Modern methods apply these biochemical principles using advanced technology:
Controlled fermentation: Uses precise temperature and pH control to guide fermentation by beneficial microorganisms. Yeast converts glucose to ethanol and carbon dioxide:
C6H12O6→2C2H5OH+2CO2+energy
The alcohol and organic acids produced create conditions that inhibit spoilage microorganisms.
Pasteurization: Applies heat to destroy pathogens while preserving food quality. Low-Temperature Long-Time (LTLT) uses 63°C for 30–60 minutes, while High-Temperature Short-Time (HTST) uses 72°C for 15 seconds. Ultra-High Temperature (UHT) uses 135°C–150°C for 2–5 seconds.
Pressure canning: Heats food under high pressure (about 240°F or 116°C) to destroy heat-resistant bacterial spores, particularly Clostridium botulinum that causes botulism. This is essential for low-acid foods.
Sterilization: Exposes food to temperatures of 110°C–121°C for 15–30 minutes under pressure to destroy all microorganisms, including spores. Foods can be stored at room temperature for months or years.
Dehydration: Removes water using solar drying, hot air drying, freeze-drying, or vacuum drying. Reduced moisture limits microbial growth and enzyme activity.
Refrigeration and freezing: Uses low temperatures to slow or stop microbial growth and enzymatic reactions. Freezing turns water to ice, making it unavailable for microorganisms.
Vacuum packaging: Removes air from packages before sealing, limiting oxygen available for microbial growth and chemical reactions that cause spoilage.
Irradiation: Exposes food to controlled ionizing radiation (beta particles or gamma rays) that damages microbial DNA, killing bacteria, moulds, and insects while delaying ripening in fruits.
Chemical preservation: Uses preservatives such as salt, sugar, benzoic acid, sorbic acid, and propionic acid that interfere with microbial cell division, membrane permeability, and enzyme activity.
Pascalization (High Pressure Processing): Uses high pressure (300–600 MPa) to destroy microorganisms and inactivate enzymes without heat. This preserves nutritional value and sensory qualities.
Hurdle technology: Combines multiple preservation techniques—mild heat, low temperature, reduced water activity, and acidity control—to create multiple barriers against microorganisms. Each hurdle adds pressure on microbial survival, making the food environment too difficult for spoilage organisms.
Ultraviolet (UV) light treatment: Uses UV radiation to inactivate microorganisms on food surfaces without heat or chemicals.