| Maceration |
low (use of natural and biodegradable solvents; low energy consumption) |
simple, low cost, does not require complex equipment; ideal for heat-sensitive compounds |
low efficiency, long extraction time; less effective for lipophilic compounds |
extraction of bioactive compounds (antioxidants, flavonoids) for antimicrobial packaging that extends food shelf life |
greater strength and increased shelf life of food |
74
|
| Magnetic stirring |
moderate (energy consumption, minimal waste) |
homogenizes solutions efficiently, fast, and easy; lower risk of thermal degradation |
extraction efficiency limited compared to advanced methods; not suitable for hard-to-extract compounds |
extraction of small amounts of bioactive compounds like antioxidants and antimicrobials for functional packaging with antioxidant release |
gradual release of antioxidants in packaging, prolonging food shelf life |
75
|
| Soxhlet extraction |
high (intensive use of solvents, high energy consumption) |
high efficiency, continuous extraction of lipophilic compounds; great for large volumes |
consumes a large volume of solvent, time-consuming, and expensive |
extraction of oils and lipophilic compounds for packaging that controls moisture, aroma, and antimicrobial properties |
moisture control and aroma preservation, with potential for antimicrobial packaging properties |
76
|
| Infusion |
low (simple solvents, minimal waste) |
fast and easy; suitable for volatile compounds like aromas and flavonoids |
incomplete extraction for more complex and hard-to-solubilize compounds |
extraction of flavors and aromas for controlled release packaging materials, suitable for flavor-sensitive food products |
packaging with controlled release of volatile compounds, improving the flavor and aroma of the packaged product |
77
|
| Decoction |
low (water as the main solvent, high thermal impact) |
ideal for hard plant materials like roots and peels; simple and accessible |
degrades heat-sensitive compounds, which can affect delicate bioactive compounds |
extraction of antioxidants, phytochemicals, and bioactive compounds for functional preservation packaging |
increased oxidative stability of packaged foods, preventing early spoilage |
78
|
| Hydrodistillation |
moderate (high energy consumption, water waste) |
ideal for extracting essential oils, such as fragrances and vegetable oils |
time-consuming process, high energy demand, and water waste |
extraction of essential oils for antimicrobial or aromatic packaging films |
packaging with antimicrobial, antibacterial, or scented properties |
79
|
| Percolation |
moderate (use of solvents, but efficient) |
controlled process, more efficient than Soxhlet for extracting soluble compounds |
slower process, less effective for large volumes |
extraction of antioxidants for food preservation and active packaging |
active packaging that extends the shelf life of packaged products, improving preservation |
80
|
| Accelerated solvent extraction (ASE) |
low (more efficient than Soxhlet, less solvent waste) |
fast, efficient, uses less solvent; ideal for lipophilic compounds |
requires specialized equipment, high initial cost |
extraction of bioactive compounds like antioxidants and flavonoids for antibacterial and antioxidant packaging |
packaging with enhanced antibacterial properties, increasing product durability |
81
|
| Enzyme-assisted extraction (EAE) |
low (use of natural catalysts, little waste) |
high selectivity and efficiency, no thermal degradation of compounds |
enzymes are expensive and may be inactive under adverse conditions |
extraction of plant bioactives like flavonoids and polyphenols for food preservative packaging |
packaging that prolongs food preservation without artificial additives, ideal for organic foods |
82
|
| Supercritical fluid extraction (SFE) |
low (green technology, based on CO2, no solvent waste) |
high efficiency, environmentally friendly, no use of organic solvents |
high-pressure equipment required, high cost |
extraction of bioactive and lipophilic compounds for sustainable packaging with a focus on environmental impact reduction |
biodegradable packaging with advanced antioxidant properties, ideal for long-lasting foods |
83
|
| Microwave-assisted extraction (MAE) |
low (minimal solvent use) |
fast and efficient process, but requires specialized equipment; may cause thermal degradation of sensitive compounds |
microwave radiation may affect the stability of fragile compounds |
ideal for extracting bioactive compounds, like antioxidants, to be incorporated into packaging films or materials to extend food shelf life |
results highlighted the viability of using olive leaf extract in biodegradable packaging, which not only improves food preservation but also provides additional health and economic benefits |
84
|
| Ultrasound-assisted extraction (UAE) |
low (reduced solvent use) |
high efficiency and fast, may be gentler on sensitive compounds if controlled |
may cause thermal degradation and release undesirable compounds |
extraction of bioactive compounds like antioxidants and antimicrobials for packaging materials that prolong food preservation |
packaging with antimicrobial and antioxidant properties offering additional protection to packaged products |
8
|
| Pulsed electric field extraction (PEF) |
moderate (requires high electrical energy) |
efficient for sensitive biomolecules, but requires a significant investment in equipment |
the process can be difficult to control for delicate compounds |
extraction of natural compounds that can improve mechanical and preservation properties in food packaging |
packaging with enhanced mechanical properties, offering greater resistance and prolonging the shelf life of food |
85
|
| Supercritical fluid extraction (SFE) |
low (considered green, uses CO2) |
high efficiency, no solvent waste, but requires high-pressure equipment and high costs |
high-pressure equipment required and high cost |
extraction of lipophilic and bioactive compounds for the development of functional and sustainable packaging with low environmental impact |
sustainable and biodegradable packaging with advanced antioxidant properties, ideal for sensitive foods |
86
|