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Providing corrosion resistant air & water quality control systems for industrial and municipal applications

Flexible & Cost-Effective - Over 99% Destruction Efficiency
for VOCs

Met-Pro Systems has mastered the design of recuperative thermal oxidizers after hundreds of successfully installed systems. Recuperative thermal oxidation systems are often the best technology for waste destruction when moderate levels of VOCs exist in the given liquid or vapor waste stream.

Recuperative thermal oxidizers are relatively simple in concept but their design can often require significant technical know-how. An example is the thermal destruction of halogenated compounds. Design of the overall system, especially regarding the recuperator, or heat exchanger, can be particularly challenging. Because of the potential for both high temperature and low temperature corrosion, the materials of construction and operating conditions must be carefully chosen to avoid rapid corrosion and failure of the recuperator. In addition, even in the absence of halogens, recuperative thermal oxidizers are often called on to reach high levels of waste destruction and operate at temperatures in excess of 1600°F, which can lead to premature heat exchanger failure. Success with these difficult types of applications has made Met-Pro Systems the company you should trust with your most difficult applications.

Thermal Oxidation Systems Advantages

  • Up to 80% heat recovery
  • Modular design for flexibility
  • Factory assembly
  • Fabrication and testing
  • Wide range of air flows to accommodate changing operating conditions
  • Welded heat exchangers for reliable, long life
  • Roof mounting for space savings and enhanced safety
  • Elimination of supplemental NOx control equipment
  • Low NOx burners
  • Wide range of designs, vertical or horizontal flow
 
 
Met-Pro Corp., Systems Division
PO Box 144
160 Cassell Road
Harleysville, PA 19438

Phone: 215-723-9300 Fax: 215-723-8501
E-mail: cgriffith@met-pro.com
Contact: Clark Griffith, General Manager
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© 2007 Systems Division