We undertake MEP works such as Central Air-Conditioning Installation & Maintenance are directly involve in full works related to HVAC Works, BMS-DDC Control System, and Odour Control System and also have in-house team for ELV System such as CCTV, Access Control, Tele-Data Works, Fibre Optic Cable System, and Carbon Monoxide System for Car Parking Exhaust.
We can help you with the following services:
We established as separate entity in February-2009 and given 9-years of successful and dedicated services to the industry & Clients in UAE, KSA & Northern Africa.We have track list of our satisfied customers and clients which is an integral part of this company profile / pre-qualification document.
Offers total turnkey solutions and in-depth services ranging from Consultancy to Engineering Design, Planning, Procurement, Project Management, Enterprise Technology Infrastructure, Setup & Commissioning for HVAC Works, BMS/Automation Controls, Odour & Indoor Air Quality Systems for Commercial, Residential and Industrial Sectors.
We undertake variety of large and medium scale projects, and execute them utilizing our proven and well-established project delivery practices, highly skilled team of technical & managerial personnel and latest knowhow.
Odour Control System
BACTERIA, FUNGUS, YEAST, MOULD, MILDEW, SPORES & PROTOZOA
Many if not most odours are produced by Bacteria and other Organisms. The Bio-Oxygen Process kills the organisms that cause odours such as Bacteria, Fungus, Yeast, Mould, Mildew, Spores, Viruses, Protozoa and other Organisms. The Bio-Oxygen Process treats the cause (Bacteria) as well as the effect (Odours).PARTICULATES, AEROSOLS, STEAM, OIL & WAX
The Bio-Oxygen Process does not remove airborne Particulates, Aerosols, Steam, Oil, Grease or Wax because these pollutants should be removed with an Electrostatic Precipitator (EP). The combined concentration of Particulates, Aerosols, Steam, Oil, Grease and Wax in the exhaust air should not exceed 10 ug/m3 (10 microgram per cubic meter), collected on a 0.10 micron pore size test membrane.The capacity and sizing of the Bio-Oxygen equipment is assessed:
On maximum likely concentration of odours, gases and chemicals. Particulates, Aerosols, Oil & Was contained in the exhaust gases. Temperature and Humidity of the exhaust gases because all these factors are a load over and above the pollutants in the exhaust air.
BIO-OXYGEN ODOUR TREATMENT CAPACITY
The Bio-Oxygen Process injects Oxygen Clusters into a Sewerage Pit, Grease Trap, Kitchen Exhaust etc and as the Polluted Air and Oxygen Cluster Air mix, a chemical reaction takes place in the duct between the Pollutants and the Oxygen Clusters.The Oxygen Clusters react with the Odours & Chemical Fumes in 5~15 seconds. The electron tubes are installed in path of clean outside air and polluted air does not come into contact with electron tubes so that Bio-Oxygen electron tubes always stay clean. Once Oxygen Clusters have bonded with an odour molecule, the Oxygen Clusters continue to act on odours, gases & chemicals in mid air and odours diminish over 5~15 seconds. The odours can only travel as far as air currents and wind can carry odours in 5~15 seconds but along the way, the odours diminish and in up to 15 seconds, the odours are gone.
The Bio-Oxygen Process is +ve process that works at the molecular level. Carbon Filters, Scrubbers & Biomass Filters are all negative processes because they only absorb the odours and don’t do anything to the odours themselves. With Bio-Oxygen Process, up to 99% odour reduction may be targeted because as long as there is an excess of Oxygen Clusters, there can be no residual odours.
Indoor Air Quality System
The benefit an indoor air quality system can bring to their respiratory health, High efficiency air filters coupled with UV lights can work together to combat the pollutants and allergens inside your home or office, If you have allergies or respiratory concerns ask us about our air filtration system to reduce the toxins from your indoor air, creating a near sterile environment, Indoor air quality is a growing concern. The problems associated with tighter building construction in the interest of conserving energy are exacerbated by the expanding amount of time we spend indoors ~ over 90% according to a U.S. Environmental Protection Agency study. In response, building owners, facility personnel, industrial hygienists and others are increasingly focused on IAQ in terms of both comfort and health.
Measures of comfort typically include temperature, humidity, ventilation and draft. Maintaining proper comfort can significantly improve occupant satisfaction, as shown through increased concentration and productivity, and help reduce absenteeism. Poor IAQ has been linked to increased health insurance and disability payments, although the exact costs are difficult to quantify.While controlling and improving air quality does improve productivity, it often adds to building operating costs. In these cases, a clear understanding of building air quality is necessary to manage the delicate balance between optimizing conditions for occupants and keeping costs in check Health. In addition to comfort issues, health and safety concerns are also part of assessing air quality. Airborne biological substances, gases, vapours and particles can cause adverse reactions in certain individuals, depending on their sensitivity to particular substances and concentrations. Some of these ever-present unwanted contaminants are potentially toxic, infectious, allergenic, irritating or otherwise harmful. Most of us are able to tolerate modest levels of exposure, but adverse reactions can occur when concentrations exceed a “trigger” threshold.
Poor indoor air quality is listed as a top five health concern by most major associations and agencies worldwide. Recent studies claim that over one-third of the buildings in the United States have air quality problems. Now more than ever, it is increasingly important to take a proactive stance, identify and resolve potential problems before they get out of control.
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