Difference between revisions of "Systemes agroalimentaires respectueux du climat : Liens"
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*[[Energy Auditing|Energy Auditing]]<br/> | *[[Energy Auditing|Energy Auditing]]<br/> | ||
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= <span style="color:#00A3AD">Sources d'énergie - Énergie solaire</span><br/> = | = <span style="color:#00A3AD">Sources d'énergie - Énergie solaire</span><br/> = | ||
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== <span style="color:#00A3AD">Irrigation solaire</span><br/> == | == <span style="color:#00A3AD">Irrigation solaire</span><br/> == | ||
− | *[[ | + | *[[Solar-Powered_Pumps_for_Improved_Irrigation|Solar powered water pumps]]<br/> |
+ | *[[Micro-Solar Utilities for Small-Scale Irrigation|Micro-Solar Utilities for Small-Scale Irrigation]]<br/> | ||
+ | *[[Solar-Powered Pumps for Improved Irrigation|Solar Powered Pumps for Improved Irrigation]]<br/> | ||
+ | *[[A Hydroponic Green Farming Initiative|Hydroponic Green Farming Initiative]]<br/> | ||
+ | *[[Low-Cost Pay-Per-Use Irrigation Using Solar Trolley Systems|Low-Cost Pay-Per-Use Irrigation Using Solar Trolley Systems]]<br/> | ||
+ | *[[Affordable, High-Performance Solar Irrigation for Smallholder Farmers|Affordable, High-Performance Solar Irrigation for Smallholder Farmers]]<br/> | ||
+ | *[[PV-Integrated Drip Irrigation and Fertigation Systems|PV-Integrated Drip Irrigation and Fertigation Systems]]<br/> | ||
+ | *[[Scaling the Distribution of Tailored Agro-Solar Irrigation Kits to Smallholder Farmers|Scaling the Distribution of Tailored Agro-Solar Irrigation Kits to Smallholder Farmers]]<br/> | ||
+ | *[[Sunflower Pump: Asset-Financed Solar Irrigation Pumps for Smallholder Farmers|Sunflower Pump: Asset-Financed Solar Irrigation Pumps for Smallholder Farmers]]<br/> | ||
*[[Micro-Solar Utilities for Small-Scale Irrigation|Micro-Solar Utilities for Small-Scale Irrigation]]<br/> | *[[Micro-Solar Utilities for Small-Scale Irrigation|Micro-Solar Utilities for Small-Scale Irrigation]]<br/> | ||
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*[[Solar Powered Irrigation Systems in Egypt|Solar Powered Irrigation Systems in Egypt]]<br/> | *[[Solar Powered Irrigation Systems in Egypt|Solar Powered Irrigation Systems in Egypt]]<br/> | ||
*[[Toolbox on SPIS|SPIS Toolbox]]<br/> | *[[Toolbox on SPIS|SPIS Toolbox]]<br/> | ||
*[[Solar Powered Irrigation Systems - Technology, Economy, Impacts|Solar-powered irrigation systems – Technology, Economy, Impacts]]<br/> | *[[Solar Powered Irrigation Systems - Technology, Economy, Impacts|Solar-powered irrigation systems – Technology, Economy, Impacts]]<br/> | ||
*[[Photovoltaic (PV) Pumping Systems for Irrigation|Photovoltaic|(PV) Pumping Systems for Irrigation]]<br/> | *[[Photovoltaic (PV) Pumping Systems for Irrigation|Photovoltaic|(PV) Pumping Systems for Irrigation]]<br/> | ||
+ | |||
== <span style="color:#00A3AD">Refroidissement solaire</span><br/> == | == <span style="color:#00A3AD">Refroidissement solaire</span><br/> == | ||
− | *[ | + | *[[SunDanzer:_Solar-Powered_Refrigeration_for_Kenyan_Dairy_Farms|SunDanzer: Solar Powered Refrigeration for Kenyan Dairy Farms]]<br/> |
− | *[ | + | *[[Reducing_Milk_Spoilage_through_Solar_Powered_Milk_Chilling|Reducing Milk Spoilage through Solar-Powered Chilling]]<br/> |
− | *[ | + | *[[SunChill:_Solar_Cooling_for_Horticultural_Preservation|SunChill Solar Cooling for Horticultural Preservation]]<br/> |
− | *[[ | + | *[[Solar_Milk_Cooling_with_Insulated_Milk_Cans|Solar Milk Cooling with Insulated Milk Cans]]<br/> |
+ | |||
