Refrigeration Air Dryers ADQ. Capacity: m 3 /h

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Refrigeration Air Dryers Capacity: 21-5040 m 3 /h

Water Contamination in Compressed Air The water contained in a compressed air system will vary according to ambient conditions, i.e. temperature and humidity. After compression the water vapour will travel into the system in exactly the same way as the compressed air itself. A basic compressed air system will include an aftercooler which will allow the removal of some of the condensate, despite this however a large quantity of water will enter the distribution system. Following entry into the distribution system, the compressed air will undergo further cooling and expansion and as a result condensate will collect in the distribution pipe work and ancillary devices. Over time the condensate in the pipe work may cause corrosion and subsequently failure and leaks. Furthermore the condensate present in all of the downstream pneumatic equipment will cause serious damage resulting in breakdowns, additional maintenance and increased production costs. In applications where compressed air is in contact with the final product, damage may occur to the product itself increasing costs further. The refrigerated compressed air dryer employs refrigeration technology in order to cool the compressed air to the optimum temperature in order to remove condensate (dewpoint) and is designed to remove up to 99 % of the condensate present. THE DANGERS AND RISKS OF WATER CONTAMINATION - Corrosion to the distribution system: the water that collects in the system over time will cause corrosion and consequently leaks, increasing your compressed airconsumption and therefore energy costs. Furthermore the scale formed inside the pipe work distribution system as a result of corrosion will increase pressure losses resulting in a further increase in energy and operating costs. - Malfunction to pneumatically operated machinery and devices: The contamination in all of the pneumatic equipment will result in lower productivity, poor reliability, increased maintenance and down time resulting in an overall reduction in manufacturing efficiency. - Spoilt products: The contamination in compressed air will have a direct influence on the quality of the manufactured goods. Imperfections caused by poor finishing when paint spraying or the presence of contamination in packaging, electronic or pharmaceutical applications can have a dramatic impact on product quality and performance.

dryers Air purity For many companies in today s competitive global market, the treatment of compressed air is not an option, but a necessity to reduce operating costs and increase production efficiency. Being an efficient and simple technology, refrigeration dryers represent the preferred solution for the majority of these applications. The ALUP Kompressoren dryers have been developed to supply dry compressed air for your production process, with a minimum power requirement and low pressure drop for optimum efficiency. Pre-cooled air enters the air/refrigerant gas heat exchanger where the compressed air temperature is reduced. This causes condensate to develop and the correct dewpoint to be achieved. The cold air then passes through the air/air heat exchanger, raising it to a temperature where no condensate will ensue in the pipe distribution system. 9 6 7 1 In a sealed circuit, refrigeration gas is compressed, condensed, expanded and then cooled to form a liquid at approximately 0 C. Air Outlet 10 Air Inlet 8 2 Warm air entering the dryer is pre-cooled in an air/air heat exchanger by air that has been through the refrigeration circuit. Air Inlet Primary condensate flow Secondary condensate flow Air Outlet Refrigerant gas/liquid mixture 11 Cold air and water enter the condensate separator which separates the liquid water from the air. Water is then discharged by the automatic condensate discharge. Low pressure, cool refrigerant gas High pressure, hot refrigerant gas High pressure, refrigerant liquid Low pressure refrigerant liquid 5 4 3 1 Refrigerant compressor 2 Refrigerant condenser 3 Fan 4 Refrigerant filter 5 Capillary tube 6 Air/refrigerant heat exchanger 7 Liquid separator 8 Hot gas by-pass valve 9 Air/air heat exchanger 10 Condensate separator 11 Automatic condensate discharge

dryers AUTOMATIC ZERO LOSS CONDENSATE DRAIN All models are fitted with a SMART condensate drain. Each unit is specifically sized to each dryer and provides extremely reliable operation. The drain allows the removal of condensate only with no wasteage of compressed air resulting in significant energy savings. The standard alarm facility warns the operator of any malfunction. Allows for the discharge of condensate only and NOT compressed air. Silent operation provides a more comfortable environment. OPTIONS FOR BY PASS VALVE + FILTER SUPPORT FILTER SUPPORT The optional by-pass facility allows the system to operate using the filters only during maintenance or malfunction to the dryer thus avoiding any down time. This option allows two filters to be installed on the rear side of the dryer, reducing overall dimensions and installation costs. PS: Filters are not included in the option. ENVIRONMENTALLY FRIENDLY A key objective in the design of the dryer was to arrive with a product that offers performance, reliability and safety with lowest possible environmental impact. Thanks to the use of new technology and materials this major achievement that would not have been possible even a few years ago is now a reality. No compressed air wastage during the condensate discharge phase. Noiseless condensate discharge operation. Environmentally friendly thanks to the use of R4a, R404a and R410A gas. No impact on the ozone layer. Gas R4a Gas R404A Gas R410A High energy savings due to low pressure drops throughout the system. Cleaner compressed air distribution network for higher quality air supply applications.

