ECO DRI CYCLING REFRIGERATED AIR DRYERS 100 TO 8000 CFM

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ECO DRI CYCLING REFRIGERATED AIR DRYERS 100 TO 8000 CFM

WHY DRY COMPRESSED AIR? Compressed air has been considered the fourth utility, and is used in almost all industrial applications. In order for compressed air to be an effective utility, it must be free of contaminants. Contaminants include solids, liquids and gases. Untreated compressed air presents the risk of either damaging the air system or the end use product. The most basic and potentially most harmful of these is moisture. The relative humidity (RH%) affects the moisture content contained in your compressed air. The most effective method of moisture control is by maintaining a constant RH%. The new Quincy ECO DRI cycling refrigerated air dryer maintains a 30% RH in all site conditions, to ensure dry compressed air is achieved. BENEFITS OF A CLEAN, DRY SYSTEM Protects your equipment Leakage Reduction Reduces equipment maintenance costs Prolongs your equipment life Improves quality of the final product Boosts your productivity (less downtime) 2 QuincyCompressor.com Performance You Demand. Reliability You Trust.

A R H EVOLUTION IN CYCLING THERMAL MASS TECHNOLOGY Energy Efficient Simple Operation Compact Design Flow switch (250 cfm and up) Steady RH, for corrosion control No antiquated glycol bath to cool Less leak points than glycol system Newest technology in decades Automatic adjustments based on conditions Zero loss drains 2-year Full Coverage Warranty Industry best 10-year Heat Exchanger Warranty 3

SUPERIOR EFFICIENCY AND PROTECTION The Quincy ECO DRI uses the latest in cycling refrigerated technology, providing the best energy savings in its class. The Smart RH Technology not only ensures the air is dried to a non-corrosive RH level, but it also automatically protects against freezing conditions. The cycling sensors automatically revert the mode of operation to non-cycling, when freezing conditions are present. On models above 250 CFM, the integrated flow switch, turns off the dryer when no flow is detected. No other dryer offers this feature. SMART R H THERMAL MASS Conventional cycling dryers must cool a large glycol bath down to a fixed +39 F temperature. At normal conditions this would yield a 12% RH when all that is required to protect the system from corrosion is 50% RH. The chart to the right shows that from 50% RH down to 12% RH is a relatively flat curve, with no additional benefit. W ei g h t L o ss g ra Quincy s ECO DRI cycling dryers maintain a target 30% RH, automatically adjusting based on the temperature conditions. This technology allows for maximum energy savings by operating only as much as needed. m s 0 25 50 75 100 % Relative Humidity Source data:vernon W.H.J Second experimental report to the Atmospheric Research committee, British Non-ferrous metals Research Association 4 QuincyCompressor.com Performance You Demand. Reliability You Trust.

THERMAL CORE 10 YEAR WARRANTY Quincy s three stage thermal core heat exchanger design, materials, and construction ensure maximum reliability and efficiency. The thermal core heat exchanger combines the 1st stage, air to air, the 2nd stage, refrigerant to air evaporator and the 3rd stage integral moisture separator with zero loss drain. Quincy s heat exchangers are engineered with quality and reliability in mind because of this, Quincy confidently offers an industry best 10-year heat exchanger warranty, bringing you the quality you demand and the reliability you trust from Quincy Compressor. DRAIN SYSTEMS All Quincy ECO DRI systems are equipped with high efficiency, environmentally friendly zero loss electronic drains. Energy efficient drains for energy efficient dryers. HOW MUCH IS YOUR DRAIN COSTING YOU? Drain Pressure CF/yr Cost/yr Timer Drain 100 psig 3,171,120 $531.00 Zero Loss Drain 100 psig 0 $0.00 * Based on 100 psig operating at 8,760 hrs/yr @ $.10 kwh 5