== <span style="color:#00A3AD">Séchage à l'énergie solaire</span><br/> == | == <span style="color:#00A3AD">Séchage à l'énergie solaire</span><br/> == | ||
*[[Solar Drying|Solar Drying]]<br/> | *[[Solar Drying|Solar Drying]]<br/> | ||
− | *[ | + | *[[Improving_Coffee_Production_and_Quality_Using_Infrared_Technology|Biogas Powered Infrared Coffee Dryer]]<br/> |
*[[Modern Solar Drying in Afghanistan|Modern Solar Drying in Afghanistan]]<br/> | *[[Modern Solar Drying in Afghanistan|Modern Solar Drying in Afghanistan]]<br/> | ||
*[[Solar Drying|Drying Oregano with Solar Dryers in Peru]]<br/> | *[[Solar Drying|Drying Oregano with Solar Dryers in Peru]]<br/> | ||
*[[Solar Drying|Drying Chili Peppers with Solar Dryers in Peru]]<br/> | *[[Solar Drying|Drying Chili Peppers with Solar Dryers in Peru]]<br/> | ||
+ | |||
== <span style="color:#00A3AD">Autres applications solaires</span><br/> == | == <span style="color:#00A3AD">Autres applications solaires</span><br/> == | ||
− | *[ | + | *[[Renewable_Microgrids_for_Off-Grid_Fish_Hatcheries_and_Surrounding_Communities|Renewable Microgrids for Off-Grid Fish Hatcheries and Surrounding Communities]]<br/> |
− | *[ | + | *[[Solar_Agro-Processing_Power_Stations|Solar Agro-Processing Power Stations]]<br/> |
− | *[ | + | *[[Private_Sector_Financed_Community_Solar_Microgrids_and_Agricultural_Accelerators|Private Sector Financed Community Solar Microgrids and Agricultural Accelerators]]<br/> |
− | *[ | + | *[[Field_Evaluation_of_a_Passive_Aeration_System_for_Aquaculture|Field Evaluation of a Passive Aeration System for Aquaculture]]<br/> |
− | *[ | + | *[[Smart_Grid_on_Main_Street:_Electricity_and_Value-added_Processing_for_Agricultural_Goods|Smart Grid on Main Street: Electricity and Value-added Processing for Agricultural Goods]]<br/> |
− | *[ | + | *[[Biomass_and_Solar_PV_Hybrid_Minigrids_for_Off-Grid_Farming_Communities|Biomass and Solar PV Hybrid Minigrids for Off-Grid Farming Communities]]<br/> |
<br/> | <br/> | ||
+ | |||
= <span style="color:#00A3AD">Source d'énergie-Biomasse/Biogaz</span><br/> = | = <span style="color:#00A3AD">Source d'énergie-Biomasse/Biogaz</span><br/> = | ||
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*[[Biogas in Powering Agriculture|Biogas in Powering Agriculture]]<br/> | *[[Biogas in Powering Agriculture|Biogas in Powering Agriculture]]<br/> | ||
*[[Bioenergy Resources and Technologies|Bioenergy Resources and Technologies]]<br/> | *[[Bioenergy Resources and Technologies|Bioenergy Resources and Technologies]]<br/> | ||
− | *[ | + | *[[Biomass_and_Solar_PV_Hybrid_Minigrids_for_Off-Grid_Farming_Communities|Biomass and Solar PV Hybrid Minigrids for Off-Grid Farming Communities]]<br/> |
− | *[ | + | *[[Building_Markets_for_Efficient_Biomass_Power_Provision|Building Markets for Efficient Biomass Power Provision]]<br/> |
− | *[ | + | *[[Biomass-Powered_Thermal_Processing_of_Ethiopian_Bamboo|Biomass-Powered Thermal Processing of Ethiopian Bamboo]]<br/> |
− | *[ | + | *[[Biogas_Milk_Chilling_to_Increase_Productivity_and_Incomes_of_Dairy_Farmers|Biogas Milk Chilling for Dairy Farmers]]<br/> |
− | *[ | + | *[[Biogas-Powered_Evaporative_Cooling_for_Uganda’s_Dairy_Industry|Biogas-Powered Evaporative Cooling for the Dairy Industry]]<br/> |
− | *[[ | + | *[[Biomass_Potential_in_the_Indonesian_Agroindustry|Biomass Potential in the Indonesian Agroindustry]]<br/> |
*[[Biogas Technology in Vietnam|Biogas Technology in Vietnam]]<br/> | *[[Biogas Technology in Vietnam|Biogas Technology in Vietnam]]<br/> | ||
