about hexaflourine~
HEXAFLUORINE®
A molecule with optimal effectiveness
Hexafluorine® is an aqueous solution containing an amphoteric and chelating molecule with a hypertonic characterization which acts on:Hydrofluoric acid (no matter what concentration) Simple Acids (H+) Mixes of Acids with fluoridic Acids Organo-fluorides (where the fluorides are free in the tissue).
Hexafluorine® permits a rapid and more effective washing of a hydrofluoric acid splash than any other treatment. In effect, thanks to Hexafluorine®'s capacities of absorption and of chelating, it traps the H+ ions and the F- ions immediately as it comes into contact with HF, thus saving time in the starting of chelation. Hexafluorine® must be used immediately after a chemical projection to allow a complete decontamination and to avoid any after-effect.
Hexafluorine® stops the action of corrosive and irritating substances
From the very start of washing, the aggressive site of the corrosive or irritant is attracted by the antagonistic site of Hexafluorine® which ends up binding to it. This connection has several consequences, first to destroy the effect of the noxious agent. Hexafluorine®
Hexafluorine® quickly eliminates the noxious agent
The connection between Hexafluorine® and noxious agent increases the effect of washing. The slight hypertonicity facilitates the elimination of the pathogenic product.
Hexafluorine® stops the evolution of the chemical burn
The neutralization effects on the noxious agent and its fast elimination makes it possible to remove the essential elements needed by the noxious agent to cause a chemical reaction. Therefore, the evolution of the burn is immediately stopped.
Hexafluorine® decreases the secondary consequences of chemical accidents
Fast elimination of the chemical from the skin or eye quickly stops the burn and thus decreases the consequences such as after-effects, secondary care, and sometimes death. The slight hypertonicity of Hexafluorine® makes it possible to control the osmotic pressure and to return it as fast as possible to a physiological state.
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