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YTQZD series high-temperature gas purification systems

2015-07-30View Original

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The YTQZD series of high-temperature gas purification systems utilize advanced new membrane materials, namely asymmetric FeAl intermetallic compound membranes, as their core component. Based on sophisticated membrane separation technology, these systems produce filtration devices for clean production; they are particularly suitable for gas-solid separation under harsh conditions in applications such as electric arc furnace gas treatment, as well as in industries where strict control over gas quality is required. Such systems enable the recovery of gas at temperatures up to 500°C for use in power generation or coal chemical processes, including the purification of high-temperature gas from electric arc furnaces during the production of ferroalloys.
Reply #22015-07-30
Could you talk about the advantages of this YTQZD series of high-temperature gas purification systems?
Reply #32015-07-30
The working principle of this filter is as follows: The air induction system introduces dust-containing gas into the filtering unit. As the gas passes through the YT filter element, the dust is trapped by the membrane due to effects such as inertial collision, interception, and diffusion, thereby achieving gas-solid separation. As the filter cake layer on the surface of the filter element grows, the filtering resistance increases gradually, at which point the backwashing system is activated to remove the filter cake. The collected dust is stored in a dust hopper and removed periodically. Features of the YT system: High-temperature filtration – solves the problems of clogging and burning of bags in traditional bag filters. The use of high-temperature filtration metal intermetallic compound porous materials ensures high filtration precision, excellent product quality, a long service life, and facilitates continuous production. High-temperature filtration technology ensures the safety and reliability of the furnace gas purification system. Automatic detection and control, easy to operate and maintain. The recovered CO gas can be used directly as fuel, for power generation, or as a raw material in other chemical processes, which contributes to energy savings, reduced emissions, environmental protection, and cleaner production

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