Hardness Removal Magnetic Water Softener for Irrigation
Model No.: YLC-3
Magnetic Water Treatment in Agriculture
In normal or non-MW, the water molecule clusters comprising of many water molecules are loosely attracted. This loose and chaotic form of attraction predisposes the water to toxins and pollutants to travel inside the water molecule cluster. The large structure of these water molecule clusters or presence of toxins blocks large portions of these clusters when they pass through the cell membrane. The smaller size of these chaotic clusters, some of them carrying toxins, can enter the cell with consequent harmful effects. Therefore, to hydrate a plant a great deal of normal water is required. Magnetic treatment of water restructures the water molecules into very small clusters, each made up of six symmetrically organized molecules. This tiny and uniform cluster has hexagonal structure thus it can easily enter the passageways in plant and animal cell membranes. In addition, toxic agents cannot enter the MW structure. These features make MW a bio-friendly compound for plant and animal cells. MW can be used to increase crop yield, induce seed germination and benefit the health of livestock. Studies have demonstrated that MW for irrigation can improve water productivity; thus, conserving water supplies for the expected future global water scarcity . In addition, MW is reportedly effective at preventing and removing scale deposits in pipes and water containing structures.
Magnetic Treatment of Irrigation Water
Previous studies have shown several beneficial effects of MF treatment on the growth of plants. It was demonstrated that an optimal external EMF can increase the rate of the plant growth, especially the percentage of seed germination. That exposing the broad bean seeds to variable magnetic strengths during before sowing imposes significant effects on seed germination and seed yield. In addition, they showed that applying MF to broad bean during the growing season can increase the number of pods per plant and reduce the plant losses per unit area. Several studies have demonstrated the effectiveness of MFs on the root growth of various plants. Similarly, MF treatment increases the root growth of maize. Static MF has an inhibitory effect on the root dry weight of maize plants, but had a beneficial effect on root dry weight of sunflower plants. Different studies have shown the inhibitory effect of weak MF on the growth rate of primary roots during early growth. It was demonstrated that MF can decrease the proliferative activity and cell reproduction in meristem cells in plant roots.
Magnetic treated water undergoes several changes in its physical properties. It also exerts several effects on the soil-water-plant system. Leaching the soil with MW significantly increases available soil phosphorus content compared with the leaching with normal water at all soil depths. Behavior of nutrients under an MF is a function of their magnetic susceptibility.
The previous studies have shown that the effects of magnetic treatment varied with plant type and the type of irrigation water used, and there were statistically significant increases in plant yield and water productivity (kg of fresh or dry produce per kL of water used). In particular, the magnetic treatment of recycled water and 3000 ppm saline water respectively increased celery yield by 12% and 23% and water productivity by 12% and 24%. For snow peas, there were 7.8%, 5.9% and 6.0% increases in pod yield with magnetically treated potable water, recycled water and 1000 ppm saline water, respectively.
01.What is the capacity(m3/hour)you required for this equipment?
or you could confirm diameter of the water pipe.
02.What is the material for this descaling equipment?
Ordinary carbon steel is Okay? stainless steel(SS304/SS316)?
Which means,what is the source of raw water to be treated?
03.What is the magnet power for it?
ordinary 5000 gauss?higher 10000 gauss or 15000 gauss?
|inlet and outlet||dimension(mm)||flow rate||Vertical center||Working medium||weight|
|mm||inch||diameter*length||m 3 /h||strong magnetism (mt)||temperature |
( . C)
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