OXYGEN WITH BIOCIDAL ACTION
WHAT IS OX+?
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OX+ is a powerful oxidant with biocidal action with proven efficacy in eliminating viruses, bacteria and fungi.
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Its exclusive and patented formula is composed of Chlorine Dioxide (ClO2), Silicon Dioxide (SiO2) and carbonates.
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Proven effectiveness in eliminating microorganisms through laboratory tests.
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It has an oxidation capacity 2.6 times greater than ozone, offering greater effectiveness in treatment, sanitation and hygiene in general.
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OX+ fights bacteria through the penetration and oxidation of their fatty acids and lipids, destroying their outer membrane permeability. This results in the cell's inability to control the movement of molecules.
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It also deneutralizes cellular proteins, within the membranes, oxidizing the amino acids that make up such proteins.
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With OX+, proteins lose their physical properties and functionality, causing cells to lose their ability to generate energy, and thus become unable to stay alive.
ADVANTAGES of POCS
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Effective against Cryptosporidium and Giardia
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Oxidation of Phenol, Sulfide and Cyanide
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Iron and Manganese Oxidation
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Reduction of HAA5 (Haloacetic Acids)
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Color, flavor and odor control
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Does not generate THM (Trihalomethanes)
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Cooling tower treatment
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Non-aggressive oxidant
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Surface sanitization
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Industrial water treatment
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Animal health
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Hygiene of Fruit and Vegetable Growers
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Elimination of Biofilms
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Oxidation of Organic Matter
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Color, flavor and odor control
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Disinfection: Elimination of viruses, bacteria, algae, protozoa, etc.
DIFFERENTIALS
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High solubility in water (with low dosage)
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Does not hydrolyze, remains with dissolved gas
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Microorganisms do not develop resistance to OX+
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Chlorite is a bacteriostatic agent
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Unlike Chlorine (Sodium Hypochlorite), OX+ does not form AOCs, which are nutrients for bacteria, thus controlling and destabilizing biofilms (bacteria communities)
SAFETY
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Product suitable even for human consumption, when diluted appropriately.
ACTION AGAINST ALL TYPES OF VIRUSES
EFFICIENCY
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OX+ penetrates the protein capsid, and reacts directly with the virus's RNA, expelling it
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When the RNA is expelled from the virus, all RNA synthesis is deactivated, so that the virus cannot multiply, via reactions with cellular biomolecules.
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This process results in the death of the virus, which loses its resistance, thanks to OX+.