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Showing items 1 through 9 of 9.ELD Initiative: User Guide_A 6+1 step approach to assess the economics of land management
In this issue: ELD CA National teams defined and visited pilot research sites. ELD CA Initiative presented at the International Water Forum of Mountain Countries. ELD CA National teams defined ecosystem services and their valuation methods.
With around one third of the world’s arable land degraded, estimated annual losses of 6.3 to 10.6 USD trillion, and a projected need to increase food production from land by 70 per cent by 2050, we simply cannot afford to neglect the loss of potential production from careless land management.
In this issue: the meeting in Antalya laid the foundation for the implementation of the ELD Initiative in Central Asia. The ELD CA Initiative held a working meeting in Ashgabat. Communication issues have been identified. A working meeting of the group of Tajik specialists.
Land degradation and desertification are among the biggest environmental challenges of our time. In the last 40 years, we lost nearly a third of the world’s arable farmland due to erosion, just as the number of people to be fed from it almost doubled.
As the world’s population continues to rise, there is
an ever increasing demand for our land to produce
a diverse range of products such as food, timber,
and fuel. Our growing need for these goods is
leading to higher levels of competition between
Jordanian rangelands are a source of valued livestock produce, carbon storage, biodiversity, and medicinal plants. They also serve as watersheds that receive rainfall, yield surface water, and replenish groundwater throughout the area east and south of the western Jordan highlands.
The Kelka forest in the Mopti region of Mali is important for the provision of ecosystem services like carbon sequestration and maintenance of the hydrological cycle. The Kelka forest area occupies more than 300, 000 hectares with 15
Soil erosion and deposition values were estimated using pixel based landscape information and the Unit Stream Power Erosion Deposition (USPED) model, which works with the Universal Soil Loss Equation (USLE) parameters.
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