DEDICATED INFOLOGIC Quincy s sophisticated Airlogic 2 controller responds to real time data acquired by the sensors, and adjusts the thermal core temperature necessary to keep compressed air relative humidity at 30%, well below the corrosion point. ADDITIONAL CONTROL PANEL FEATURES Remote monitoring CAN communication protocol Voltage free contacts for remote alarm Auto Restart LAT Lowest Air Temp Ambient temperature Relative humidity (Rh) Freezing Alarm QED 250-600 controller shown REFRIGERATION COMPRESSORS QED 300 through 2100 are filled with R410A refrigerant, along with our exclusive 21st century rolling piston compressor. Quincy s rolling piston high efficiency compressor delivers efficient performance, while protecting the environment. R410A refrigerants ensure the lowest environmental impact Phase monitor ensures proper rotation Rotary technology Few moving parts Long life time Low noise level Less vibrations QED 100-250 use R134A refrigerant QED 2600-8000 use R404A refrigerant 6 QuincyCompressor.com Performance You Demand. Reliability You Trust.

ECO DRI SPECIFICATIONS & ENGINEERING DATA Cycling Power Dimensions cfm @ Volts/Phase Consumption Max L W H Approx. Connections Model 100 psig Refrigerant Hertz Kw psig In. In. In. Wt. lb. In/Out QED 100 100 R134a 115/1/60.8 232 28.2 15.3 26.8 150 1 NPT QED 125 125 R134a 115/1/60 1.0 189 31.3 19 31.7 155 1 NPT QED 150 150 R134a 230/1/60 1.0 189 31.3 19 31.7 200 1 NPT QED 200 200 R134a 230/1/60 1.5 189 31.3 19 31.7 210 1 NPT QED 250 250 R134a 230/1/60 1.2 189 46.1 33.7 60.6 250 1 1/2 NPT QED 300 300 R410A 230/1/60 2.3 189 46.1 33.7 60.6 300 1 1/2 NPT QED 350 350 R410A 230/1/60 2.3 189 46.1 33.7 60.6 330 2 NPT QED 450 450 R410A 2.5 189 46.1 33.7 60.6 350 2 NPT QED 500 500 R410A 2.9 189 46.1 33.7 60.6 350 2 NPT QED 600 600 R410A 3.1 189 46.1 33.7 60.6 375 2 NPT QED 650 650 R410A 4.3 203 38.8 33.5 46.9 440 3 NPT QED 850 850 R410A 4.6 203 38.8 33.5 54.1 725 3 NPT QED 1050 1050 R410A 5.0 203 60 33.5 54.1 725 3 NPT QED 1250 1250 R410A 7.6 203 49 41.7 56.3 750 4 Flange QED 1600 1600 R410A QED 1800 1800 R410A QED 2100 2100 R410A *QED 2600 2600 R404A *QED 3000 3000 R404A *QED 4000 4000 R404A Notes: Capacity in accordance with recommended NFPA standards and CAGI standard ADF 100. Ratings based on 8.1 10.2 11.9 13.6 14.1 26.0 100 F inlet temperature, 100 psig inlet pressure and 100 F max ambient. * Consult Factory for Quote ** Only Available in Water Cooled 203 203 203 189 189 189 49 41.7 56.3 1220 4 Flange 49 41.7 56.3 1250 6 Flange 49 41.7 56.3 1350 6 Flange 51.2 53.1 74 1350 8 Flange 110 53.1 74 2830 8 Flange 110 53.1 74 2850 8 Flange **QED 5000 5000 R404A 9.8 189 110 53.1 74 3000 8 Flange **QED 8000 8000 R404A 13.2 189 110 90.8 75.2 4500 10 Flange CORRECTION FACTORS Inlet Air Pressure Correction A psi 60 80 100 120 140 150 180 200 Factor 0.83 0.94 1 1.03 1.05 1.08 1.09 1.11 Inlet Air Temperature Correction B Temp. F 100 110 120 Factor 1 0.84 0.69 Ambient Air Temperature Correction C Temp. F 100 110 Factor 1.00 0.91 Example One: Conditions Requirement Capacity Inlet Pressure Inlet Air Temp. Ambient Temp. 465 cfm 120 psig 110 F 100 F Example One: Calculations Dryer Required = cfm required (A) x (B) x (C) = 465 (1.03) x (.84) x (1) = 537 cfm dryer required Select QED 600 for this application Example Two: Conditions QED 500 Corrected Flow for: Inlet Pressure Inlet Air Temp. Ambient Temp. 120 psig 110 F 100 F Example Two: Calculations Corrected Capacity = Dryer Capacity x (A) x (B) x (C) = 500 x (1.03) x (.84) x (1) = 433 cfm 7

