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Edible Oil Refining Line

Product

Overview

An edible oil refining line turns crude vegetable oil into a clear, bland, stable product fit for human consumption. Crude oil pressed or solvent-extracted from seeds carries phosphatides (gums), free fatty acids, pigments, oxidation products, trace metals, pesticides and odor compounds. The line removes these in four sequential stages: degumming, neutralization, bleaching and deodorization. Each stage targets a specific class of impurity, and the order matters because later steps depend on the earlier ones having already stripped out interfering compounds.

The Degumming Section, Neutralization Section, Bleaching Section and Deodorization Section form the main process train. A Heat Recovery Section preheats incoming oil with heat carried by the hot deodorized product, cutting steam demand. A Pumping and Piping Skid moves oil between stages, a Electrical Control Panel automates the recipe and a Structural Frame and Platform carries the equipment and provides access platforms.

Degumming

Crude oil contains 0.5 to 3% phosphatides, which would foul downstream equipment and darken the oil if left in. The Degumming Section hydrates these gums so they grow large enough to separate. Oil enters the Degumming Mixing Tank at 60 to 90°C, where the Phosphoric Acid Dosing Unit meters in a small charge of food-grade phosphoric acid through a Static Mixer. The acid converts non-hydratable phosphatides, mainly calcium and magnesium salts, into a hydratable form.

Soft water is then added and the High-Shear Hydration Mixer, a rotor-stator head, disperses it finely so every gum particle picks up water. The wetted oil holds in the Retention Tank for a controlled dwell time, then passes to the Disc-Stack Centrifuge. This disc-stack separator spins at high speed; the heavier hydrated gum phase migrates outward and discharges through the bowl while the lighter degummed oil leaves through the center. Separated gums collect in the Gum Collection Tank and are often recovered as lecithin or sold for animal feed.

Neutralization

Free fatty acids cause off-flavors, foaming and poor oxidative stability. The Neutralization Section removes them by chemical refining. The Caustic Soda Dosing Unit meters sodium hydroxide solution in proportion to the measured acidity of the oil. The Neutralizer In-Line Mixer disperses the caustic, which reacts with the free fatty acids to form soap. This saponification completes in the Saponification Reaction Tank at 70 to 90°C.

The Soapstock Separator, another disc-stack centrifuge, draws off the heavy soapstock phase. Residual soap is then removed by the Water Wash Unit, which mixes in hot soft water; a second centrifuge stage separates the wash water. Finally the Vacuum Drier sprays the washed oil into a vacuum chamber where the Spray Nozzle atomizes it and a Steam Ejector holds the vacuum, flashing off residual moisture. Dry, low-acidity oil leaves this stage ready for bleaching.

Bleaching

Bleaching removes color pigments such as chlorophyll and carotenoids, along with residual soap, trace metals, oxidation products and any remaining phosphatides. In the Bleacher Vessel the oil is held at 90 to 110°C under vacuum of 50 to 70 mbar so it is not oxidized while hot. The Bleaching Clay Dosing Unit meters activated bleaching clay, typically 0.3 to 2% of the oil mass, through a Screw Feeder weighed by a Load Cell. The Steam Sparger agitates the slurry and strips dissolved air and moisture while the clay adsorbs impurities onto its high surface area.

After a 20 to 40 minute contact time, the slurry passes to the Plate Filter Press. Oil is pumped through stacked Filter Plate chambers lined with Filter Cloth; spent clay builds up as a cake while clear oil passes through. A Polishing Bag Filter traps any clay fines that slip past the press. The required vacuum is provided by the Bleacher Vacuum System, a steam ejector set backed by a Liquid Ring Vacuum Pump.

Deodorization

Deodorization is the final and most demanding stage. The Deodorization Section removes the volatile aldehydes, ketones and free fatty acids that carry odor and flavor, and it thermally destroys remaining pigments. The Deodorizer Feed Pump lifts oil into the Deodorizer Column, which holds it at 230 to 260°C under deep vacuum of 2 to 4 mbar absolute. At these conditions the volatile compounds have a much higher vapor pressure than the triglyceride oil, so steam stripping can carry them off without significant oil loss.

The Steam Sparger injects stripping steam, 0.5 to 2% of the oil mass, through the Sparge Nozzle array. The steam bubbles up through the oil on each Deodorizer Tray and packed Structured Packing, carrying volatiles into the vapor space. The Deodorizer Vacuum System is a four-stage ejector train that maintains the low pressure. Stripped fatty acids are recovered in the Fatty Acid Distillate Scrubber as a salable distillate. The hot finished oil passes through the Oil-to-Oil Economizer to give up heat to incoming oil, then through the Final Oil Cooler to reach storage temperature.

Heat, materials and utilities

The deodorizer demands a large heat input at high temperature, supplied by the Thermal Oil Heater through the Thermal Oil Heating Coil. The Thermal Oil Circulation Pump circulates the hot fluid and the Thermal Oil Expansion Tank absorbs its thermal expansion. The Oil-to-Oil Economizer recovers heat between the hot product and the cold feed, which can cut external heating by 40 to 60%.

Wetted parts are stainless steel 304 for tanks and piping, with 316L used where chlorides or fatty acid distillate raise corrosion risk. Reagent-contact components use PTFE diaphragms and seals. The vacuum trains rely on motive steam, and the centrifuges, mixers and pumps share a common set of motors and Ball Bearing and Oil Seal parts across the line.

Variants and use

Two refining routes exist. Chemical refining, described above, uses caustic neutralization and is robust for high-acidity or low-quality crude. Physical refining skips the caustic step: the degummed oil goes straight to bleaching and then to a deodorizer that also acts as a steam stripper for the free fatty acids, distilling them off in the same column. Physical refining yields less oil loss and produces no soapstock, but it requires very thorough degumming because residual phosphatides survive the higher temperatures and darken the oil. Palm oil is almost always physically refined, while soybean and other soft oils are commonly chemically refined.

Refined oil from these lines is sold as bottled cooking oil, blended into margarine and shortening, or supplied to food manufacturers as a neutral base. Capacity ranges from compact 50 tonne per day units for regional processors up to 300 tonne per day continuous lines feeding large bottling plants.

Bill of materials for Edible Oil Refining Line

8 top-level lines as of r116297
# Item / sub-assembly Part no. Qty/assy Ext. qty Parts Type
1 Degumming Section 6 parts oil-refining-line-degumming-section 1 0 assembly
2 Neutralization Section 6 parts oil-refining-line-neutralization-section 1 0 assembly
3 Bleaching Section 5 parts oil-refining-line-bleaching-section 1 0 assembly
4 Deodorization Section 6 parts oil-refining-line-deodorization-section 1 0 assembly
5 Heat Recovery Section 5 parts oil-refining-line-heat-recovery-section 1 0 assembly
6 Pumping and Piping Skid 9 parts oil-refining-line-pumping-skid 1 0 assembly
7 Electrical Control Panel 9 parts oil-refining-line-control-panel 1 0 assembly
8 Structural Frame and Platform 6 parts oil-refining-line-structural-frame 1 0 assembly

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