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Steam boilers are widely used in the disinfection process of the medical industry. The core lies in using the high temperature and high penetration of saturated steam to sterilize medical devices, instruments and related items, meeting the strict requirements of aseptic operation in medical scenarios.
The saturated steam temperatuSteam boilers are widely used in the disinfection process of the medical industry. The core lies in using the high temperature and high penetration of saturated steam to sterilize medical devices, instruments and related items, meeting the strict requirements of aseptic operation in medical scenarios.
The saturated steam temperature produced by medical disinfection steam boilers is generally controlled at 121℃ -132℃, and sterilization is achieved through the following characteristics:
High-temperature inactivation of microorganisms: Temperatures of 121℃ and above can rapidly destroy the protein structure and nucleic acid of bacteria, viruses, spores and other microorganisms, rendering them inactive.
2. Strong penetrating power: When saturated steam meets the cold surface of instruments, it condenses into water, releasing a large amount of latent heat, which can penetrate into the crevices, cavities and other dead corners of the instruments. Compared with other methods of disinfection and sterilization, it is more thorough.
3. No residue: After steam disinfection, only moisture remains. After drying, there is no chemical residue. It will not cause corrosion to medical devices and will not affect subsequent medical use.
It is mainly applied in the sterilization of operating room instruments, disinfection of medical consumables, disinfection of wards and departments, and pretreatment of precision instruments such as endoscopes.re produced by medical disinfection steam boilers is generally controlled at 121℃ -132℃, and sterilization is achieved through the following characteristics:
High-temperature inactivation of microorganisms: Temperatures of 121℃ and above can rapidly destroy the protein structure and nucleic acid of bacteria, viruses, spores and other microorganisms, rendering them inactive.
2. Strong penetrating power: When saturated steam meets the cold surface of instruments, it condenses into water, releasing a large amount of latent heat, which can penetrate into the crevices, cavities and other dead corners of the instruments. Compared with other methods of disinfection and sterilization, it is more thorough.
3. No residue: After steam disinfection, only moisture remains. After drying, there is no chemical residue. It will not cause corrosion to medical devices and will not affect subsequent medical use.

It is mainly applied in the sterilization of operating room instruments, disinfection of medical consumables, disinfection of wards and departments, and pretreatment of precision instruments such as endoscopes.

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