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HYDROPONIC GREEN FORAGE
Hector M. Leon Gallegos
Consultant
Sandia National Laboratories
SUMMARY
In 27 rural localities throughout the state of Chihuahua, Mèxico, we have used a typical 144m2
greenhouse
unit containing 1790 trays stacked on shelves that hold grain. The trays are tilted and have holes in one side.
The contents are fed as food and grain. The trays are under controlled environmental conditions in a typical
10-day cycle. The grain develops roots and green shoots to form a dense mat at an average of 1200 kilograms
per day with only 800 to 1000 liters of water consumption. This amount of fodder can be used to supple-
ment feed for 100 head of cattle per day or 500 goats and/or sheep. The water use difference is approxi-
mately 50:1 over the hay that the forage replaces. The use of these 27 greenhouses in the state of Chihuahua
then conserves over 10,000 acre feet of water per year by eliminating the need for open field alfalfa or corn
for silage. There are many others built in neighboring states.
The objective of this talk is to present the technical and operational details of growing forage hydroponically
in a greenhouse for water conservation. Recently, an analysis of using the forage to fatten cattle in Mexico
was conducted. The results of this analysis are below:
Greenhouse cost: $15K concrete platform: $5K Total: $20K
Forage production - 179 trays per day
1 kg corn/tray (15 cents), .1 kg wheat/tray (0.9 cents) = $28.4/day
water: 2300 l at .04 cents/l = $10/day
miscellaneous: $3/day
labor: 1.5 people = $15/day
Total daily cost of forage production: $57 = $3.4K
Cattle come in at 145kg, leave at 205 kg: 1kg/day growth
109 cows for 60 days purchased for $27K
1342 kg forage (7.6kg/tray) – feed 109 cows 12.3 kg/day.
Assuming 15% dry matter, 1.845kg DM = 1.3%BW (145kg cow) or 0.9%BW (205kg) supplement
forage with 0.4kg corn meal, 1.5kg stubble and .1kg mineral ($0.21/day/cow) = $1.4K
vet and supplies: $350/60days = $0.05/day/cow = $0.3K
Assume 2 die, sell 107 for $37K
Profit ($K): 37-27-3.4-1.4-0.3 = $4K U.S. every 60 days.
HYDROPONIC GREEN
FORAGE
HYDROPONIC GREEN
FORAGE
By:
Héctor M. León Gallegos
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200484
Climate in Chihuahua.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 85
GREEN HOUSE
LOCATIONS
GREEN HOUSE
LOCATIONS
IN CHIHUAHUA
Locations of the forage greenhouses in Chihuahua.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200486
The greenhouse, 8 m wide and 18 m long, is formed with arches of pipe of 2” of diameter, installed 3 m
apart, and strengthened with crosspieces that support loads of 25 kg/m2. The greenhouse cover is of
polyethylene 150 microns in thickness; the sides of the greenhouse are wound to allow better ventilation.
The covered area is protected with mesh anti-trips. The structure supports wind speeds of 150 km/hr.
144 m2
System of production of Hydroponic Green Forage: Using a hothouse of 144m2 equipped with a hydroponic
watering system without inert material or soil for the process of germination of grains of cereals and legumes
(corn and wheat), during one period of 8 to 12 days. For each kilogram of germinated grain, one obtains 9 or
more kilograms of forage of high nutritious value.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 87
Seed selection: The seed of cereals should be used or legumes without overgrowths and free of plagues and
illnesses, to avoid transmission. They should not come from lots exposed to insecticides or fungicide. The
desirable humidity is 12% and the seed should have had a rest so that it has fulfilled the requirements of
physiologic maturity. The most common crops are corn and wheat. Washing: The seed is soaked in water,
with the purpose of eliminating the whole material that floats, then drained and soaked in water with 2%
sodium hypoclorite for 15 minutes. After this soaking, the seed is drained again, given a quick washing, and
sent to the pre-germination area.
The process of sowing the seed in the trays is done very carefully to avoid damage to the grain, which should
already have four raicillas (roots). The density of sows depends on the type of grain sown.
Each of the four shelf modules holds 448 trays for a total of 1792 trays, with dimensions of 43.18 cm. x 43.18
cms. and a depth of 5 cm. The densities of corn sown, is 670 grains per tray.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200488
1st Day
Growth: The environmental factors that influence in the forage production are light, temperature, humidity,
oxygenation, and carbon dioxide gas. The duration of daylight influences vegetative development. Solar light
should not be excessive since it causes burns on the upper trays. The ideal temperature is 21º C, and it
should be as constant as possible.
