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Course: Food loss analysis case study methodology

Nutrition and Food Systems










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    Brochure, flyer, fact-sheet
    Brochure
    Food loss analysis case study methodology
    E-learning fact sheet
    2020
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    This fact sheet describes the course that introduces the FAO case study methodology for the analysis of critical food loss points. This method focuses on revealing and analysing the multidimensional causes of losses in selected food supply chains, identification of critical loss points, and recommendation of feasible food loss reduction solutions and strategies.
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    Book (stand-alone)
    Technical book
    Food loss analysis: causes and solutions – The Republic of Uganda. Beans, maize, and sunflower studies 2019
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    This report illustrates the food loss assessment studies undertaken along the maize, sunflower and beans supply chains in Uganda in 2015-16 and 2016-17. They aimed to identify the critical loss points in the selected supply chains, the key stages at which food losses occur, why they occur, the extent and impact of food losses and the economic, social and environmental implications of the food losses. Furthermore, these studies also evaluated the feasibility of potential interventions to reduce food losses and waste.
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    Aquaculture development and coordination programme. Fish feed technology. Lectures presented at the FAO/UNDP Training Course in Fish Feed Technology, Seattle, Washington, 9 October - 15 December 1978 1980
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    The need for developing suitable feeds based on locally available inexpensive ingredients has been widely recognized. Since lack of trained personnel is the main constraint in the development of fish feed technology in developing countries, the FAO/UNDP Aquaculture Development and Coordination Programme (ADCP) organized a special training course in fish feed technology at the College of Fisheries, University of Washington, Seattle, with a view to forming a small corps of fish feed specialists wh o could then be the focal points for future feed development programmes in their respective countries. The first report of the training course was presented in the report ADCP /REP/79/8. This present volume represents the edited texts of lectures presented by different specialists. Some additional material has been included for more complete coverage of the subject. Together, these texts may be considered to constitute a manual on fish feed technology, even though they were not prepared for that purpose. Twenty-six papers are included, under the general headings: (1) Digestion, physiology and anatomy; (2) nutritional bioenergetics; (3) nutritional biochemistry; (4) feedstuffs; (5) feed formulation; (6) feed manufacturing technology; (7) practical diets; and (8) quality control. Appendices include conversion tables, electrical data, and details on pelletability of selective feedstuffs, pellet die specifications, and equipment requirements for an 8 ton an hour feed mill.

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    An Introduction to the Basic Concepts of Food Security 2008
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    Provides an introduction to the four dimensions of food security and other basic concepts.
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    Technical study
    Microplastics in food commodities
    A food safety review on human exposure through dietary sources
    2022
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    Plastic contamination in the environment is one of the most currently discussed topics. In addition to environmental matrices, microplastics have been detected in fisheries and aquaculture species, but also in other important food commodities. Food consumption is considered as one of the main and most important pathways of human exposure to microplastics. Concerns might arise not only from the exposure to the plastic polymer itself which, although generally considered as biologically inert, might still contain some reactive monomers in its structure, but also to associated chemicals. Many researchers have reported oxidative stress and immunotoxicity among the main consequences of exposure to virgin micro and nanoplastic particles, with the least having a longer retention time within the organism. Moreover, many studies have also reported information on the individual toxicity of many plastic additives and components (e.g. flame retardants, plasticizers, monomers), in addition to the possible adverse effects elicited by the environmental pollutants sorbed to the microplastics. This document gathers and illustrates what is already known and the knowledge gaps on the presence of microplastics and plastic associated chemicals in food commodities, performing an exposure assessment on the dietary exposure to these synthetic materials and providing information on their possible biological effects on humans. The report was consolidated by a group of selected experts, and sets up the basis for future risk assessment exercises and the information can be used for the provision of risk management options.
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    Book (series)
    Flagship
    The State of Food and Agriculture 2022
    Leveraging agricultural automation for transforming agrifood systems
    2022
    Automation has been shaping world agriculture since the early twentieth century. Motorized mechanization has brought significant benefits in terms of improved productivity, reduced drudgery and more efficient allocation of labour, but also some negative environmental impacts. More recently, a new generation of digital agricultural automation technologies has appeared, with the potential to further enhance productivity, as well as resilience, while also addressing the environmental sustainability challenges driven by past mechanization.The State of Food and Agriculture 2022 looks into the drivers of agricultural automation, including the more recent digital technologies. Based on 27 case studies, the report analyses the business case for adoption of digital automation technologies in different agricultural production systems across the world. It identifies several barriers preventing inclusive adoption of these technologies, particularly by small-scale producers. Key barriers are low digital literacy and lack of an enabling infrastructure, such as connectivity and access to electricity, in addition to financial constraints. Based on the analysis, the publication suggests policies to ensure that disadvantaged groups in developing regions can benefit from agricultural automation and that automation contributes to sustainable and resilient agrifood systems.