thermal oxidizers Equipment in Washington

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Recuperative Oxidisers

by Environmental Integrated Solutions     based in Halesowen, UNITED KINGDOM

Volatile Organic Compounds (VOCs) can be converted to carbon dioxide and water vapour by thermal oxidation at temperatures typically above 750oC.

Process Combustion - Catalytic Thermal Oxidisers

by Process Combustion Ltd     based in Harrogate, UNITED KINGDOM

Catalytic thermal oxidisers by Process Combustion Ltd. operate at significantly lower temperatures than equivalent thermal systems. With the ever increasing cost of fuel, catalytic oxidation systems can offer a cost effective, energy efficient solution to your air pollution needs.

Recuperative Oxidisers

by BABCOCK WANSON - CNIM Group     based in Chevilly-Larue Cedex, FRANCE

Recuperative oxidisers are targeted at industrial process where there is a combination of energy demand and effluent oxidation. These types of thermal oxidisers are mainly suitable for high VOC concentrations and lower flow rates. The process plant includes: An inverter driven effluent transfer fan, A pre-heater for the VOC or odour laden air, The ...

Tecam - Model RTO - Regenerative Thermal Oxidizers

by Tecam Group     based in Llinars del Vallès, SPAIN

Regenerative Thermal Oxidizer RTO is the most widely-used oxidation technique nowadays for Volatile Organic Compounds VOC emission treatment to be used with a wide range of solvents and processes. Tecam Group designs, assembles, commercialises and installs equipment for VOC emissions treatment through Regenerative Thermal Oxidizers RTO technology.

Tecam - Zeolite Rotor-Concentrator + Regenerative Thermal Oxidizer (RTO)

by Tecam Group     based in Llinars del Vallès, SPAIN

The Zeolite Rotor-Concentrator + Regenerative Thermal Oxidizer unit consists of a Zeolite wheel plus an oxidizer unit right after it. The basic operating principle of the Zeolite Rotor-Concentrator equipment is the Volatile Organic Compound VOC emission treatment by adsorption process. The adsorption takes place using a porous material called ...


Recuperative Thermal Oxidizer

by Epcon Industrial Systems, LP     based in The Woodlands, TEXAS (USA)

Epcon is an industry leader in Thermal Oxidizer technology and can design a system to fully integrate a customer's heat Processing Equipment with a Recuperative Thermal Oxidizer. This provides tremendous costs savings with respect to minimizing

Process Combustion - Direct Fired Thermal Oxidisers

by Process Combustion Ltd     based in Harrogate, UNITED KINGDOM

Direct fired thermal oxidisers by Process Combustion Ltd. can treat very high concentrations of volatile organic compounds (VOC’s) in waste gas and waste liquid streams safely and effectively. The waste streams, in some cases, can be injected through the burner system and be used as a fuel. Additional energy saving equipment such as waste ...

Process Combustion - Recuperative Thermal Oxidisers

by Process Combustion Ltd     based in Harrogate, UNITED KINGDOM

Process Combustion Ltd.’s range of recuperative oxidisers can be designed with a very high destruction efficiency capability combined with integral heat recovery systems to help reduce operational cost. Systems are supplied with a primary heat exchanger to heat the incoming air stream. Additional secondary heat recovery systems can be ...

Process Combustion - Regenerative Thermal Oxidisers (RTO`s)

by Process Combustion Ltd     based in Harrogate, UNITED KINGDOM

Regenerative thermal oxidisers (RTO’s) by Process Combustion Ltd. can offer very high destruction efficiency of VOC’s combined with high energy efficiency. This high energy efficiency enables the unit to operate at very little or zero fuel input. Where the heat contribution of the VOC’s is significant, the RTO can release the ...

Regenerative Oxidisers

by Environmental Integrated Solutions     based in Halesowen, UNITED KINGDOM

Regenerative Thermal Oxidisers are the show piece of any thermal oxidiser portfolio and they can be used in very many applications. Their integral dynamic heat exchange system can be used to produce thermal efficiencies of up to 98%. This high level of thermal efficiency minimises the requirement for additional support fuel and in many ...

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