N on Dispersive Chemical Deacidification of Crude Palm Oil in Hollow Fiber Membrane Contactor
Недисперсионная химическая деацидификация сырого пальмового масла в контакторе с полым волоконным мембранным модулем
2015-09-30
SCID: 54.1/cmjkf4je
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chemical deacidificationcrude palm oilfree fatty acid removalhollow fiber membrane contactoroverall mass transfer coefficient
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Abstract (AI)
Performance of chemical deacidification of crude palm oil (CPO) using aqueous NaOH solution in a polysulfone hollow fiber ultrafiltration membrane was investigated.The effects of operating temperature, NaOH concentration and flow rates on percentage of free fatty acids (FFA) removal, oil loss, soap entrainment and overall mass transfer coefficient were evaluated.Overall mass transfer coefficients, soap content in oil and neutral oil loss all increased when the temperature was increased from 60 to 70°C due to an increase of the FFA distribution value.A minimum 0.25 N of NaOH or a NaOH to FFA molar ratio of about 7.62 was required to facilitate the expected extraction efficiency.The increased oil flowrate slightly enhanced the solute transport kinetics, while the aqueous phase flowrate did not significantly influence deacidification efficiency or mass transfer coefficient.About 97% of FFA removal was achieved within 4 hours.The maximum oil loss observed was 11% and the highest soap content in the oil without separation step was 3150 ppm.The values of the overall mass transfer coefficient varied from 2.97×10 -7 to 7.71×10 -7 m/s.These results show the potential of using the non dispersive membrane contacting process for chemical deacidification of CPO as well as other vegetable oils.
Key Findings
1
Approximately 97% FFA removal was achieved within 4 hours; maximum observed oil loss was 11% and soap content reached 3150 ppm without a separation step.
2
At least 0.25 N NaOH, corresponding to an NaOH-to-FFA molar ratio of approximately 7.62, was required for effective FFA extraction.
3
Chemical deacidification of crude palm oil was investigated using aqueous NaOH in a polysulfone hollow fiber ultrafiltration membrane contactor.
4
Increasing temperature from 60 to 70°C increased the overall mass transfer coefficient, soap content, and neutral oil loss because of higher FFA distribution.
5
Overall mass transfer coefficients ranged from 2.97×10^-7 to 7.71×10^-7 m/s; oil flowrate slightly enhanced transport, whereas aqueous flowrate had no significant effect on deacidification efficiency or mass transfer.
6
The results demonstrate the potential of nondispersive membrane contacting for chemical deacidification of crude palm oil and other vegetable oils.
Research Object
Chemical deacidification of crude palm oil using aqueous NaOH in a polysulfone hollow fiber ultrafiltration membrane contactor
Research Subject
Effects of operating temperature, NaOH concentration, and oil and aqueous-phase flow rates on FFA removal, mass-transfer performance, oil loss, and soap entrainment
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2015-09-30
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