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Tech Tools

Tech Tools: calculation tools for air pollution control measurements and conversions.
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McGill Boiler MACT Solutions
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New DeNOx SCR Reactor brochure now available
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ThermaGrid™ RTOs Reduce Potential for Maintenance Problems, Clean Easily
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Regenerative Thermal Oxidizers Help Many Industries Comply with Emission Regulations
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Electrostatic Precipitator Systems Solve Air Pollution Control Problems for a Wide Variety of Industries
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Complete Services: Maintenance, Replacement Parts, Compliance Programs, and more
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Used RTOs Available for Purchase!
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Sales Representative Opportunities
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Trade Show Schedule
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Job Opportunities
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Typical air  pollution control applications | McGill AirClean

Typical applications for use

Dry Electrostatic Precipitators (ESPs):
glass furnaces, cement kilns, coal-fired boilers, wood-fired boilers, and solid waste incinerators.

Wet Electrostatic Precipitators (WESPs):
fiberglass forming and curing ovens, wood dryers, wood-fired boilers, and steel scarfing processes.

Fabric Filters:
most types of boilers such as stokers and fluidized-bed, that burn coal and a wide variety of other fuels, as well as incinerators of hazardous, medical, and municipal waste.

Acid Gas Control:
glass furnaces, boilers, and incinerators that burn municipal, hazardous, and medical waste.

Regenerative Thermal Oxidizers:
wood dryers, paint booths, chemical and pharmaceutical processing, semiconductor manufacturing, printing processes, rubber and plastics manufacturing, and aluminum casting operations.

DeNOx SCR Reactors:
glass furnaces, multi-fuel industrial boilers, and solid, hazardous, and medical waste incinerators.

Whatever the VOC emissions, our ThermaGrid™ RTO will give you effective control at lower operating costs.

ThermaGrid™ Regenerative Thermal Oxidizer (RTO) | McGill AirCleanMcGill AirClean has the RTO technologies, equipment, and experience to control the difficult and varied VOC emissions from many types of chemical processes.

ThermaGrid™ RTO systems offer the following features and benefits:

  • High destruction and thermal efficiencies
  • Low pressure drop
  • Particulate loading capacity
  • Variable thermal efficiency and pressure drop
  • Modular design for easy installation expansion capabilities
  • Smaller footprint, lower weight, and lower foundation costs
  • Low maintenance
  • Low operating costs