T3– 6140
Reverse Osmosis System


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T3 – SERIES REVERSE OSMOSIS SYSTEMS

AXEON® T3 – Series Reverse Osmosis Systems are designed and manufactured for seawater applications requiring capacities of 3,000 to 7,000 gallons per day.

AXEON T3 – Series Reverse Osmosis Systems are equipped with premium components, which include a 316L plunger-type pump for high performance and corrosion resistance, a high grade corrosion resistant aluminum frame, a programmable computer controller with many built-in features and fiberglass membrane housings for durability.


FEATURES
  • S –150 Computer Controller
    • LCD Backlit Display
    • Pre-Treatment Lockout
    • Tank Level Input
    • Low and High Pressure Monitoring and Alarm
    • Permeate TDS Monitoring
    • Hour Meter
    • Feed Flush
  • High Rejection Sea Water Membranes
  • AXEON 5-Micron Filter Bag
  • AXEON FRP– Series Membrane Housings (450 psi)
  • Pentair® Single O-Ring Cartridge Housing
  • Permeate and Concentrate Flow Meters
  • GF® Motorized Valve PVC
  • 0-100 psi Pre-Filter Out Pressure Gauge
  • 0-1500 psi 316L – SS Concentrate Pressure Gauge
  • AXEON 316L Stainless Steel Needle Valve
  • SS Feed Low Pressure Switch
  • SS Pump High Pressure Switch
  • Pressure Relief Valve
  • Pressure Regulator
  • CAT® 316L High Pressure Pump
  • TEFC Motor with Thermal Motor Protection
  • White Powder Coated Aluminum Frame
  • High Pressure 316L Stainless Steel Tubing and Fittings
  • High Pressure Hose with Reusable SS Fittings

SPECIFICATIONS
MODELS T3 – 4140 T3 – 5140 T3 – 6140
Design
Configuration Single Pass Single Pass Single Pass
Feedwater SourceA < 45,000 ppm < 45,000 ppm < 45,000 ppm
System Recovery with Recycle % 27-48 27-48 27-48
Rejection and Flow RatesB
Nominal Salt Rejection % 99.4 99.4 99.4
Permeate Flow Rate (gpm / lpm) 2.70 / 10.22 3.47 / 13.13 4.80 / 18.17
Minimum Concentrate Flow Rate (gpm / lpm) 4.00 / 15.00 4.00 / 15.00 4.00 / 15.00
Connections
Feed FNPT (in) 1 FNPT 1 FNPT 1 FNPT
Permeate Tubing (in) 1 FNPT 1 FNPT 1 FNPT
Concentrate Tubing (in) 1 FNPT 1 FNPT 1 FNPT
Membranes
Membranes Per Vessel 1 1 1
Membrane Quantity 4 5 6
Membrane Size 4040 4040 4040
Vessels
Vessel Array 1:1:1:1 1:1:1:1:1 1:1:1:1:1:1
Vessel Quantity 4 5 6
Pumps
Pump Type Piston Piston Piston
Motor HP 7.5 7.5 7.5
RPM @ 60Hz 3600 3600 3600
System Electrical
Controller S –150 S –150 S –150
High Voltage Service + Amp Draw 220V, 3PH, 60Hz, 20AC 220V, 3PH, 60Hz, 20AC 220V, 3PH, 60Hz, 20AC
System Dimensions
Approximate Dimensions D L x W x H (in /cm) 60 x 26 x 48.5 / 152.4 x 66.0 x 123.2 60 x 26 x 48.5 / 152.4 x 66.0 x 123.2 60 x 26 x 48.5 / 152.4 x 66.0 x 123.2
Approximate Weight (lbs/Kg) 270 / 122.47 300 / 136.08 330 / 149.68

Test Parameters: : 35,000 TDS Filtered (5-Micron), Dechlorinated, Municipal Feedwater, 65 psi / 4.50 bar Feed Pressure, 950 / 65.5 psi bar Operating Pressure, 77ªF / 25ªC, Recovery as stated, 7.0 pH. Data taken after 60 minutes of operation.

A. Low temperatures and feedwater quality, such as high TDS levels will significantly affect the systems production capabilities and performance. Computer projections must be run for individual applications which do not meet or exceed minimum and maximum operating limits for such conditions.
B. Product flow and maximum recovery rates are based on feedwater conditions as stated above. Do not exceed recommended permeate flow.
C. Varies with motor manufacturer
D. Does not include operating space requirements.


OPERATING LIMITS E
Design Temperature (°F / °C) 77 / 25 Maximum SDI Rating (SDI) 1
Maximum Feed Temperature (°F / °C) 85 / 29 Maximum Free Chlorine (ppm) 0
Maximum Feed Temperature (°F / °C) 40 / 4 Maximum TDS (ppm) < 45,000
Maximum Ambient Temperature (°F / °C) 120 / 49 Maximum Hardness (gpg) 1
Minimum Ambient Temperature (°F / °C) 40 / 4 Maximum pH (continuous) 11
Maximum Feed Pressure (psi / bar) 65 / 4 Minimum pH (continuous) 2
Minimum Feed Pressure (psi / bar) 45 / 3 Maximum pH (cleaning 30 minutes) 13
Maximum Operating Pressure (psi / bar) 1,000 / 69 Minimum pH (cleaning 30 minutes) 1
Maximum Feed Silt Density Index (SDI) < 3    

E. System pressure is variable due to water conditions. Permeate flow will increase at a higher temperature and will decrease at a lower temperature.

THE RIGHT SOLUTION FOR YOU

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