Grain Storage
While fulfilling the food demand of an increasing population remains a major global concern, more than one-third of food is lost or wasted in postharvest operations. Reducing the postharvest losses, especially in developing countries, could be a sustainable solution to increase food availability, reduce pressure on natural resources, eliminate hunger and improve farmers’ livelihoods. Cereal grains are the basis of staple food in most of the developing nations, and account for the maximum postharvest losses on a calorific basis among all agricultural commodities. As much as 50%–60% cereal grains can be lost during the storage stage due only to the lack of technical inefficiency. Use of scientific storage methods can reduce these losses to as low as 1%–2%.
-- Reducing Post Harvest Losses, Foods, 2017
Postharvest losses can be extensively avoided. A survey of farmers showed that for 44 per cent of respondents the avoidance of grain losses has been the most positive change brought about by the introduction of silos. The use of silos has helped to increase food security by 30–35 days per year.
The owner of a silo can save more or earn more. Immediately after the harvest, when supply is greatest in local markets as well as in the cities, the price for maize is at its lowest. However, anyone who can safely store the maize for a few months prior to selling can count on a higher price, or conversely on making a saving by not having to buy when the market price is high. At the time of the harvest, between November and February, about 80 per cent of farmers sell their maize rather than storing it in a silo. In the critical period before the next harvest, between March and July, the situation is almost reversed, with 73 per cent selling only maize stored in the silo.
--- RURAL21
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- Abstract, Toxins, 2017 Fusarium fungi are common plant pathogens causing several plant diseases. The presence of these molds in plants exposes crops to toxic secondary metabolites called Fusarium mycotoxins. The most studied Fusarium mycotoxins include fumonisins, zearalenone, and trichothecenes....
- Abstract,Natural Resources Institute, 1995 Appropriate technologies for small-scale, on-farm grain storage in sub-Saharan Africa are reviewed and assessed in the light of the current pressures resulting from the liberalisation of grain markets. The study was based on a literature survey of recent...
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- 20/10/2011 A sample of 260 farm households that were randomly selected in Katumba ward, Rungwe district, Tanzania were studied for the effects of storage methods on the quality of maize grain and household food security using qualitative and quantitative methods. Maize storage problems, amounts of maize...
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- Abstract , Iowa State University, 2013 Maize grown by subsistence farmers is a staple food for millions of people around the world, especially in SubSaharan Africa and Central America. Following harvest and shelling, maize is subject to storage losses caused by birds, rodents, fungi, and insects....
- Abstract,Center for Grain and Animal Health Research, 2016 We investigated the use of insecticide-treated material and modified atmosphere storage for reducing insect damage in stored maize. Results showed that insecticide-treated netting and insecticide-treated seed bags protected grain from...
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- 20/01/2015 The Technical manual for the construction and use of family-sized metal silos to store cereals and grain legumes was produced in the Division of Rural Infrastructure and Agro-industries (AGS) of FAO as a significant technical contribution to preventing losses in the post-harvest phase of grains...
- 20/01/2005 When you are gathering all the tools and materials you need to build the first silo, you may not find everything on the list. Be resourceful. If you can’t find certain tools, ask the hardware dealer to help you. Maybe something else will work. Ask other metal workers or jewellers for advice about...
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