German French Italian Portuguese Japanese Korrean Russian
Home

News

Notes on the operation and use of high efficiency filters with high temperature resistance

Notes on the operation and use of high efficiency filters with high temperature resistance

What kind of high-efficiency filter is a high-efficiency partitioned filter that is resistant to high temperatures? Although many cleanrooms now choose high-efficiency filters with a large effective filtration area and small size for their FFU fan filter units, high-efficiency filters with a partition are still not eliminated from the market and companies. The partitioned design prevents the filter media from breaking down due to high ambient temperatures, which greatly increases the service life of high-temperature filters. Currently, high-temperature filters are being used in a wide range of purification systems for high-temperature environments with air purification requirements.

What details of high-temperature resistant filters should be noted during the shutdown and start-up of high-temperature resistant filters? Although high-temperature resistant high-efficiency filters can effectively avoid the high temperature of the working environment from causing quality damage to air purification equipment, if the temperature in the working environment rises or falls too quickly, it will also affect the service life of high-temperature resistant filters to a certain extent.

Therefore, when manufacturers carry out high-temperature operations, they should follow the specifications for the use of high-temperature resistant high-efficiency partitioned filters, gradually raise the temperature in the process of opening and gradually lower the temperature in the process of shutting down, to avoid damage to high-temperature resistant high-efficiency filters, high temperature resistant primary filters and purification air conditioning and other equipment due to improper operation, and to ensure that high-temperature resistant air purification systems can be carried out by the normal operating procedures.