Development of biodegradable films using sunflower protein isolates and bacterial nanocellulose as innovative food packaging materials for fresh fruit preservation

被引:30
|
作者
Efthymiou, Maria-Nefeli [1 ]
Tsouko, Erminta [1 ]
Papagiannopoulos, Aristeidis [2 ]
Athanasoulia, Ioanna-Georgia [3 ]
Georgiadou, Maria [1 ]
Pispas, Stergios [2 ]
Briassoulis, Demetres [3 ]
Tsironi, Theofania [1 ]
Koutinas, Apostolis [1 ]
机构
[1] Agr Univ Athens, Dept Food Sci & Human Nutr, Iera Odos 75, Athens 11855, Greece
[2] Natl Hellen Res Fdn, Theoret & Phys Chem Inst, 48 Vassileos Constantinou Ave, Athens 11635, Greece
[3] Agr Univ Athens, Dept Nat Resources & Agr Engn, Athens 11855, Greece
关键词
CELLULOSE NANOCRYSTALS; STRUCTURAL-PROPERTIES; ESSENTIAL OILS; QUALITY; STORAGE; NANOPARTICLES; BARRIER; WASTE;
D O I
10.1038/s41598-022-10913-6
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
This study presents the valorization of side streams from the sunflower-based biodiesel industry for the production of bio-based and biodegradable food packaging following circular economy principles. Bacterial cellulose (BC) was produced via fermentation in 6 L static tray bioreactors using nutrient-rich supplements derived from the enzymatic hydrolysis of sunflower meal (SFM) combined with crude glycerol as carbon source. Novel biofilms were produced using either matrices of protein isolates extracted from sunflower meal (SFMPI) alone or SFMPI matrices reinforced with nanocellulose biofillers of commercial or bacterial origin. Acid hydrolysis was employed for ex-situ modification of BC to nanostructures (56 nm). The biofilms reinforced with bacterial nanocellulose structures (SFMPI-BNC) showed 64.5% higher tensile strength, 75.5% higher Young's modulus, 131.5% higher elongation at break, 32.5% lower water solubility and 14.1% lower water vapor permeability than the biofilms produced only with SFMPI. The biofilms were evaluated on fresh strawberries packaging showing that the SFMPI-BNC-based films lead to effective preservation at 10 degrees C considering microbial growth and physicochemical profile (weight loss, chemical characterization, color, firmness and respiration activity). The SFMPI-BNC-based films could be applied in fresh fruit packaging applications.
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页数:13
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