- Temperature
- Color
- Moisture
- FFA Conc
- TSS
- Temperature
- pH
- pH
- Temperature
- COD
- BOD
- TOC
- Temperature
- Phosphorus Conc
- Turbidity
- FFA Conc
- pH
- Temperature
- COD
- BOD
- TOC
- Fatty Acid Conc
- Temperature
- Fatty Acid Conc
- Water Content
- Temp
- Fatty Acid Conc
- Temperature
- pH
- Temperature
- COD
- BOD
- TOC
- Viscocity
- Temperature
- Alcohol Conc
- Temperature
- Moisture
- Temperature
- Acid Conc
- Ester Conc
- pH
- Temperature
- COD
- BOD
- TOC
- Final beverage pH
- Dissolved Oxygen (low)
- Turbidity
- Temperature
- Color
- Moisture
- FFA Conc
- TSS
- Temperature
- pH
- pH
- Temperature
- COD
- BOD
- TOC
- Temperature
- Phosphorus Conc
- Turbidity
- FFA Conc
- pH
- Temperature
- COD
- BOD
- TOC
- Fatty Acid Conc
- Temperature
- Fatty Acid Conc
- Water Content
- Temp
- Fatty Acid Conc
- Temperature
- pH
- Temperature
- COD
- BOD
- TOC
- Viscocity
- Temperature
- Alcohol Conc
- Temperature
- Moisture
- Temperature
- Acid Conc
- Ester Conc
- pH
- Temperature
- COD
- BOD
- TOC
- Final beverage pH
- Dissolved Oxygen (low)
- Turbidity
Parameter
Potential Technology
Conductivity
Electrochemical
Turbidity
Scattered light measurement
pH
Glass/Combination Electrode
Temperature
Electrical Resistance Change
Total Suspended Solid
Scattered light
Moisture
–
Viscosity
Potentiostatic
COD
High Temperature Combustion
BOD
High Temperature Combustion
Fatty Acid Conc
Ultrasonic Wave
Phosphorus Conc
Ultrasonic Wave
Alcohol Conc
Ultrasonic Wave
Acid Conc
Ultrasonic Wave
Ester Conc
Ultrasonic Wave
Color
Direct Colorimetric
TOC
Membrane Conductometric
Parameter
Temperature
Color
Moisture
FFA Conc
TSS
Potential Technology
Electrical Resistance Change
Direct Colorimetric
–
–
Scattered light
Parameter
Temperature
pH
Potential Technology
Electrical Resistance Change
Glass/Combination Electrode
Parameter
Temperature
pH
COD
BOD
TOC
Potential Technology
Electrical Resistance Change
Glass/Combination Electrode
High Temperature Combustion
High Temperature Combustion
Membrane Conductometric
Parameter
Temperature
Phosphorus Conc
Turbidity
FFA Conc
Potential Technology
Electrical Resistance Change
Ultrasonic Wave
Scattered light measurement
–
Parameter
Fatty Acid Conc
Temperature
Potential Technology
Ultrasonic Wave
Electrical Resistance Change
Parameter
Fatty Acid Conc
Temperature
Potential Technology
Ultrasonic Wave
Electrical Resistance Change
Parameter
Viscosity
Temperature
Potential Technology
Ultrasonic Wave
Electrical Resistance Change
Parameter
Alcohol Conc
Temperature
Potential Technology
Ultrasonic Wave
Electrical Resistance Change
Parameter
Moisture
Temperature
Acid Conc
Ester Conc
Potential Technology
–
Electrical Resistance Change
Ultrasonic Wave
Ultrasonic Wave
Parameter
pH
Temperature
COD
BOD
TOC
Potential Technology
Glass/Combination Electrode
Electrical Resistance Change
High Temperature Combustion
High Temperature Combustion
Membrane Conductometric
Parameter
Temperature
Chemical Conc
pH
Conductivity
TOC
Potential Technology
Electrical Resistance Change
Ultrasonic Wave
Glass/Combination Electrode
Electrochemical
Membrane Conductometric
Description
The oleochemical industry converts natural oils into fatty acids, alcohols, glycerin, surfactants, and bioderivatives. These processes require precise control of reaction temperatures, purity levels, distillation efficiency, and contamination prevention.
Centrionics provides advanced measurement tools for process optimization, quality assurance, and environmental monitoring across esterification, hydrogenation, and splitting processes.