2nd Day
3rd Day
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 89
4th Day
5th Day
6th Day
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200490
7th Day
8th Day
9th Día
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 91
10th Day
Irrigation systemIrrigation system
The watering system is electronically controlled and delivers water at the optimum rate
The sprinkler systems are shown here with the latest in filters and dispensing nozzles.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200492
Solar energySolar energy
Solar power can be used in remote locations. The electrical requirements of the greenhouse are very little.
Growth
A close-up of the grass is pictures here.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 93
A full row of grown forage is seen here.
Recently, styrofoam trays are being used for better insulation.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200494
As consequence we will obtain a great root mat, since the roots intersect some with others for the high
density of sows. This Mat this formed by the seeds that don't reach to germinate, the roots and the air part
25 centimeters or more than height.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 95
HARVESTS This it is made when the PLANT has reached a height average of 25 cms. This
development delays from 8 to 12 days, depending on the temperature, the environmental conditions and
the frequencies of the watering.
Cows love the forage as a supplement to their normal rations.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200496
FEEDING OF LIVESTOCK It provides daily food for 120 heads of bovine livestock.
HYDROPONIC GREEN FORAGE PROVIDE PROTEINS, MINERAL,
ALL FREE AND DISSOLVE VITAMINS.
Chart 1. Analysis of wheat sample to different stages.
Wheat sample % Humidity % Wet base % Dry base
(Growth) protein protein
10 days 86.82 2.53 20.33
12 days 88.12 2.40 20.22
14 days 92.07 1.86 22.90
16 days 90.70 2.24 24.08
The optimum time of growth is 10 days as indicated by these longer growth periods.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 97
a) FOR SUPLEMENT 5% OF ANIMAL WEIGHT:
15kgs OF HGF (COW 300 kgs) TO FEED 80
ANIMALS PER DAY.
b) IN A FEED LOT INCREASE TO 10% :
12 kgs OF HGF (COW 120 kgs) FOOD TO 100
ANIMALS PER DAY.
AM0UNT OF HGFAM0UNT OF HGF
For adding animal weight or as just a supplement, the number of cows varies and depends on the size of
the animals.
Green house144 m2 with 1,792 trays
Unit cost $13,000.00 US dlls
Average day production 1,200 kgs. (6 kgs.
per tray/day of HGF)
RESUMERESUME
A summary of the cost of the greenhouse is given in this slide.
Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200498

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HYDROPONIC GREEN FORAGE PRODUCTION

  • 1. HYDROPONIC GREEN FORAGE Hector M. Leon Gallegos Consultant Sandia National Laboratories SUMMARY In 27 rural localities throughout the state of Chihuahua, Mèxico, we have used a typical 144m2 greenhouse unit containing 1790 trays stacked on shelves that hold grain. The trays are tilted and have holes in one side. The contents are fed as food and grain. The trays are under controlled environmental conditions in a typical 10-day cycle. The grain develops roots and green shoots to form a dense mat at an average of 1200 kilograms per day with only 800 to 1000 liters of water consumption. This amount of fodder can be used to supple- ment feed for 100 head of cattle per day or 500 goats and/or sheep. The water use difference is approxi- mately 50:1 over the hay that the forage replaces. The use of these 27 greenhouses in the state of Chihuahua then conserves over 10,000 acre feet of water per year by eliminating the need for open field alfalfa or corn for silage. There are many others built in neighboring states. The objective of this talk is to present the technical and operational details of growing forage hydroponically in a greenhouse for water conservation. Recently, an analysis of using the forage to fatten cattle in Mexico was conducted. The results of this analysis are below: Greenhouse cost: $15K concrete platform: $5K Total: $20K Forage production - 179 trays per day 1 kg corn/tray (15 cents), .1 kg wheat/tray (0.9 cents) = $28.4/day water: 2300 l at .04 cents/l = $10/day miscellaneous: $3/day labor: 1.5 people = $15/day Total daily cost of forage production: $57 = $3.4K Cattle come in at 145kg, leave at 205 kg: 1kg/day growth 109 cows for 60 days purchased for $27K 1342 kg forage (7.6kg/tray) – feed 109 cows 12.3 kg/day. Assuming 15% dry matter, 1.845kg DM = 1.3%BW (145kg cow) or 0.9%BW (205kg) supplement forage with 0.4kg corn meal, 1.5kg stubble and .1kg mineral ($0.21/day/cow) = $1.4K vet and supplies: $350/60days = $0.05/day/cow = $0.3K Assume 2 die, sell 107 for $37K Profit ($K): 37-27-3.4-1.4-0.3 = $4K U.S. every 60 days. HYDROPONIC GREEN FORAGE HYDROPONIC GREEN FORAGE By: Héctor M. León Gallegos Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200484
  • 2. Climate in Chihuahua. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 85
  • 3. GREEN HOUSE LOCATIONS GREEN HOUSE LOCATIONS IN CHIHUAHUA Locations of the forage greenhouses in Chihuahua. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200486