quincycompressor.com quincycompressor.com COMPRESSED AIR SYSTEMS BEST PRACTICE QSI-500i quincycompressor.com ECODRI Air Quality Classification ISO 8573.1 Solids Moisture Oil Micron ISO PDP ISO PPM ISO 0.01 1 +38 F 4 0.01 1 0.01 1 +38 F 4 0.003 1 Quincy Rotary Screw WSN Bulk Liquid DP1 Wet Receiver 1gal/CFM and/or Mist Eliminator DP2 CSN 1 Micron 0.1 PPM DP3 Refrigerated Air Dryer QPNC Non-Cycling QED Cycling DP4 CPN 0.01 Micron 0.01 PPM DP5 Dry Receiver 5gal/CFM ACN 0.003 PPM Vapor & Odors 0.01 1-100 F 1 0.001 1 NOTE: Requires CXN (.001 PPM) filter in series with standard CPN prefilter. 1 2-40 F 2 0.01 1 0.01 1-40 F 2 0.003 1 Quincy Reciprocating AC WSN Moisture Separator DCN Particulate/Coarse Coalescer CSN STD 0.1 PPM Coalescer, 1 Micron CPN Polishing 0.01 PPM Coalescer CXN Xtra 0.001 PPM Coalescer ACN Activated Carbon Absorber HTD High Temperature, 1 Micron WSN Bulk Liquid DP6 CPN Desiccant Heatless Air Dryer 0.01 Micron QDTS Small 0.01 PPM QHD Industrial DP7-40 F PDP CSN 1 Micron Particulate Dry Receiver 5gal/CFM ACN 0.003 PPM Vapor & Odors QPNC Non-Cycling Refrigerated Dryer QED Cycling Refrigerated Dryer QMOD Modular Heatless Dryer QTS Small Heatless Dryer QHD Industrial Heatless Dryer QHP Heated Purge Dryer QBP Blower Purge Dryer QRHT High Temp. Refrigerated Dryer AC After Cooler DP Drain Point CPN 0.01 Micron 0.01 PPM DP8 A B Desiccant Heated Air Dryer QHP Heated Purge QBP Blower Purge -40 F PDP CSN (NPT) HTD (FLG) 1 Micron Particulate Dry Receiver 5gal/CFM ACN 0.003 PPM Vapor & Odors 1 2-40 F 2 0.01 1 0.01 1-40 F 2 0.003 1 1 2 +50 F 6 0.01 2 Quincy Condensate Purifier QRHT-75 0.01 1 +50 F 6 0.003 1 DCN 5 Micron 5 PPM DP9 High Temperature/ Refrigerated Air Dryer QRHT High Temp. DP10 2010 Quincy Compressor. All rights reserved. Printed in U.S.A. (ECODRI-008 06/15) CSN 1 Micron 0.1 PPM DP11 ACN 0.003 PPM Vapor & Odors Approximate Liquid Removal 100 CFM, 100 psi, 80 F, 4000 hrs./yr., 2 PPM Drain Point 1 2 3 4 Gallons Drain per Year Point 3000 2000 305 1300 5 6 7 8 Gallons Drain per Year Point 140 3000 310 310 9 10 11 Gallons per Year 300 4320 120 701 North Dobson Avenue Bay Minette, AL 36507 Phone 217.222.7700 Fax 251.937.7182 Email: info@quincycompressor.com