*[[Biogas - A Viable Energy Source for the Small Holdings in Kerala, India|Biogas for the Small Holdings in Kerala, India]]<br/> | *[[Biogas - A Viable Energy Source for the Small Holdings in Kerala, India|Biogas for the Small Holdings in Kerala, India]]<br/> | ||
<br/> | <br/> | ||
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= <span style="color:#00A3AD">Sources d'énergie - éolienne et hydroélectrique</span><br/> = | = <span style="color:#00A3AD">Sources d'énergie - éolienne et hydroélectrique</span><br/> = | ||
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*[https://foodsafety.foodscience.cornell.edu/mqip/information-sheets/ Food Safety Laboratory and Milk Quality Improvement Program (College of Agriculture and Life Sciences Cornell University)]<br/> | *[https://foodsafety.foodscience.cornell.edu/mqip/information-sheets/ Food Safety Laboratory and Milk Quality Improvement Program (College of Agriculture and Life Sciences Cornell University)]<br/> | ||
*[[Clean Energy Solutions for Milk Cooling in India and Kenya|Clean Energy Solutions for Milk Cooling in India and Kenya]]<br/> | *[[Clean Energy Solutions for Milk Cooling in India and Kenya|Clean Energy Solutions for Milk Cooling in India and Kenya]]<br/> | ||
− | *[ | + | *[[Biogas_Milk_Chilling_to_Increase_Productivity_and_Incomes_of_Dairy_Farmers|Biogas Milk Chilling for Dairy Farmers]]<br/> |
− | *[ | + | *[[Biogas-Powered_Evaporative_Cooling_for_Uganda’s_Dairy_Industry|Biogas-Powered Evaporative Cooling for the Dairy Industry]]<br/> |
− | *[ | + | *[[SunDanzer:_Solar-Powered_Refrigeration_for_Kenyan_Dairy_Farms|SunDanzer: Solar Powered Refrigeration for Kenyan Dairy Farms]]<br/> |
− | *[ | + | *[[Reducing_Milk_Spoilage_through_Solar_Powered_Milk_Chilling|Reducing Milk Spoilage through Solar-Powered Chilling]]<br/> |
− | *[[ | + | *[[Solar_Milk_Cooling_with_Insulated_Milk_Cans|Solar Milk Cooling with Insulated Milk Cans]]<br/> |
+ | |||
== <span style="color:#00A3AD">Riz</span><br/> == | == <span style="color:#00A3AD">Riz</span><br/> == | ||
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*[http://www.knowledgebank.irri.org/step-by-step-production/postharvest/harvesting/harvesting-operations/threshing/machine-threshing/using-an-irri-axial-flow-thresher IRRI Axial Flow Thresher]<br/> | *[http://www.knowledgebank.irri.org/step-by-step-production/postharvest/harvesting/harvesting-operations/threshing/machine-threshing/using-an-irri-axial-flow-thresher IRRI Axial Flow Thresher]<br/> | ||
*[http://www.ricehub.org RiceHub]<br/> | *[http://www.ricehub.org RiceHub]<br/> | ||
− | *[ | + | *[[Solar_Agro-Processing_Power_Stations|Solar Agro-Processing Power Stations]]<br/> |
− | *[ | + | *[[Biomass_and_Solar_PV_Hybrid_Minigrids_for_Off-Grid_Farming_Communities|Biomass and Solar PV Hybrid Minigrids for Off-Grid Farming Communities]]<br/> |
− | *[ | + | *[[Media:Costs_and_Benefits_of_Clean_Energy_Technologies_in_the_Philippines'_Rice_Value_Chain.pdf|Costs and Benefits of Clean Energy Technologies in the Philippines’ Rice Value Chain]]<br/> |
+ | |||
== <span style="color:#00A3AD">Fruits & Légumes</span><br/> == | == <span style="color:#00A3AD">Fruits & Légumes</span><br/> == | ||
*[https://securingwaterforfood.org/innovators/circular-economy-waste-stichting Waste Stitching – Circular Economy]<br/> | *[https://securingwaterforfood.org/innovators/circular-economy-waste-stichting Waste Stitching – Circular Economy]<br/> | ||
− | *[ | + | *[[SunChill:_Solar_Cooling_for_Horticultural_Preservation|SunChill Solar Cooling for Horticultural Preservation]]<br/> |
*[[Tomato Processing by Solar Energy|Tomato Processing by Solar Energy]]<br/> | *[[Tomato Processing by Solar Energy|Tomato Processing by Solar Energy]]<br/> | ||
