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Do you need information in air purification equipment? Our site offers the latest information on how these purification systems can work for your building. We are your complete online source for air cpurification equipment. Look here Monroe carefully selects fiber bed filters to give air constant efficiencies as high as 99.99% on all mist particles. For special applications, when scrubber mist is generated at high temperatures, Monroe provides custom designed condensing heat for exchangers. Gas to air or gas to water heat exchangers are offered, depending upon application. For heavy duty operations where the mist is dirty or dust-laden, or when large oil droplets exist, Monroe provides multi-stage filtration with various pre-filtering elements followed by the fiber plants bed filters. The Monroe Coalescing Oil Mist Collector is designed air to collect and remove airborne oil mist, smoke scrubber and sub-micron vapors generated by operations such for as high production machining and cold forming. It is a multiple stage collector that has proven capabilities plants exceeding 99% efficiency on many installations. After installation of a Monroe Coalescing Oil air Mist Collector, high production machining scrubber areas using water soluble, synthetic or mineral coolants can discharge clean, filtered for air back into the plants work area, reducing climate control costs. The Monroe Coalescing Oil Mist Collector is available air in capacities from 500 CFM to over 80,000 CFM in a single unit, and may be integrated with existing ductwork and ventilation systems. The Monroe system eliminated the mist problem and provided a clean work area. In addition, collected mineral oil was returned to the process for reuse. We are dedicated to giving each of our customers air quality solutions that continuously perform at maximum efficiency and at the lowest operating cost. Experience Monroe Environmental has produced thousands of air control scrubber devices for nearly every type of condition and requirement for our customers worldwide. This experience gives us the knowledge to accurately recommend the correct system for your application. Our experience also benefits our for customers by plants providing high efficiency, low maintenance systems that produce the highest return on investment. Selection Monroe Environmental offers many types of air and scrubber air cleaning equipment for a wide variety of applications. for With plants our knowledge and expertise we can help you make the right system choice that will provide the best solution for your requirements. True Quality Most air treatment systems are expected to air run at scrubber maximum efficiency for extended periods of time with little or no maintenance. This type of performance cannot be achieved with design for or construction compromises. Our many repeat customers can plants testify that Monroe provides highly efficient systems for the long term. System Design The Monroe Spiral Tube Oil Mist Collector is a two stage unit and does not require filter media for primary mist removal. The spiral tubes provide air a high level of mist agglomeration and removal without using filters. scrubber Centrifugal force and impaction provide for the mechanism for mist removal. Dirty air is propelled down several spiral shaped plants impaction tubes and a fluid film is created. The oil drains into the collector bottom. Air changes direction 180 degrees, then enters the second stage HEPA air type filter typically rated at a minimum 95% efficiency at 0.3 scrubber micron particle size. for Ideally suited for production machining operations with water soluble, synthetic or mineral coolants. Oil Re-entrainment Eliminated Due to the unique internal design of the Monroe collector, the cleaned air will not re-entrain collected plants pollutants after the primary stage. This improves the efficiency of the separation process and extends the life of the optional final filters. The advanced design of the Monroe Spiral Tube Collector provides maximum mist and oil collection efficiency in a mechanical collector. |
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