Environmental compatibility, de-salting, and de-sulfurization temperature reduction reaction device.
Total design including dust collection system is also possible! It is a cooling reaction device with a maximum processing capacity of 12,000 L/h.
This is a device that reacts with a chemical solution that turns chlorine and sulfur components in combustion exhaust gases into tiny droplets and removes them instantly. For more details, please contact us or download and view the catalog.
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basic information
【Features】 ○ Rotary Atomizer Manufactured in-house, capable of handling a maximum processing capacity of 12,000 l/h. ○ Hot Air Distribution Chamber Equipped with a unique rectifier at the exhaust gas inlet to facilitate efficient contact reactions between droplets and exhaust gases. ○ Cooling Reaction Tower The size of the nozzle is designed considering the reaction time based on the characteristics of the exhaust gas, ensuring that the sprayed liquid completely evaporates. ○ Since complete evaporation occurs, no wet dust is generated, making it easier to clean the downstream dust collector. ○ Modifications to existing systems are also available. ○ Total design including dust collection equipment is provided.
Price information
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Delivery Time
※It will vary depending on the specifications. For more details, please contact us.
Applications/Examples of results
[Application] Thermal power plant, waste incinerator
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Okawara Chemical Engineering Co., Ltd. provides technology for spray drying, spray cooling, fluidized granulation spray dryers, and exhaust gas treatment on both large and small scales. Various industries have diverse processes, and it has become essential to produce powder products from various liquid raw materials in response to customer demands. As a leading company in this field, Okawara Chemical Engineering actively assists customers in product development, from raw liquid processing to packaging, through engineering and equipment proposals on a daily basis. We will continue to make proactive efforts to maintain and expand our know-how in particle production.

