This new guide describes the application of spatial technology to improve disaster risk management (DRM) within the aquaculture sector. DRM requires interrelated actions and activities to ensure early warning, prevention, preparedness, response and recovery for a wide range of natural, technological and complex disasters that can impact aquaculture operations and livelihoods.<p></p><p></p>Spatial technology refers to systems and tools that acquire, manage and analyse data that have geographic context.
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Showing items 1 through 9 of 14.-
Library ResourceJournal Articles & BooksDecember, 2018Mozambique, Bangladesh, United States of America, Philippines, Haiti, Japan, Chile, China, Myanmar, Indonesia, Portugal, Ireland, Canada, Argentina, United Kingdom, Italy, Sri Lanka, Mexico, New Zealand
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Library ResourceJournal Articles & BooksJanuary, 2019Angola, Mozambique, Egypt, Botswana, Malawi, Rwanda, Mauritania, Somalia, Uganda, Mali, Burundi, Italy, Tanzania, Sudan, Congo, Senegal, Chad, Namibia, Niger, Eritrea, Kenya
The habitat of tsetse fly (Glossina spp.) depends upon climatic conditions, host availability and land cover characteristics. In this paper, the Land Cover Classification System (LCCS), developed by the Food and Agriculture Organization (FAO) and the United Nations Environment Programme (UNEP), is proposed as a tool to harmonize land cover mapping exercises carried out in the context of tsetse and trypanosomiasis (T&T) research and control.
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Library ResourceJournal Articles & BooksJanuary, 2019Mozambique, Burkina Faso, Benin, Nigeria, United States of America, Kenya, Zambia, Somalia, Uganda, Mali, Ethiopia, Italy, Tanzania, Botswana, Ghana, Congo, Senegal, Guinea, Sudan, Cameroon, Central African Republic
Geospatial datasets and analysis techniques based on geographic information systems (GIS) have become indispensable tools in the planning, implementation and evaluation of a wide range of development programmes, including actions addressing sustainable agriculture and rural development. The growing volume of spatially explicit environmental information, combined with the widening utilization of GIS, allows ecological and socioeconomic factors to be integrated more fully into the decision-making process, thus laying the foundation for a holistic approach to development.
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Library ResourceJournal Articles & BooksDecember, 2018Mozambique, Bangladesh, United States of America, Philippines, Haiti, Japan, Chile, China, Myanmar, Indonesia, Portugal, Ireland, Canada, Argentina, United Kingdom, Italy, Sri Lanka, Mexico, New Zealand
This new guide describes the application of spatial technology to improve disaster risk management (DRM) within the aquaculture sector. DRM requires interrelated actions and activities to ensure early warning, prevention, preparedness, response and recovery for a wide range of natural, technological and complex disasters that can impact aquaculture operations and livelihoods. <p></p>Spatial technology refers to systems and tools that acquire, manage and analyse data that have geographic context.
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Library ResourceManuals & GuidelinesDecember, 2006Mozambique
This paper represents part of an area of work which analyses access to natural resources in Mozambique. An initial paper examined the extent to which Mozambique’s recent regulatory changes to natural resource access and management have had their intended effects (LSP Working Paper 17: Norfolk, S. (2004). “Examining access to natural resources and linkages to sustainable livelihoods: a case study of Mozambique”). This paper is complemented by LSP Working Paper 28: Tanner et al. (2006).
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Library ResourceJournal Articles & BooksDecember, 1990Angola, Kenya, Zambia, Zimbabwe, Ghana, Malawi, Ethiopia, Mozambique, Yemen, Lesotho, Madagascar, Italy, Tanzania, Botswana, Netherlands, Sudan
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Library ResourceJournal Articles & BooksDecember, 2010Honduras, United States of America, Kenya, Mali, United Kingdom, Ghana, Papua New Guinea, Ethiopia, Colombia, Mozambique, Japan, South Africa, Mexico, Malaysia, Malawi, Madagascar, Italy, Netherlands, Argentina, India, Vietnam, Brazil
Recent years have witnessed a renewed interest in agricultural investment. In many cases, this new momentum has translated into large-scale acquisitions of farmland in lower- and middle-income countries. Partly as a result of sustained media attention, these acquisitions have triggered lively if polarised debates about “land grabbing”. Less attention has been paid, however, to alternative ways of structuring agricultural investments that do not involve large-scale land acquisitions.
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Library ResourceJournal Articles & BooksDecember, 2006Burkina Faso, Nigeria, Mozambique, Zimbabwe, Australia, Ghana, Malawi, Niger, Ethiopia, Rwanda, South Africa, Lesotho, Uganda, Somalia, Uruguay, Tanzania, Senegal, Sudan, Cameroon, Norway, Kenya, Africa
Most of the world’s poor work in the “informal economy” – outside of recognized and enforceable rules. Thus, even though most have assets of some kind, they have no way to document their possessions because they lack formal access to legally recognized tools such as deeds, contracts and permits.
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Library ResourceJournal Articles & BooksDecember, 2013Angola, Greece, United States of America, Rwanda, China, Namibia, Australia, Eswatini, Canada, Iran, Iceland, Thailand, New Zealand, Kenya, Mozambique, Jordan, South Africa, Vietnam, Italy, Tanzania, Botswana, Kazakhstan, Mongolia
Under the current challenges of food security, climate change adaptation and mitigation, further provision of ecosystem services and sustainable intensification of agriculture, soil information becomes fundamental to guide wise policies and decisions. This document reviews the present availability of soil information from legacy maps and reports and from ongoing Digital Soil Mapping efforts. Currently, the soil science community is limited in its capacity to provide accurate and updated information to the different soil users.
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Library ResourceJournal Articles & BooksDecember, 2000Mozambique, Egypt, Vietnam, Asia, Africa
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