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Description
REX for animals
The principle of stimulating growth
Water running through IOREX is deconstructed into fine particles. A range of enzymes and hormones in the water then become easily absorbed into animal cells. The enzymes and hormones maximize animals ' resistance to germs. Active absorption of water and nutrients enhances the growth of animals and the quality of livestock.
Applications
Economic effects
Effects by category
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Hog farming
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Chicken farming
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Fish farming
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| Decreases death rate by more than 60% | Decreases death rate by more than 60% | Increases fish's resistance to germs (healthy growth followed), decreases death rate by more than 60% |
| Stimulates growth (about 15%) | Drastically reduces egg defects | Stimulates growth (yield increase by about 20%) |
| Improves the efficiency of animal feed by 6% (the amount of animal feed required decreases) | Improves the condition of chicken feces | Improves quality to top-standards |
| Prevents or greatly reduces diarrhea among piglets | Doesn't matter | Greatly reduces the need for drugs or antibiotics |
Examples
1. Effects at a hog farm (Research by team led by Ph.D. Kim In-ho at Dankook Univ.)
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IOREX effects on pigs' growth for 70-days after weaning
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Control
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IOREX
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|
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Weight immediately after weaning, kg
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6.56
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6.48
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Weight after 30 days, kg
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22.63
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24.53
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Weight after 70 days, kg
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51.23
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58.28
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Daily weight increase during the first 30 days, g
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534
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602
|
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Daily feed intake, g
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1,804
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1,094
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The amount of feed required
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2.00
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1.82
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Daily weight increase from day 30 to day 70, g
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733
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865
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Daily feed intake, g
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1,804
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1,960
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The amount of feed required, g
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2.46
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2.20
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Daily weight increase beyond 70 days, g
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647
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751
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Daily feed intake, g
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1,485
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1,533
|
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The amount of feed required, g
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2.30
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2.04
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Change in the amount of Escherichia coli(E. coli) in
feces after IOREX treatment
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||||
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Treatment
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No. of pipe
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No. of Cell(CFU/ml)
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||
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Days 0
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Days 10 | Days 15 | ||
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Control
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4
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1.76 x 105
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8.47x104 | 8.72x104 |
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IOREX
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4
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1.77x105
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1.44x106 | 5.00x103 |
Installation effects inhog farming
2. Test result at hatchery #202 of Halim
Address : 644 Daekik-ri, Imsil-eup, Jeonbuk * Building #2
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Building
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When hens are moved to the egg farm
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Hens moved to the egg farm
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Lifetime egg production
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Lifetime egg production per hen
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Eggs hatched
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Note
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|
1
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26
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8,954
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1,261,680
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140.9
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1,156,608
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|
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2
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26
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8,986
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1,301,710
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144.9
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1,185,993
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IOREX installed at 27th week
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Building
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Eggs hatched per hen
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Retired hens
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Active laying hens
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Chicks shipped
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Chicks shipped per hen
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Note
|
|
1
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129.2
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6,366
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71.1
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875,700
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97.8
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|
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2
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132.0
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6,505
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72.4
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927,300
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10.3.2
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IOREX installed at 27th week
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Installation effects in chicken farming
1) Almost completely prevented plugging of water supply lines at chicken farms
Plugging is rare in preventing and treating coccidia which occurs due to the
temperature difference inside and outside the hatchery.
2) Saved labor costs
The labor required to clear plugged water supply lines was reduced
3) Earlier disease control
Earlier disease control was possible since drubs were well melted in the water
and better absorbed by the chickens ' cells
4) Stimulated growth due to the fast absorption of feed
Both the absorption efficiency of the chicken feed and the condition of the
manure improved
5) Greatly reduced the amount of gas formed on the chicken farm
6) Significantly decreased death rate (by 60%)
3. Installation effects in dairy farming
Installation background and the result
The farm installed IOREX upon the recommendation of the Namwon Agricultural Development Technology Center and provided ionized water, expecting an increase in the amount of milk produced and a decrease in the number of body cells and germs. About a year later, the farm confirmed the efficacy of the ionized water when six to seven nearby dairy farms suffered from dairy cows' enteritis. Now, the farm is recommending IOREX to those other dairy farms.

Test at College of Ocean Science & Technology of Junsan National University
Test on water ionizer's effect in removing inorganic nitrogen and sodium from seawater
Lee Jeong-yeol, Kim Kyoung-whan, Sung Yong-sik, Ryu Kyoung-nam, Lee Sang-ro
Marine Life Science Department, College of Ocean Science & Technology, Kunsan
National University Korea J-Tech
[Introduction]
Water quality determines whether fish farming can be successful or not since it directly affects the health of the fish and the farms overall production. Especially concerning a water recycling fish culture system, a number of water treatment methods are being applied to keep proper water quality for each different fish farmed. As water treatment technologies for fish farming, a variety of methods have been used, such as biological filtering method using sand and gravel, foam separation, or screen and drum filtering. In addition to biological methods, fish farmers have used ozone and ultraviolet, activated sludge, ocher, activated charcoal, and a number of other functional matter. When water runs through treatment devices using these substances, static electricity is generated due to water friction. : The static electricity prevents the formation of scales and breaks water clusters into smaller clusters that can be easily absorbed by living organisms. Then, the water activates cell functions within the living organisms, facilitating their growth. Several flatfish farms recommended IOREX, saying that it greatly contributed to the production of healthier flatfish. In order to find out whether IOREX is effective in improving the water quality on fish farms, we first conducted an experiment to determine how much nitrogen and sodium dissolved in seawater can be reduced by IOREX.
[Test subject & Method]
After choosing two FRP circular water tanks (250 ton), we designated a control group and an experimental group with the water ionizer installed. After adding 1000ppm of synthetic wastewater to the tanks ' seawater, we examined whether the water quality improved or not in terms of inorganic nitrogen, sodium, pH, DO, and electrolytic conductivity.
[Result & Summary]
After filling the water tanks in the two groups with synthetic wastewater, we studied the change in water quality for 20 days, including inorganic nitrogen, sodium, pH, and electrolytic conductivity. In terms of NH4-N, the control group showed a 20% reduction in it on the first day while the experimental group showed a 45% reduction. On the second day, the reduced amount for the control group was 25% and the figure for the experimental group 57%, more than half of the NH4-N. In terms of NO2-N, both groups showed a gradual increase up to the eighth day and then showed dramatic increase after the tenth day. But the experimental group showed a far greater increase than the control group.
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Applications for livestock
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Applications by category
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