− | *[http://www.fao.org/3/x0262e/x0262e01.htm Water and Food Security – FAO] | + | *[http://www.fao.org/3/x0262e/x0262e01.htm Water and Food Security – FAO] |
− | |||
= <span style="color:#00A3AD">Utilisation de l'eau dans l'agriculture</span><br/> = | = <span style="color:#00A3AD">Utilisation de l'eau dans l'agriculture</span><br/> = |
Latest revision as of 10:48, 14 October 2020
Systèmes agroalimentaires respectueux du climat : Liens
►Retour au portail WE4F |
Énergie durable pour l'alimentation
- Climate-Smart Agriculture 101
- Introducing the Energy-Agriculture Nexus
- Energy Inputs in Agriculture
- Greenhouse Gas Emissions from Agriculture
- Energy for Agriculture
- Energy Needs in Smallholder Agriculture
- Climate Smarte Agriculture
- Renewable Energy Resources in Powering Agriculture
- Energy for Processing Food
- E-Learning: Free Online edX CourseSustainable Development
- SDGAcademyX-Free online courses from SDG Academy
- Nexus Case Studies
- Massive Open Online Course: Powering Agriculture
Application
Pompage et Irrigation
- Irrigation Types
- Drip Irrigation
- Surface Irrigation
- Sprinkler Irrigation
- Battery Based System Pump
- Basics and SWOT Analysis of SPIS
- Solar Powered Water Pump
- Water Powered Water Pumps
- Sustainable Groundwater Extraction
- Solar Powered Pumps for Improved Irrigation
- A Hydroponic Green Farming Initiative
- Low-Cost Pay-Per-Use Irrigation using Solar Trolley Systems
- Affordable, High-Performance Solar Irrigation for Smallholder Farmers
- PV-Integrated Drip Irrigation and Fertigation Systems
- Scaling the Distribution of Tailored Agro-Solar Irrigation Kits to Smallholder Farmers
- Renewable Microgrids for Off-Grid Fish Hatcheries and Surrounding Communities
- Sunflower Pump: Asset-Financed Solar Irrigation Pumps for Smallholder Farmers
- Micro-Solar Utilities for Small-Scale Irrigation
- Solar Powered Irrigation Systems in Egypt
- SPIS Toolbox
- Solar-powered irrigation systems – Technology, Economy, Impacts
Refroidissement
- Evaporative Cooling Devices
- Green Cooling
- Biogas Milk Chilling to Increase Productivity and Incomes of Dairy Farmers
- SunDanzer: Solar Powered Refrigeration for Kenyan Dairy Farms
- Reducing Milk Spoilage through Solar-Powered Chilling
- SunChill Solar Cooling for Horticultural Preservation
- Solar Milk Cooling with Insulated Milk Cans
Séchage
- Solar Drying
- Biogas Powered Infrared Coffee Dryer
- Modern Solar Drying in Afghanistan
- Drying Oregano with Solar Dryers in Peru
- Drying Chili Peppers with Solar Dryers in Peru
Autres types de la transformation des aliments
- Field Evaluation of a Passive Aeration System for Aquaculture
- Agro-Processing Power Stations
- Solar-Powered Oil Press for Sesame Seed
- Tomato Processing by Solar Energy
Efficacité énergétique
- Energy Efficiency Introduction
- Energy Efficiency in Powering Agriculture
- Cogeneration
- Energy Efficiency Potentials in the Kenyan Tea Sector
- Energy Auditing
Sources d'énergie - Énergie solaire
Introduction
Irrigation solaire
- Solar powered water pumps
- Micro-Solar Utilities for Small-Scale Irrigation
- Solar Powered Pumps for Improved Irrigation
- Hydroponic Green Farming Initiative
- Low-Cost Pay-Per-Use Irrigation Using Solar Trolley Systems
- Affordable, High-Performance Solar Irrigation for Smallholder Farmers
- PV-Integrated Drip Irrigation and Fertigation Systems
- Scaling the Distribution of Tailored Agro-Solar Irrigation Kits to Smallholder Farmers
- Sunflower Pump: Asset-Financed Solar Irrigation Pumps for Smallholder Farmers
- Micro-Solar Utilities for Small-Scale Irrigation