  • 4. The greenhouse, 8 m wide and 18 m long, is formed with arches of pipe of 2” of diameter, installed 3 m apart, and strengthened with crosspieces that support loads of 25 kg/m2. The greenhouse cover is of polyethylene 150 microns in thickness; the sides of the greenhouse are wound to allow better ventilation. The covered area is protected with mesh anti-trips. The structure supports wind speeds of 150 km/hr. 144 m2 System of production of Hydroponic Green Forage: Using a hothouse of 144m2 equipped with a hydroponic watering system without inert material or soil for the process of germination of grains of cereals and legumes (corn and wheat), during one period of 8 to 12 days. For each kilogram of germinated grain, one obtains 9 or more kilograms of forage of high nutritious value. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 87
  • 5. Seed selection: The seed of cereals should be used or legumes without overgrowths and free of plagues and illnesses, to avoid transmission. They should not come from lots exposed to insecticides or fungicide. The desirable humidity is 12% and the seed should have had a rest so that it has fulfilled the requirements of physiologic maturity. The most common crops are corn and wheat. Washing: The seed is soaked in water, with the purpose of eliminating the whole material that floats, then drained and soaked in water with 2% sodium hypoclorite for 15 minutes. After this soaking, the seed is drained again, given a quick washing, and sent to the pre-germination area. The process of sowing the seed in the trays is done very carefully to avoid damage to the grain, which should already have four raicillas (roots). The density of sows depends on the type of grain sown. Each of the four shelf modules holds 448 trays for a total of 1792 trays, with dimensions of 43.18 cm. x 43.18 cms. and a depth of 5 cm. The densities of corn sown, is 670 grains per tray. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200488
  • 6. 1st Day Growth: The environmental factors that influence in the forage production are light, temperature, humidity, oxygenation, and carbon dioxide gas. The duration of daylight influences vegetative development. Solar light should not be excessive since it causes burns on the upper trays. The ideal temperature is 21º C, and it should be as constant as possible. 2nd Day 3rd Day Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 89
  • 7. 4th Day 5th Day 6th Day Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200490
  • 8. 7th Day 8th Day 9th Día Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 91
  • 9. 10th Day Irrigation systemIrrigation system The watering system is electronically controlled and delivers water at the optimum rate The sprinkler systems are shown here with the latest in filters and dispensing nozzles. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200492
  • 10. Solar energySolar energy Solar power can be used in remote locations. The electrical requirements of the greenhouse are very little. Growth A close-up of the grass is pictures here. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 93
  • 11. A full row of grown forage is seen here. Recently, styrofoam trays are being used for better insulation. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200494
  • 12. As consequence we will obtain a great root mat, since the roots intersect some with others for the high density of sows. This Mat this formed by the seeds that don't reach to germinate, the roots and the air part 25 centimeters or more than height. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 95
  • 13. HARVESTS This it is made when the PLANT has reached a height average of 25 cms. This development delays from 8 to 12 days, depending on the temperature, the environmental conditions and the frequencies of the watering. Cows love the forage as a supplement to their normal rations. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200496
  • 14. FEEDING OF LIVESTOCK It provides daily food for 120 heads of bovine livestock. HYDROPONIC GREEN FORAGE PROVIDE PROTEINS, MINERAL, ALL FREE AND DISSOLVE VITAMINS. Chart 1. Analysis of wheat sample to different stages. Wheat sample % Humidity % Wet base % Dry base (Growth) protein protein 10 days 86.82 2.53 20.33 12 days 88.12 2.40 20.22 14 days 92.07 1.86 22.90 16 days 90.70 2.24 24.08 The optimum time of growth is 10 days as indicated by these longer growth periods. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 2004 97
  • 15. a) FOR SUPLEMENT 5% OF ANIMAL WEIGHT: 15kgs OF HGF (COW 300 kgs) TO FEED 80 ANIMALS PER DAY. b) IN A FEED LOT INCREASE TO 10% : 12 kgs OF HGF (COW 120 kgs) FOOD TO 100 ANIMALS PER DAY. AM0UNT OF HGFAM0UNT OF HGF For adding animal weight or as just a supplement, the number of cows varies and depends on the size of the animals. Green house144 m2 with 1,792 trays Unit cost $13,000.00 US dlls Average day production 1,200 kgs. (6 kgs. per tray/day of HGF) RESUMERESUME A summary of the cost of the greenhouse is given in this slide. Identifying Technologies to Improve Regional Water Stewardship: North-Middle Rio Grande Corridor 21-22 April 200498