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Technical Assistance to Establish Solar Energy Based E-Pest Surveillance System - TCP/BGD/3701









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    Book (stand-alone)
    Policy Brief: The Case for Energy Smart Food Systems 2011
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    An interdisciplinary ‘nexus’ approach is necessary to ensure that food, energy and climate are jointly addressed, trade-offs considered, and appropriate safeguards are put in place. These issues will not be addressed through a single initiative. Because of its importance, scope and complexity, this challenge must be met through participation of a broad constituency of interested parties. This demands a multi partner international effort to implement energy-smart solutions in a non fragmented and cost effective way. Within this context, FAO proposes setting up an “Energy Smart’ Food for People and Climate” Multi-Partner Programme to be launched in 2012. The aim of the Programme is to address the energy dimension in relation to food security and energy poverty and should be seen as an essential component to climate-smart agriculture.
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    Brochure, flyer, fact-sheet
    International Forum on Solar Technologies for Small-scale Agriculture and Water Management: Programme and Concept Note 2018
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    Programme and concept note for distribitin to participants of the International Forum on Solar Technologies that will be held on 12-13 April 2018. It includes the introduction, the key messages, the objectives, the expected outcomes, the programme and the logistical information.
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    Book (stand-alone)
    Energy-Smart Food at FAO: An Overview 2012
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    This paper presents FAOs work on energy in relation to specific components of the agrifood chain. It complements two recent publications, Energy-Smart Food for People and Climate Issues Paper and the policy brief, Making the Case for Energy-Smart Food. These publications presented the findings of a 2011 study commissioned by FAO that examined the linkages between energy and agrifood systems and their implications for food security and climate. The study looked at energy uses along the entire agr ifood chain from field to plate and the potential of agrifood systems to produce energy. Findings confirmed that agrifood systems use a large share of the global energy supply, rely heavily on fossil fuels to meet production targets and contribute to greenhouse gas emissions. The study concluded that agrifood systems will have to become ?energy-smart? to meet future food and energy challenges, and recommended establishing a major long-term multi-partner programme on energy-smart food systems bas ed on three pillars (i) improving energy efficiency in agrifood systems, (ii) increasing the use of renewable energy in these systems and (iii) improving access to modern energy services through integrated food and energy production.

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