- Solar Powered Irrigation Systems in Egypt
- SPIS Toolbox
- Solar-powered irrigation systems – Technology, Economy, Impacts
- Photovoltaic|(PV) Pumping Systems for Irrigation
Refroidissement solaire
- SunDanzer: Solar Powered Refrigeration for Kenyan Dairy Farms
- Reducing Milk Spoilage through Solar-Powered Chilling
- SunChill Solar Cooling for Horticultural Preservation
- Solar Milk Cooling with Insulated Milk Cans
Séchage à l'énergie solaire
- Solar Drying
- Biogas Powered Infrared Coffee Dryer
- Modern Solar Drying in Afghanistan
- Drying Oregano with Solar Dryers in Peru
- Drying Chili Peppers with Solar Dryers in Peru
Autres applications solaires
- Renewable Microgrids for Off-Grid Fish Hatcheries and Surrounding Communities
- Solar Agro-Processing Power Stations
- Private Sector Financed Community Solar Microgrids and Agricultural Accelerators
- Field Evaluation of a Passive Aeration System for Aquaculture
- Smart Grid on Main Street: Electricity and Value-added Processing for Agricultural Goods
- Biomass and Solar PV Hybrid Minigrids for Off-Grid Farming Communities
Source d'énergie-Biomasse/Biogaz
- Biogas in Powering Agriculture
- Bioenergy Resources and Technologies
- Biomass and Solar PV Hybrid Minigrids for Off-Grid Farming Communities
- Building Markets for Efficient Biomass Power Provision
- Biomass-Powered Thermal Processing of Ethiopian Bamboo
- Biogas Milk Chilling for Dairy Farmers
- Biogas-Powered Evaporative Cooling for the Dairy Industry
- Biomass Potential in the Indonesian Agroindustry
- Biogas Technology in Vietnam
- Biogas for the Small Holdings in Kerala, India
Sources d'énergie - éolienne et hydroélectrique
Énergie hydraulique
L'énergie éolienne
Modèles de financement et d'entreprise
- Agri-Food Enterprises in the Energy-Food Nexus
- Business Plan for Solar Processing of Tomatoes
- Small Scale Oil Seeds Processing
- Techno-Economic Analysis in the Agricultural Value Chain
- Comparative Financial Analysis of Irrigation Solutions
Politiques et réglementations
- Policies and Regulations for the Energy-Agriculture Nexus
- Comparison of various Policy Tools for Promoting Renewable Energies
- Bioenergy Decision Support Tool
Chaîne de valeur
Produits laitiers
- Food Safety Laboratory and Milk Quality Improvement Program (College of Agriculture and Life Sciences Cornell University)
- Clean Energy Solutions for Milk Cooling in India and Kenya
- Biogas Milk Chilling for Dairy Farmers
- Biogas-Powered Evaporative Cooling for the Dairy Industry
- SunDanzer: Solar Powered Refrigeration for Kenyan Dairy Farms
- Reducing Milk Spoilage through Solar-Powered Chilling
- Solar Milk Cooling with Insulated Milk Cans
Riz
- Ricepedia
- IRRI Axial Flow Thresher
- RiceHub
- Solar Agro-Processing Power Stations
- Biomass and Solar PV Hybrid Minigrids for Off-Grid Farming Communities
- Costs and Benefits of Clean Energy Technologies in the Philippines’ Rice Value Chain
Fruits & Légumes
- Waste Stitching – Circular Economy
- SunChill Solar Cooling for Horticultural Preservation
- Tomato Processing by Solar Energy
- Water and Food Security – FAO
Utilisation de l'eau dans l'agriculture
- FAO Water– The Importance of Sustainable Water Management
- Water in Agriculture World Bank
- Do Solar Powered Irrigation Systems (SPIS) Contribute to the Overexploitation of Groundwater Reserves
- SPIS Toolbox on Solar Powered Irrigation Systems
- SPIS|Toolbox – Understanding Groundwater
- SPIS Safeguard Water Module
- SPIS Toolbox -Understand Water Resources
- SPIS Toolbox -Assess Environmental and Socio-Economic Impacts
- SPIS Toolbox - Irrigation Efficiency Tips