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A waste autoclave is a form of solid waste treatment that uses heat, steam and pressure of an industrial autoclave in the processing of waste. Waste autoclaves process waste either in batches or in continuous-flow processes. In batch processes, saturated steam is pumped into the autoclave at temperatures around 160 °C, or 320 °F. [1]
Sterile dental instruments from hospital central supply (barcoded label indicating sterilization date, expiry date and contents). The central sterile services department (CSSD), also called sterile processing department (SPD), sterile processing, central supply department (CSD), or central supply, is an integrated place in hospitals and other health care facilities that performs sterilization ...
The Healthcare Sterile Processing Association (HSPA), formerly International Association of Health Central Service Material Management (IAHSCMM), [3] is a professional association which represents healthcare Central Service (CS) professionals, and is based in Chicago, Illinois with over 48,000 [4] members worldwide.
Industrial autoclaves are used in industrial applications, especially in the manufacturing of composites. Many autoclaves are used to sterilize equipment and supplies by subjecting them to pressurized saturated steam at 121 °C (250 °F) for 30–60 minutes at a gauge pressure of 103 kPa [1] depending on the size of the load and the contents. [2]
OneSource is a provider of outsourced facility services, including janitorial, landscaping, general repair and maintenance, and other specialized services for more than 10,000 commercial, industrial, institutional and retail accounts in the U.S. In 2010, ABM acquired The Linc Group, LLC, also known as TLG, for $300 million.
This method is a faster process than dry heat sterilization. Steam sterilization is performed using an autoclave, sometimes called a converter or steam sterilizer. The object or liquid is placed in the autoclave chamber, which is then sealed and heated using pressurized steam to a temperature set point for a defined period of time.
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This places increased tensile stress on the bond between the reinforcement and concrete, lowering the material's service life. Detailed risk analyses are required on a structure-by-structure basis to identify areas in need of maintenance and lower the chance of catastrophic failure. [38]