Fatty acid separation in the palm oil production

Instrumentation Enabling Heat Recovery Processes for Improved Energy Efficiency in Fatty Acid Separation

Fatty acid separation is basically achieved in a combined stripper/distiller, where odours are removed at the same time: the fatty acids can be separated according to their different boiling points. Preheated fatty acid feed is made to flow through a series of reaction chambers.
Each reaction chamber is heated at the bottom, typically by superheated steam, which is injected into the feed in each chamber through a sparger. The low pressure imposed in the reaction chamber and the high temperature of the feed and the superheated steam flow all agitate and evaporate the fatty acids, in a form of distillation.

The vapours are led to a pipe header and condensed in a water-cooled condenser. The steam passes through, travelling on to the barometric condenser: the non-condensable gases are removed by a vacuum pump. The residue leaving the base of the last reaction chamber is cooled. In all these process steps measurements of pressure and temperature are crucial. One disadvantage of steam distillation of fatty acids is the formation of emulsions in the last stage of condensation, where a water spray is used. The calcium and magnesium salts typically present in the water spray react with the fatty acids forming soaps.
To recover the fatty acids, the soap is acidified and redistilled if desired.

Requirements

  • Overfilling prevention
  • SIL 2/3 certified for safety-related applications

Requirements

  • High accuracy mass flow and density measurement
  • Device commissioning, verification, diagnostics and monitoring via a secure wireless Bluetooth

Requirements

  • Thermowell material: 1.4404 / 316L or 1.4571 / 316Ti
  • High pressure overload resistance

Requirements

  • Filter DP monitoring

Requirements

  • Integrated gross and net heat calculation
  • Integral pressure and temperature compensation (option)

Requirements

  • Thermowell material: 1.4404 / 316L or 1.4571 / 316Ti
  • Different connection heads available (IP54…IP68)

Requirements

  • High accuracy mass flow control for deodoriser
  • Integrated temperature measurement

Requirements

  • Thermowell material: 1.4404 / 316L or 1.4571 / 316Ti
  • Applications with low to medium pressures and flow velocities

Requirements

  • Thermowell material: 1.4404 / 316L or 1.4571 / 316Ti
  • Applications with low to medium pressures and flow velocities

Requirements

  • Monitoring of packet condition

Requirements

  • Process control

Requirements

  • Optimized deodorization
  • Full compensation of temperature and pressure

Requirements

  • Process control

Requirements

  • Bi-directional flow measurement over a wide dynamic range
  • Cost-saving installation without grounding rings

Requirements

  • Optional heating jacket available
  • For extended process temperature ranges

Requirements

  • High accuracy mass, density and volume flow measurement
  • Cost-effective twin straight tube Coriolis mass flowmeter

Requirements

  • Compression fitting connection
  • Ex works with optional temperature transmitter

Requirements

  • High accuracy mass, density and volume flow measurement
  • Cost-effective twin straight tube Coriolis mass flowmeter
Email
Contact