Solvent recovery and partial deacidification of vegetable oils by membrane technology
Восстановление растворителя и частичная деацидификация растительных масел мембранной технологией
1996-01-01
SCID: 54.1/6dqpurf2
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free fatty acidsnanofiltration membranespartial deacidificationsolvent recoveryvegetable oils
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Abstract (AI)
Abstract A process is described using nanofiltration membranes for the partial de‐solventizing and de‐acidification of hexane‐extracted vegetable oils. The model miscella (containing 20% soybean oil with 2% free fatty acids) was concentrated to 45% oil at an average flux of 91/m2h at 2.76 MPa and 24°C. The permeate from this stage was re‐concentrated 9‐fold at an average flux of 201/m2h. The net recovery of oil was more than 99%, with a simultaneous 40% reduction of FFA and over 50% reduction in the energy required for evaporation of hexane.
Key Findings
1
A model miscella containing 20% soybean oil and 2% free fatty acids was concentrated to 45% oil at an average flux of 91/m²h under 2.76 MPa and 24°C.
2
Membrane processing reduced the energy required for hexane evaporation by more than 50%.
3
Nanofiltration membranes enabled partial solvent recovery and deacidification of hexane-extracted vegetable oils.
4
The permeate was re-concentrated ninefold at an average flux of 201/m²h.
5
The process achieved more than 99% net oil recovery while reducing free fatty acids by 40%.
Research Object
Hexane-extracted vegetable oil miscella containing soybean oil and free fatty acids
Research Subject
Nanofiltration-based partial desolventizing and deacidification, including solvent recovery, oil recovery, free-fatty-acid reduction, and reduced hexane-evaporation energy
Publication Details
Publication Date
1996-01-01
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