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Seta Auto-Oxidation Stability Bath

Company: Stanhope-Seta

Methods: ASTM D525, ASTM D5304, ASTM D873, BS 2000-138 & IP 138, BS EN ISO 7536 & BS 2000-40 & ISO 7536, IP 40

This unit measures the induction period for oxygen in gasoline, and allows the weight of gum and residue in aviation fuel to be determined by direct weighing.

Comprising a heated water bath with reflux condenser, a cold water plunge tank for cooling test vessels after each test, and an integral system for charging oxidation vessels prior to test

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  • Operating temperature 100°C
  • Water Bath with integral condenser
  • 4 x test stations
  • Cold plunge bath
  • Seta Auto-Oxi Automatic Pressure Monitoring
  • Integral vessel charge system
  • Constant level device

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Capacity: 60 litres
Fluid type: Water
Temperature: Bath: 100 °C Thermometer: 0 to 105 °C
Max no of test vessels: 4 (Not included with the instrument)
Vessel charging: 1380 kPa (200 psi) maximum
Vessel cooling: Cold water plunge tank
Pressure range/Accuracy: 0-1600 kPa (0-16 bar)/0.1% of span
Max Test duration: 120 hrs / 7200 mins
Calibration: Pressure and Temperature sensing with traceable certificate
Safety & protection: CE certified / IP 67 rated
Software operating requirements: Windows XP,Vista,7, or 8 (32 and 64 bit) USB or LAN Printer (optional)
Power: 3 kW
Voltage: 220/240 V, 50/60 Hz

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ASTM D5304 Oxidation Stability of Gasoline (Induction Period Method)
BS 2000-138 & IP 138 Methods of test for petroleum and its products. Determination of oxidation stability of aviation fuel. Potential residue method
ASTM D873 Standard test method for oxidation stability of aviation fuels (potential residue method)
IP 40 Determination of oxidation stability of gasoline – Induction period method
ASTM D525 Standard test method for oxidation stability of gasoline (induction period method)
BS EN ISO 7536 & BS 2000-40 & ISO 7536 Petroleum products. Determination of oxidation stability of gasoline. Induction period method.

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