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# Multi-layer polarized water formed by ferromagnetic fourth phase adsorbed water
It is known that at surfaces water can adsorb to, a thick region (upwards 0.3 mm) of non-solvent water will form, that excludes particles. Gilbert Ling described this as multi-layer polarized water and Gerald Pollack named the region of non-solvent water the "exclusion zone . Gerald Pollack also proved that adsorbed water released large amounts of hydrogen ions into the surrounding bulk water, and that the exclusion zone seemed to have a negative charge. Gerald Pollack suggested that the non-solvent water had the structure of compressed ice where the layers are shifted half an oxygen atom relative to one another, and all hydrogen ions between layers have been expelled, and he named this structure the fourth phase of water. But, the pH data from Pollack shows that only roughly one in 500 000 water molecules in the exclusion zone are ionized. If Pollack s fourth phase is there, it would only make up about 1/250000th of the "exclusion zone . It is known magnetic fields will also form the non-solvent water region or exclusion zone . It can be assumed Pollack's fourth phase could potentially be ferromagnetic, since it could have free electrons and behave much like a metal. It would fit perfectly if Pollack s fourth phase is the water that adsorbs to surfaces and that it is only 1-2 nm thick (the typical thickness generally agreed upon for water adsorbates) and that it forms a magnetic field which diamagnetically orders the water above it. Gerald Pollack has observed infrared and ultraviolet radiation increases the thickness of the exclusion zone at sites of adsorption, one reasonable explanation could be the radiation frees electrons.
# References
Shalatonin, V., & Pollack, G. H. (2022). Magnetic fields induce exclusion zones in water. PloS one, 17(5), e0268747. https://doi.org/10.1371/journal.pone.0268747