, I.A. Janssens, J. Peñuelas, K. Riahi, F. Rydzak, D.P. Van Vuuren, M. Obersteiner (2017).
Pathways for balancing CO2 emissions and sinks. ''Nature Communications'', ''8'', doi: http://dx.doi.org/10.1038/ncomms14856. +
Lijun Wang (2014).
Energy efficiency technologies for sustainable food processing. ''Energy Efficiency'', ''7'', pp. 791–810, doi: http://dx.doi.org/https://doi.org/10.1007/s12053-014-9256-8. +
P. J. Ward, B. Jongman, F. Sperna Weiland, A. A. Bouwman, R. van Beek, M.F.P. Bierkens, W. Ligtvoet, H. C. Winsemius (2013).
Assessing flood risk at the global scale: model setup, results, and sensitivity. ''Environmental Research Letters'', ''8'', pp. 8044019, doi: http://dx.doi.org/10.1088/1748-9326/8/4/044019. +
R. Warren, M. D. Mastrandrea, C. Hope, A. F. Hof (2010).
Variation in the climatic response to SRES emissions scenarios in integrated assessment models. ''Climatic Change'', ''102''(3), pp. 671-685, doi: http://dx.doi.org/10.1007/s10584-009-9769-x. +
M.J. Weijters, J.H. Janse, R. Alkemade, J. T. A. Verhoeven (2009).
Quantifying the effect of catchment land use and water nutrient concentrations on freshwater river and stream biodiversity. ''Aquatic Conservation: Marine and Freshwater Ecosystems'', ''19''(1), pp. 104-112, doi: http://dx.doi.org/10.1002/aqc.989. +
C.O. Wene (2000).
''Experience curves for energy technology policy'', OECD/IEA, Paris, France. +
H. Westhoek, E. Stehfest, M. Berg van den, G Woltjer (in preparation).
Effects on global agricultural greenhouse gas emissions from changes in EU diets and husbandry systems. ''Animals - in preparation; available on request''. +
B. Wicke, P. Verweij, H. Van Meijl, D. P. Van Vuuren, A. P. C. Faaij (2012).
Indirect land use change: Review of existing models and strategies for mitigation. ''Biofuels'', ''3''(1), pp. 87-100, doi: http://dx.doi.org/10.4155/bfs.11.154. +
B. Wicke, F. van der Hilst, V. Daioglou, M. Banse, T. Beringer, S. Gerssen-Gondelach, S. Heijnen, D. Karssenberg, D. Laborde, M. Lippe, H. van Meijl, A. Nassar, J. Powell, A. G. Prins, S. N. K. Rose, E. M. W. Smeets, E. Stehfest, W. E. Tyner, J. A. Verstegen, H. Valin, D. P. van Vuuren, S. Yeh, A. P. C. Faaij (2015).
Model collaboration for the improved assessment of biomass supply, demand, and impacts. ''GCB Bioenergy'', ''7''(3), pp. 422-437, doi: http://dx.doi.org/10.1111/gcbb.12176. +
H. Winkler, N. Höhne, M. den Elzen (2008).
Methods for quantifying the benefits of sustainable development policies and measures (SD-PAMs). ''Climate Policy'', ''8''(2), pp. 119-134, doi: http://dx.doi.org/10.3763/cpol.2007.0433.8.2.119. +