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BookletTechnical reportAgroecological and other innovative approaches for sustainable agriculture and food systems that enhance food security and nutrition. A report by the High Level Panel of Experts on Food Security and Nutrition
Executive Summary - June 2019
2019Also available in:
No results found.Food systems and agriculture are at a crossroads and a profound transformation is needed at all scales, not only to achieve Sustainable Development Goal 2 (SDG2) to “end hunger and all forms of malnutrition” by 2030 but also to address Agenda 2030 in its entirety, including human and environmental health, climate change, equity and social stability. Current trends, such as the new increase, since 2014, in the number of undernourished people and the alarming rate of all forms of malnutrition in all countries, and related tensions will be exacerbated if we fail to design and implement, in a very near future, food systems that ensure food security and nutrition while addressing all sustainability challenges. Agroecological and other innovative approaches in agriculture are increasingly praised for their potential contribution to reach these crucial goals. This report adopts a dynamic perspective, centred on the key concepts of transition and transformation. Ultimately, this rich and comprehensive report aims to fuel an exciting policy convergence process and help remove the lock-ins by developing a common understanding of these matters, so that concrete transition pathways can be implemented at all relevant scales, from farm, community and landscape to national, regional and global levels. -
Book (stand-alone)Technical reportCFS 2019/46/Inf.17 - Agroecological and other innovative approaches for sustainable agriculture and food systems that enhance food security and nutrition. A report by the High Level Panel of Experts on Food Security and Nutrition
jul/19
2019Also available in:
Food systems and agriculture are at a crossroads and a profound transformation is needed at all scales, not only to achieve Sustainable Development Goal 2 (SDG2) to “end hunger and all forms of malnutrition” by 2030 but also to address Agenda 2030 in its entirety, including human and environmental health, climate change, equity and social stability. Current trends, such as the new increase, since 2014, in the number of undernourished people and the alarming rate of all forms of malnutrition in all countries, and related tensions will be exacerbated if we fail to design and implement, in a very near future, food systems that ensure food security and nutrition while addressing all sustainability challenges. Agroecological and other innovative approaches in agriculture are increasingly praised for their potential contribution to reach these crucial goals. This report adopts a dynamic perspective, centred on the key concepts of transition and transformation. Ultimately, this rich and comprehensive report aims to fuel an exciting policy convergence process and help remove the lock-ins by developing a common understanding of these matters, so that concrete transition pathways can be implemented at all relevant scales, from farm, community and landscape to national, regional and global levels. -
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Book (series)Technical studyThe impact of climate variability and extremes on agriculture and food security - An analysis of the evidence and case studies
Background paper for The State of Food Security and Nutrition in the World 2018
2020Also available in:
No results found.Global climate studies show that not only temperatures are increasing and precipitation levels are becoming more varied, all projections indicate these trends will continue. It is therefore imperative that we understand changes in climate over agricultural areas and their impacts on agriculture production and food security. This study presents new analysis on the impact of changing climate on agriculture and food security, by examining the evidence on recent climate variability and extremes over agricultural areas and the impact of these on agriculture and food security. It shows that more countries are exposed to increasing climate variability and extremes and the frequency (the number of years exposed in a five-year period) and intensity (the number of types of climate extremes in a five-year period) of exposure over agricultural areas have increased. The findings of this study are compelling and bring urgency to the fact that climate variability and extremes are proliferating and intensifying and are contributing to a rise in global hunger. The world’s 2.5 billion small-scale farmers, herders, fishers, and forest-dependent people, who derive their food and income from renewable natural resources, are most at risk and affected. Actions to strengthen the resilience of livelihoods and food systems to climate variability and extremes urgently need to be scaled up and accelerated. -
Book (series)YearbookWorld Food and Agriculture – Statistical Yearbook 2024 2024
Also available in:
No results found.The Statistical Yearbook 2024 offers a synthesis of the major factors at play in the global food and agricultural landscape. Statistics are presented in four thematic chapters, covering the economic importance of agricultural activities, inputs, outputs and factors of production, their implications for food security and nutrition and their impacts on the environment. The Yearbook is meant to constitute a primary tool for policymakers, researchers and analysts, as well as the general public interested in the past, present and future path of food and agriculture. -
Book (stand-alone)Technical bookDigital agriculture in action
ArtificiaI intelligence for agriculture
2021Also available in:
No results found.This publication on artificial intelligence (AI) for agriculture is the fifth in the E-agriculture in Action series, launched in 2016 and jointly produced by FAO and ITU. It aims to raise awareness about existing AI applications in agriculture and to inspire stakeholders to develop and replicate the new ones. Improvement of capacity and tools for capturing and processing data and substantial advances in the field of machine learning open new horizons for data-driven solutions that can support decision-making, facilitate supervision and monitoring, improve the timeliness and effectiveness of safety measures (e.g. use of pesticides), and support automation of many resource-consuming tasks in agriculture. This publication presents the reader with a collection of informative applications highlighting various ways AI is used in agriculture and offering valuable insights on the implementation process, success factors, and lessons learnt.