Oxi.X RM Regenerative Thermal Oxidizer (RTO) - Dürr - Durr
Oxi.X RM Regenerative Thermal Oxidizer (RTO) - Dürr - Durr
Regenerative Thermal Oxidizers (RTO's) - Turner EnviroLogic
REGENERATIVE THERMAL OXIDIZERS (RTO)
TEI has been a trusted manufacturer of RTOs for industrial applications for over 43 years and has used that experience to develop units that make sense for plant operators. Every detail of our design is intended to reduce complexity of operation, simplify maintenance, and improve efficiency for a product that offers competitive value in every phase from manufacturing to steady-state operation.
Regenerative thermal oxidizers, also known as RTOs, are advanced air pollution control devices that reduce volatile organic compounds (VOCs) and hazardous air pollutants (HAPs) from industrial processing exhaust gases. Heating contaminated air to high temperatures, RTOs break down contaminants into harmless carbon dioxide and water. They use a regenerative heat exchange system, passing preheated polluted air through a ceramic media bed to improve energy efficiency and reuse the heat in subsequent operations.
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For industries looking to minimize their environmental impact, like chemical manufacturing, coating, and automotive sectors, Turner EnviroLogic’s RTOs offer compliance with stringent air quality regulations with low operating costs and minimal maintenance. Get started with a thermal oxidizer questionnaire or contact Turner EnviroLogic with your questions.
Regenerative Thermal Oxidizing Systems for Air Pollution Control
Turner EnviroLogic is a regenerative thermal oxidizer manufacturer with a range of customizable RTO solutions to meet your exact specifications. Our selection of RTO systems can accommodate capacities from 1,200 scfm to 66,000 scfm, which are designed to handle applications across industries.
Our RTOs are constructed with a proprietary single-blade four-way switch valve which eliminates the sequencing issues common to multi-valve designs. Its construction and operation offer reduced maintenance requirements through structured ceramic media and accessible components. This design tailors heat recovery for lower operating costs through a temperature-based ceramic bed switching mechanism, recovering up to 95% of thermal energy and leading to significant energy and cost savings, even potentially fuel-free operation in certain conditions.
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