RTO Equipment

RTO Equipment

Lvquan RTO Equipment is a top-quality product from a renowned manufacturer and supplier in China, offering competitive prices with exceptional performance and durability.

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Product Description

THE CONCEPT OF THE COMPLETE SET OF EQUIPMENT

High quality Lvquan RTO Equipment, a premium waste gas treatment solution, is proudly manufactured and supplied by a trusted China-based manufacturer. This equipment offers unparalleled performance and efficiency, making it a cost-effective choice for various industries. With competitive pricing and uncompromising quality, the LQ RTO Equipment ensures reliable waste gas purification, meeting the strictest environmental standards. The manufacturer's expertise and commitment to innovation ensure that this equipment remains at the forefront of RTO technology, delivering superior results for years to come.

Utilizing rotary zeolite adsorption and catalytic combustion effectively concentrates low-concentration, large-volume waste gas into a high-concentration, small-volume form, significantly reducing equipment and operational costs while achieving highly efficient VOCs treatment. The high-temperature gas resulting from catalytic combustion is subsequently mixed for desorption and regeneration, enabling a seamless adsorption and desorption process.


OPERATING PRINCIPLE

The RTO Equipment plays a crucial role in the treatment of VOCs-laden air. After pre-filtration, the air is directed to the treatment area of the RTO Equipment's concentrated zeolite rotary drum. Here, the VOCs are efficiently removed by the adsorbent, purifying the air before it is discharged from the treatment area of the RTO Equipment's activated carbon rotary drum.

Within the RTO Equipment, the adsorbed VOCs in the concentrated rotary drum undergo desorption and concentration (by 5 to 20 times) through heat treatment in the regeneration area. Once highly concentrated, the desorbed VOCs enter the RTO Equipment's heat exchanger for further heating, subsequently being sent into the heating chamber.

Inside the RTO Equipment, the gas is heated to the catalytic reaction temperature by the heating device. Here, the organic gases undergo decomposition into carbon dioxide, water, and heat energy, facilitated by the catalyst in the catalytic bed. The gas, after undergoing this reaction, re-enters the RTO Equipment's heat exchanger, exchanging heat with the incoming low-temperature gas. This heat exchange effectively heats and preheats the inlet gas, minimizing the need for external heating.

Thanks to the RTO Equipment's efficient heat recovery system, the heating system only requires minimal compensatory heating through its self-control system to achieve complete combustion. This not only significantly saves energy but also ensures that the treated gas meets national emission standards. Overall, the RTO Equipment offers a comprehensive and efficient solution for VOCs treatment, combining adsorption, desorption, concentration, and catalytic combustion in a single, optimized system.



CHARACTERISTICS OF VOCS CONCENTRATION EQUIPMENT

High purification efficiency The theoretical removal rate of the zeolite rotary drum can reach 90% (except for special components)
High thermal desorption eficiency Organic compounds with billing points below 140°C can be desorbed
Small footprint Compared with similar adsorption treatment equipment, it is relatively small
Fast adsorption and desorption Short adsorption time, easy saturation; high desorption efficiency, short cycle


TSELECTION CRITERIAAND CHARACTERISTICS OF CO CATALYTIC COMBUSTION

The exhaust gas must be free of any substances that can harm or render the catalyst inactive, including chlorine, sulfur, halogens, and heavy metals.

It is crucial to ensure that the mixed waste gas entering the catalytic combustion equipment falls below one-quarter of the Lower Explosion Limit (LEL) to prevent any explosive conditions.

The catalytic combustion process must be conducted at temperatures not exceeding 600° C. High-heat substances and gases with high concentrations must be appropriately diluted to maintain the reaction chamber's temperature within safe limits, preventing catalyst deactivation and ensuring effective catalytic reduction reactions.

The gas entering the catalytic combustion process must be free of dust particles and oil mist that could potentially cause blockage or flashback, ensuring smooth and safe operation.

The catalytic combustion of CO exhibits specific characteristics that are essential to consider during the treatment process to ensure optimal performance and safety.


Low energy consumption The start-up preheating only takes 30-45 minutes, and the preheating temperature is generally 250-320°C.
Low resistance The heat exchanger structure is optimized, and the catalyst design has a low space velocity (10,000-15,000 h-1).
High heat recovery efficiency Compared with similar products, multiple specifications of corrugated panels are used, and the heat recovery efficiency is up to 70%.
High purification efficiency The heat exchanger adopts a new welding technology to ensure that there is no cracking and gas leakage at the welds during the alternation of hot and cold. The purifying efficiency of the body reaches 98%, and under the guarantee of the catalyst, the overall purification efficiency is above 98.5%.
Easy to operate Traditional electronic control or industrial controllers are used for control. After the parameter calibration is completed, the system can be started and stopped with one button, achieving unmanned monitoring.




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