WATER-AIR DISINFECTION WITH OZONE GAS
In all farms where small and large cattle and poultry are produced. In factories and in all houses, facilities and areas where water is consumed, regardless of size.
Our products are high quality products equipped with the latest technology for home, business or industrial use. Ozone gas is known as a natural disinfectant and can be used to disinfect various surfaces, air quality and water
Ozone Production: 10,000mg/hour
Dimensions: 380mmx285mmx185mm
Weight: 7kg
Warranty Period: 2 Years
Working Voltage: 220-240V/ 50-60Hz
Power: 160W
Cooling: Air
Case: Plastic
Power Cord Length: 140cm
After ozone gas enters the cell, it oxidizes the proteins in the cell membrane and renders them inoperable. This leads to the breakdown of the cell membrane and the death of bacteria and viruses. It is used as an effective method for disinfecting air, surfaces and water. Ozone destroys bacteria, viruses and other microorganisms by rapidly oxidizing them. This process is faster and more effective than traditional disinfectants.
Strong Oxidation: Ozone is a strong oxidant and quickly destroys microorganisms.
Does Not Leave Chemical Residues: Ozone turns into oxygen after mixing with the surface and water and does not leave harmful chemical residues.
Broad Spectrum Effect: Effective against bacteria, viruses, spores and cysts.
Effect of Ozone Gas on Bacteria and Viruses
Ozone gas penetrates the cell membrane: Ozone gas can easily pass through the lipid bilayer of the cell membrane.
Ozone gas can penetrate the bacterial cell membrane in two different ways:
1. Passive diffusion: Ozone gas molecules enter the cell by diffusing through the lipid bilayer of the cell membrane. This process is related to the ozone gas concentration and the permeability of the cell membrane. The higher the ozone gas concentration and the more permeable the cell membrane, the more easily ozone gas molecules enter the cell.
2. Active transport: Ozone gas molecules can be actively transported by the cell membrane. This process is carried out by special proteins called ozone carrier proteins. Ozone carrier proteins bind ozone gas molecules to the cell membrane and transport them into the cell. Once ozone gas enters the cell, it oxidizes the proteins in the cell membrane, rendering them ineffective. This leads to the breakdown of the cell membrane and the death of the bacteria.
Ozone gas oxidizes proteins in cell membranes.
Ozone gas oxidizes proteins, but it is not a selective process. Ozone gas can oxidize all proteins in the cell membrane. Ozone gas oxidizes amino acid residues of proteins such as serine, tyrosine and histidine. Oxidized proteins increase the permeability of the cell membrane and disrupt the ionic balance of the cell. When the cell membrane malfunctions, the cell contents leak out and the cell dies.
Ozone gas damages the DNA of bacteria and changes their genetics.
Ozone gas can penetrate DNA molecules inside the bacterial cell and cause oxidative damage. This oxidative damage can damage the bases in the DNA chain, the sugar-phosphate backbone, and even the structure of the chain. This causes the DNA to lose its function, the genetic material to deteriorate, and the cell to lose its ability to reproduce.
Forms Reactive Oxygen Derivatives.
Ozone gas can lead to the formation of reactive oxygen species in bacterial cells. These reactive oxygen species can damage other components within the cell and create oxidative stress. This disrupts the normal function of the cell and can eventually lead to its death.
These mechanisms are among the main ways that ozone kills bacteria. However, these processes are often interconnected and can occur simultaneously. As a result, ozone gas has a complex network of interactions that cause the death of bacteria.
10,000 mg Water-Air Ozone Generator
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