TECHNICAL SPECIFICATIONS Types 21 36 51 72 110 141 180 2 246 312 390 462 600 720 900 1080 1440 1800 2100 2700 3000 4200 5040 Flow treated according to m 3 /h. 35 C. Cfm 21 12.4 36 21.2 51 30.0 72 42.4 110 64.4 141 83.0 180 106 2 127 246 145 312 184 390 230 462 272 600 353 720 424 900 530 1080 636 1440 848 1800 1060 2100 1237 2700 1589 3000 1766 4200 2472 5040 2966 temperature of compressed air input m 3 /h. 40 C. Cfm 17.2 10.2 29.5 17.4 41.8 24.6 59.0 34.8 90.2 52.8 1 68 148 87 177 104 202 119 256 151 320 189 379 223 492 289 590 348 738 435 886 522 1181 695 1476 869 1722 1014 2214 03 2460 1448 3444 2027 43 2432 m 3 /h. 45 C. Cfm 14.5 8.6 24.8 14.6 35.2 20.7 49.7 29.3 75.9 44.4 97 57.27 124 73 149 88 170 100 215 127 269 159 319 188 414 244 497 293 621 366 745 439 994 585 1242 731 1449 854 1863 1097 2070 1219 2898 1706 3478 2047 Nominal electrical power kw 0. 0. 0.19 0.27 0.28 0.61 0.67 0.79 0.87 1.07 1.19 1.45 1.82 2.01 2.64 3.57 3.90 4.46 5.55 6.71 6.80 10.20 12.30 Power supply voltage V/Hz/Ph 230/50/1 400/50/3 Max. operating pressure bar Refrigerant gases R4a R404A R410A R404A Air connections gas/dn 1 F 1 F 3 F 3 F 3 F Weight Kg. 19 19 20 25 27 44 44 53 60 65 80 80 128 146 158 5 325 335 350 380 550 600 650 NOTES: Reference conditions - Operating pressure : 7 bar (100 psi) - Operating temperature : 35 C - Room temperature : 25 C - Pressure dew point : +3 C +/- 1 - Available in different voltages and frequency values Limit conditions: - Working pressure : bar (232 psi) ( 21 up to 110) : bar (188 psi) ( 141 up to 5040) - Operating temperature : 55 C - Min/Max room temperature : +5 C; +45 C CORRECTION FACTOR FOR CONDITIONS DIFFERING FROM THE PROJECT K = A X B X C Room C 25 30 35 40 45 Operating C 30 35 40 45 50 55 temperature A 1.00 0.92 0.84 0.80 0.74 ( 21 up to 462) temperature B 1.24 1.00 0.82 0.69 0.58 0.45 ( 21 up to 462) 1.00 0.91 0.81 0.72 0.62 ( 600 up to 5040) 1.00 1.00 0.82 0.69 0.58 0.49 ( 600 up to 5040) Operation pressure bar 5 6 7 8 9 10 11 12 14 15 C 0.90 0.96 1.00 1.03 1.06 1.08 1.10 1.12 1. 1.15 1. 1.17 ( 21 up to 462) 0.90 0.97 1.00 1.03 1.05 1.07 1.09 1.11 1.12 ( 600 up to 5040) The new flow rate value can be obtained by dividing the current or real flow rate by the correction factor related to the real operation conditions. DIMENSIONS B A B C 21 to 110 350 484 511 141 to 180 370 764 515 2 to 312 460 789 575 390 to 462 580 899 604 A B C 600 to 1080 735 10 898 1440 to 2100 1020 1560 1082 3000 to 5040 1020 1560 2099 Dimensions in mm B C A Dimensions in mm C A COMPACT INSTALLATION Unique, light, and compact design makes dryer handling easy. The installation of the dryer is simple and requires no special equipment or foundation work. To ensure operational reliability of the dryer range, it is recommended to install a ALUP Kompressoren prefilter upstream of the dryer and a high efficiency oil removal filter downstream of the dryer to protect the air system against particle and oil contamination.

Products, Concepts, Solutions Built on the needs of the customer For almost 100 years, we at ALUP have produced quality air compressors. With our innovative system concepts we offer customised solutions for almost all applications. Our endeavour lies not only in supplying compressors, we offer ourselves as a competent system provider, who is able to offer solutions to all users of compressed air. That does not only apply to the consultation and installation phase of your new compressor(s), but naturally continues in all areas of service, maintenance and visualisation. Challenge us! Screw compressors Piston compressors Blower Turbo compressors Complete accessories Control, regulate, monitor constant speed 2.2 400 kw/ 5 bar variable speed controlled and direct drive 5.5 260 kw / 5 bar oil-free, with water injection 15 55 kw/ 5 10 bar oil-free, up to 10 bar 0.75 12 kw for normal pressure up to 10 bar 1.5 15 kw for medium pressure up to 15 bar 1.5 15 kw for high pressure up to 40 bar 2.2 45 kw as a booster for an input pressure up to 15 bar and an output pressure up to 40 bar 2.2 30 kw at constant speed 1.5 55 kw 300 1000 mbar with speed regulator and direct drive 3.0-55 kw 300-1000 mbar oil-free, up to 0 bar 65-370 kw refrigeration dryers 0.27 100 m 3 /min desiccant dryers 0.08 145 m 3 /min activated carbon adsorbers 0.08 145 m 3 /min filters, all particle sizes 0.5 225 m 3 /min complete condensate management up to 120 m 3 /min lead-lag control consumptiondependant control visualisation (we bring your compressed air to the PC) tele-monitoring (the hotline of your compressed air station) Your specialist 6999640031-10/12