Brief: Discover the Commercial Flue Gas Treatment Process System Dust Collector, featuring advanced intermetallic compound porous membrane technology. This system offers high-temperature resistance, corrosion resistance, and superior filtration accuracy, making it ideal for industrial gas purification. Learn how it outperforms traditional methods with its innovative flexible and rigid membrane solutions.
Related Product Features:
Intermetallic compound porous membrane technology for high-temperature gas filtration.
Flexible membrane with high precision (0.1μm) and large flux for efficient dust removal.
Rigid membrane resistant to high temperatures (200℃-800℃) and corrosion.
Stainless steel fiber felt filter bags for high-temperature and corrosive environments.
Jet pulse cleaning system for online and automatic ash discharge.
Environmentally friendly materials with recyclable metal resources.
Low resistance and energy-saving design reduces power consumption by 10%.
Compact design saves space and steel consumption compared to traditional methods.
Faqs:
What makes the intermetallic compound porous membrane technology unique?
The intermetallic compound porous membrane is prepared using atomic-scale partial diffusion reaction synthesis, offering uniform pore distribution, high filtration accuracy, and excellent chemical and thermal stability. It combines the advantages of both metal and ceramic materials.
How does the flexible membrane compare to traditional cloth bags?
The flexible membrane offers higher temperature resistance (up to 400℃), better corrosion resistance, higher filtration precision (0.1μm), and larger flux. It also has a longer lifespan and is recyclable, reducing environmental impact.
What are the benefits of the rigid membrane filtration system?
The rigid membrane system is simple to install, resistant to high temperatures (200℃-800℃), and can handle temperature and pressure fluctuations. It is also resistant to high-temperature oxidation and vulcanization corrosion, making it ideal for industrial gas purification.