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Temp ▲6˚c ▲7˚c.
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/media/ces/Alam_Ashraful_CES_2010.pdf
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/media/loftslag/Hare-2011-ParticipatoryModelling.pdf
such as
irrigation, CO2 effects on transpiration, and land use changes affect the water balance to a
lesser extent.
Citation: van Roosmalen, L., T. O. Sonnenborg, and K. H. Jensen (2009), Impact of climate and land use change on the hydrology of
a large-scale agricultural catchment, Water Resour. Res., 45, W00A15, doi:10.1029/2007WR006760.
1. Introduction
[2] The most recent Intergovernmental Panel
/media/loftslag/vanRoosmalen_etal-2009-WRR_2007WR006760.pdf
of different country groupings in 2004. The
percentages in the bars in both panels indicate a region’s share in global GHG emissions. {WGIII Figures SPM.3a, SPM.3b}
Regional distribution of GHG emissions by population and by GDPPPP
and M&Tand M&
T
sectoral sources of GHGs in 2004 are considered in Figure 2.1c.
{WGIII 1.3, SPM}
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intensity
/media/loftslag/IPPC-2007-ar4_syr.pdf
/lexuriserv/lexuriserv.do?uri=com:2007:0002:FIN:EN:PDF, 13
April 2009.
[2] WTO, World Tourism Organization (2008): “Climate Change and Tourism -
Responding to Global Challenges”, UNWTO, 9 July 2008, Madrid, Spain.
Available at:
http://www.unwto.org/media/news/en/press_det.php?id=1411&idioma=E, 7
March 2010.
[3] Mooney, J.E. y Miller, M.L. (2009): “Climate change: Creating demand for
sustainable
/media/loftslag/ECONOMIC_EFFECTS_OF_CLIMATE_CHANGE_ON_THE_TOURISM_SECTOR_IN_SPAIN.pdf
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/media/loftslag/2012-Refsgaard_etal-uncertainty_climate-change-adaptation-MITI343.pdf
Energy source
- Catchment area
- Collection area
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2. Power Plant
- Technique
- Maintenance
- Personnel
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902/07/2010
Tools for risk/opportunity identification
very likely
2.1 - M o re rainfall:
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/media/ces/Keranen_Jaana_CES_2010.pdf
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