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Air blowing - Import export

Belgium

Belgium

Verified by Europages

Belgium

Verified by Europages

Stainless steel refrigerated 40 bar air dryer with the plate heat exchanger, moisture separator, interconnecting piping and flanges, all made from stainless steel to prevent corrosion. Refrigerant gas is ozone friendly R134a or R404a. Dust pre-filter providing 1 micron filtration and integrated in the air dryer. Dew Point Alarm -option- displayed on compressor control panel and on dryer unit to help maintain the quality and security of the air supplied for blow moulding. Condenser is air cooled, but water-cooling is available on request for hot areas over 40°C. Coolant compressor is fully hermetically sealed with current and thermal overload protection. Pressure dew point is 3°C with 35°C compressed air inlet temperature. See our certifications

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Belgium

A fluidised bed incinerator is the technology of choice for the combustion of many sludge streams or solid waste streams with a high moisture content. In a fluidised bed reactor, an inert material, typically calibrated quartz sand, is fluidised by blowing air through the bed. The sand bed expands and provides an ideal medium for the mixing of waste with combustion air. Because the fluidised bed is maintained at an elevated temperature, typically between 650°C and 800°C the water evaporates and volatile organic compounds mix with combustion air whilst escaping from the fluidised bed. EUROPEM fluidised bed reactors are bubbling fluidised beds with high turbulence. Different feeding systems can be supplied ranging from feeding screws and over spreader stokers to injection lances. Key Features Turbulent bubbling fluidized bed of inert material Different feeding systems for solid waste, waste liquids and waste gases Can be operated in a reducing or oxidising environment Key Advantages - Robust and flexible design to burn sludge or solid waste with high moisture content – Stable combustion process of waste with varying moisture content over time – Proven technology – Destruction efficiency over 99.99% and less than 1% carbon in the ashes – Low NOx and CO emissions possible – Flue gas treatment train needed to meet acid, heavy metal, dust and PCDD/F emission levels

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Belgium

Cooling via high-performance compact impellers. The LCP draws in the air at the sides at the rear of the server enclosures and blows the cooled air back into the front part of the server enclosure at the sides. Maximum energy efficiency due to EC fan technology and IT-based control Minimal pressure loss at the air end, which in turn minimises the power consumption of the fans Control of the server inlet temperature With redundant temperature sensor integrated at the air end as standard Optimum adaptability due to dynamic, continuous control of the cold water volume flow By using high water inlet temperatures, the proportion of indirect free cooling is increased, which in turn reduces operating costs Targeted cooling output due to modular fan units Fan modules configurable as n+1 redundancy Standard 3-phase connection for electrical redundancy The separation of cooling and enclosure prevents the ingress of water into the server enclosure

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