Air purifying units that have been designed for the movement, cleaning, odour removal and purification of air, in high occupancy areas withhigh demands on soundproofing and versatility.
ENERGY SAVING
The air inlet aperture has been designed to aid laminar air flow which, together with a dynamicpressure balancing chamber, helps to optimiseefficiency
LOW SOUND LEVEL
The 25mm thick noise reducing outer panels use bespoke, high quality insulating materials and make this ideal equipment for installation in areas where a low noise level is required.
DURABILITY
The outer panels of these units are made of pre-finished sheet metal with 40mm aluminium structural frames to maximise the life of the equipment, allowing it to be installed in outdoors corrosive areas. The installation of a rain cover is recommended to prevent entry of water.
EASE OF INSTALLATION AND MAINTENANCE
The access door allows quick access to clean the impeller and replace filters.
FILTRATION STAGES
The units incorporate two stages of F7 + F9 or F7 + HEPA H14 filtration, depending on the model, as well as an activated carbon filter for the elimination of odours, giving a combination with excellent filtration performance.
GERMICIDAL CHAMBER
Depending on model, these purification units can be supplied with an integrated UVc ultraviolet germicidal chamber.
Characteristics
Frame made from 40mm profile aluminium.
Outer panels made of 25 mm thick, high quality acoustic insulation, and pre-finished sheet metal.
Backward curved impeller.
Standard flanges on intake and discharge sides to facilitate installation in ducts.
Filtration stages according to model: F7 + F9 or F7 + HEPA H14, Activated carbon filter odour removal.
Control and alarm of dirty filters.
Germicidal chamber with UVc (256 nm), depending on model.
Inspection cover for maintenance and replacement of filters.
Air inlet with diffusers to increase the efficiency of the fan.
Motor
High efficiency E.C. technology, external rotor motor, controllable by 0-10V signal.
Single phase 200-240V– 50 / 60Hz and three phase 380-480V– 50 / 60Hz.
Air temperature range of -25ºC to +60ºC.
Finish:
Aluminum profile frame and pre finished sheet metal with 25mm thick acoustically insulated panels.
Option
Automatic control system.
Additional Details
Additional Details
Delivery
This item is normally assembled to order in mainland Europe and delivered direct
The EPA in America says most indoor air has 2 - 10 times higher concentrations of harmful pollutants than outdoor air. Some organisations have reported inside pollution levels up to 100 times that found outside.
The air indoors is the No. 1 environmental health risk.
We can specify and propose an engineered solution which involves Sanuvox ultraviolet air purification equipment and, where required, a prefiltration system.
Average The Room Is A Normal Residential Room, Office, Reception Area Or Similar, Where There Is Not Overly Crowded With People, Computer And Office Equipment.
Above Average There Are Factors That Contribute To Additional Heat Being Generated In The Room E.G. Strong Lighting, Overcrowding With People And Office Equipment, Conservatory Type Room, Or Flat Roofed Room.
High There Are Factors That Contribute To A High Heat Load In The Room. E.G. Commercial Cooking, Much Computer And Server Equipment, Switchgear, Temporary Building With Thin Walls And Flat Room, Plain Glass Conservatory.
The Total Average Pressure Drop Over Your Higher Efficiency Filters And/Or Carbon Filters Is;
Pascals
This Pressure Drop Is Costing In Energy Alone
£
Per year
It Is Probable That A Sanuvox In-Duct System Could Break Down The Biological, Chemical And Odourous Contaminants On This Air Flow For Between 16 And 25% Of This Running Cost
£
Lower energy cost estimate of an equivalent Sanuvox system (16%)
£
Higher energy cost estimate of an equivalent Sanuvox system (25%)
This calculator is provided as a broad based indication of the energy cost of running a filter based air purification, and an indicative cost of running a Sanuvox system as an alternative. It should not be assumed to be absolutely accurate and should not be used as the basis of an actual system design or forecast of cost saving of an actual system. We accept no liability for consequences of the inappropriate use of this calculator, or its results. Actual figures would depend on the proposed system for a particular application and on the exact parameters of that application.