FP7Reintegration grant2013–2018

LanDDApp · A Land Degradation and Desertification Appraisal System for South Africa

FP7 — People (Marie Curie Actions)

Duration
2013-05-01 → 2018-02-19
EU contribution
€100,000
Participants
1
Scheme
MC-CIG

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Results in brief

A Land Degradation and Desertification Appraisal System for South Africa

Land degradation and desertification (LDD) is a serious global threat to humans and the environment. Globally, 10-20% of drylands and 24% of the world’s productive lands are potentially degraded, which affects 1.5 billion people and reduces GDP by €3.4 billion. Large parts of southern African arid, semi-arid and sub-humid areas are considered to be undergoing severe degradation processes, such as forest degradation, deforestation and bush encroachment that affect up to a third of the area, leading to a decline in the ecosystem services provided to some of the continent’s poorest and most vulnerable communities. There is, therefore, a pressing need for an objective, repeatable, systematic and spatially explicit measure of land degradation over the region and this is why the main aim of the LanDDApp project was to develop an appraisal system for assessing LDD in the southern African region. According to some assessments, only in South Africa bush encroachment, i.e. the advancement of woody plants into grasslands, and the subsequent conversion of savannahs and open woodlands into shrublands, has rendered 1.1 million ha of savannah unusable, it threatens another 27 million ha (~17% of the country), and has reduced the grazing capacity throughout the region by up to 50%. For this reason, one of the key objectives of LanDDApp was to devise an accurate methodology for mapping and monitoring bush encroachment using open access Earth Observation (EO) data. The use of multi-temporal and multi-sensor data from both the dry and the wet seasons proved to be a highly successful approach. To describe and map changes in ecosystem functioning at the regional scale, LanDDApp also carried out time-series analyses of vegetation index data: a proxy for vegetation vigour. Spatio-temporal patterns of change in two different vegetation indices covering 33 years from 1981–2014 were identified. Areas of diverging trends in the vegetation indices were linked to well-known changes in land use and land cover, such as deforestation and bush encroachment. Moreover, the patterns of diverging vegetation index trends were used as a reference in evaluating the impacts of environmental changes related to trends in Net Primary Productivity and Rain Use Efficiency. Field visits to three diverse study sites were carried out to verify the results using a variety of cameras mounted on poles, fixed wing and octocopter Unmanned Aerial Vehicles (UAVs), as well as expert knowledge. The results indicate areas of localized land degradation where ecosystem functioning has been reducing. Degradation impacts were reflected as reductions in productivity that varied along a continuum from slight to severe, depending on the specific land use/cover. The results from LanDDApp are relevant to various local, regional, national and international stakeholders related to savannah LDD, from small communal to larger private farmers, NGOs related with helping local communities maintain sustainable livelihoods while protecting their environment, Provincial and Central Government Organisations, Universities from all affected countries in the southern African region, research organisations as well as SMEs working on mapping tools and UAV/EO technologies. Project website: www.land-degradation.org Contact details: Elias Symeonakis, email: e.symeonakis@mmu.ac.uk, tel: +44 161 2471587

Data: CORDIS, © European Union

Project objective

Today, more than 50% of the Earth’s surface is covered by areas prone to land degradation and desertification (LDD). It is widely recognized that an understanding of LDD is central to the debate of global environmental change and sustainability. However, for all its importance to scientists and policy-makers confronting the complexities of environmental change, LDD is still poorly understood.One of the most seriously affected regions in the world is South Africa (SA) with ~440,000km2 vulnerable to some extent. Through desertification, soil in SA has lost 25% or more of its fertility and the process is ongoing; moreover, large scale erosion and desertification have led to food insecurity in several areas.Quantifying the processes of LDD is still very much a formidable, if not an impossible, task due to its complex nature and the use of desertification indices has become a common practice as a way around this hurdle. Remote sensing data adhere to the principles of repetitiveness, objectivity and consistency, which are prerequisites in the frame of monitoring and surveillance. However, no indicator of LDD is directly inferable from satellite-based data. Suitable indirect indicators need to be chosen, which can be related to LDD processes that operate in the specific area and scale of study. Moreover, studies of LDD must simultaneously consider both human- and environmental-based variables.In this context, this research will seek to assess LDD in the pilot-study area of North West Province of South Africa over the last twelve years. An operational, nested indicator appraisal system, LanDDApp, will be developed comprising of quantitative and qualitative LDD indices estimated using satellite imagery, field measurements, socio-economic data and geocomputation techniques. LanDDApp shall be used for identifying degradation ‘hot-spots’ where mitigation measures are required and thus provide a management tool for the prioritisation of such measures.

Original text from CORDIS.

Participants

  • THE MANCHESTER METROPOLITAN UNIVERSITY · MANCHESTERCoordinatorUnited Kingdom

Links

Data: CORDIS, © European Union