Many new investors ask us, “For soybeans, is cold pressing or hot pressing better? Which offers greater commercial advantages?” The answer is not set in stone. Let’s take an in-depth look at the scientific principles, economic benefits, and practical operations of cold pressing and hot pressing so you can make an informed decision for your soybean processing plant.

1. Cold Pressing (Physical Mechanical Pressing)
How It Works: Raw soybeans are cleaned, dehulled, and conditioned (moisture and temperature adjusted mildly, usually below 60–70°C) without any high-temperature roasting or steaming. The soybean oil extraction machine operates purely via mechanical screw pressing, using friction and high pressure to squeeze out the oil.
Advantages of Cold Pressing
- Minimal protein denaturation – The natural protein structure remains largely intact (the Protein Dispersion Index, PDI, remains above 75–80%).
- High-quality soybean meal – The defatted soybean meal retains excellent functional properties (water-holding capacity, emulsifying properties, and gelling properties).
- Ideal for specialty products – This soybean meal is the preferred raw material for making tofu skin (fuzhu), dried tofu, fermented soy products, as well as isolated soy protein and soy protein concentrate used in plant-based meat and nutritional supplements.
- Natural flavor – The oil retains more of the soybean’s natural grassy and nutty aromas, meeting the demands of the “clean label” and organic food markets.
- Lower energy consumption – Compared to hot pressing, the absence of roasting or cooking steps reduces thermal energy consumption by 30–40%.
Disadvantages of Cold Pressing
- Milder oil aroma – This oil lacks the rich, roasted aroma that many consumers associate with traditional cooking oils.
- Slightly lower oil extraction rate – Mechanical pressing alone typically extracts 85–90% of the oil, leaving 6–8% residual oil in the soybean meal (compared to 4–5% for hot pressing).
- Shorter shelf life without refinement – Higher phospholipid and moisture content can accelerate oxidation if proper degumming and filtration are not performed.
2. Hot-pressing Method (High-Temperature Cooking/Pressing)-The Industrial Workhorse
How It Works: Soybeans are first subjected to high-temperature steaming or roasting (120–130°C, 30–60 minutes) to break down cell walls, denature proteins, and reduce oil viscosity. The heated material then feeds into a soybean oil extraction machine, often combined with pre-pressing and solvent extraction in large-scale plants.

Advantages of Hot Pressing
- Rich and full-bodied oil flavor – The Maillard reaction and caramelization impart a rich, roasted aroma to soybean oil, a flavor profile that dominates the edible oil market.
- Higher oil yield – Heating reduces the viscosity of the oil, making it easier to press. Combined with solvent extraction, the total oil yield can reach 98–99%.
- Better suited for large-scale edible oil refining – the crude oil has a lower phospholipid content, simplifying the degumming and neutralization steps in standard edible oil refining machines.
- Faster processing speed – softer, cooked beans are easier to feed smoothly into screw presses, thereby increasing hourly output.
Disadvantages of Hot Pressing
- Severe protein denaturation – protein solubility drops sharply (PDI value below 20–30%), rendering the soybean meal unsuitable for human consumption.
- Limited meal applications – the resulting soybean meal is primarily used as animal feed (high in metabolizable energy for poultry and swine) or as a raw material for fermented soy sauce and hydrolyzed vegetable protein, but cannot be used to produce tofu, dried tofu strips, or isolated protein.
- Higher operating costs – requires a steam boiler, fuel, and additional emission control equipment.
- Potential for trans-fatty acid formation – prolonged exposure to high temperatures may slightly increase the formation of undesirable lipid byproducts.
3. Head-to-Head Comparison Table for Your Soybean Processing Plant
| Parameter | Cold Pressing | Hot Pressing |
|---|---|---|
| Feed temperature | ≤ 70°C | ≥ 120°C |
| Oil extraction rate | 85–90% (mechanical only) | 95–99% (with solvent aid) |
| Residual oil in meal | 6–8% | 4–5% |
| Protein dispersibility (PDI) | 75–80% | < 30% |
| Meal primary market | Human food ingredients (tofu, yuba, protein isolates) | Animal feed, soy sauce, fertilizer |
| Oil flavor intensity | Mild, nutty | Strong, roasted |
| Refining complexity | Higher (more gums) | Lower (easier degumming) |
| Energy cost per ton | Lower (no cooking) | Higher (steam generation) |
| Equipment investment | Standard screw press + conditioning | Screw press + cooker/roaster + solvent recovery (for full-line) |
4. How to Choose Based on Your Business Model
Choose Cold Pressing if:
- Your target customers are in the plant-based protein industry (meat alternatives, protein bars, dairy alternatives).
- Your local market demands premium, minimally processed cooking oil with a “raw” or “virgin” label.
- You own a food-grade processing plant and can separate soybean meal for human consumption.
- You are willing to accept a 3–5% reduction in oil yield in exchange for higher soybean meal value (cold-pressed soybean meal may sell for 1.5–2 times the price of baked soybean meal).
Choose Hot Pressing if:
- Your primary revenue comes from selling bulk cooking oil to supermarkets or restaurant chains.
- You operate a large integrated plant and use solvent extraction to maximize oil recovery.
- Your soybean meal byproduct will be sold to the local animal feed market, where protein quality is more important than energy content.
- You already have a soybean oil extraction machine with a built-in cooker and can absorb higher energy costs.
Need expert guidance?
Choosing the right soybean oil extraction machine is just the beginning. The real value lies in combining it with the right pretreatment, conditioning, filtration, and soybean meal processing systems. Whether you choose a cold, hot, or hybrid extractor, we recommend conducting a pilot test using your actual soybean varieties before making a full-scale purchase. Contact our technical team to obtain a customized feasibility study; our process engineers will help you compare capital expenditures, operating expenses, and product revenue based on your target market and raw material sources.

