Influences of the crystallisation rate on thermal and barrier properties of polylactide acid (PLA) food packaging films

2008 ◽  
Vol 1 (S1) ◽  
pp. 607-610 ◽  
Author(s):  
G. Colomines ◽  
S. Domenek ◽  
V. Ducruet ◽  
A. Guinault
Nanomaterials ◽  
2019 ◽  
Vol 9 (3) ◽  
pp. 368 ◽  
Author(s):  
Susana Guzman-Puyol ◽  
Luca Ceseracciu ◽  
Giacomo Tedeschi ◽  
Sergio Marras ◽  
Alice Scarpellini ◽  
...  

All-cellulose composites with a potential application as food packaging films were prepared by dissolving microcrystalline cellulose in a mixture of trifluoroacetic acid and trifluoroacetic anhydride, adding cellulose nanofibers, and evaporating the solvents. First, the effect of the solvents on the morphology, structure, and thermal properties of the nanofibers was evaluated by atomic force microscopy (AFM), X-ray diffraction (XRD), and thermogravimetric analysis (TGA), respectively. An important reduction in the crystallinity was observed. Then, the optical, morphological, mechanical, and water barrier properties of the nanocomposites were determined. In general, the final properties of the composites depended on the nanocellulose content. Thus, although the transparency decreased with the amount of cellulose nanofibers due to increased light scattering, normalized transmittance values were higher than 80% in all the cases. On the other hand, the best mechanical properties were achieved for concentrations of nanofibers between 5 and 9 wt.%. At higher concentrations, the cellulose nanofibers aggregated and/or folded, decreasing the mechanical parameters as confirmed analytically by modeling of the composite Young’s modulus. Finally, regarding the water barrier properties, water uptake was not affected by the presence of cellulose nanofibers while water permeability was reduced because of the higher tortuosity induced by the nanocelluloses. In view of such properties, these materials are suggested as food packaging films.


2019 ◽  
Vol 59 ◽  
pp. 77-93 ◽  
Author(s):  
Siti Hajar Othman ◽  
Hee Nyia Ling ◽  
Rosnita A. Talib ◽  
Mohd Nazli Naim ◽  
Nazratul Putri Risyon ◽  
...  

The usage of biopolymers in developing biodegradable food packaging films that are sustainable and safe towards environment has been restricted because of the poor mechanical and barrier properties of the biopolymers. This study aims to enhance the limited properties of biopolymers particularly polylactic acid (PLA) for food packaging applications by investigating the effects of incorporating different types (montmorillonite (MMT) and halloysite) and concentrations (0–9 wt.%) of nanoclays on the mechanical, oxygen barrier, and transparency properties of the films. PLA with 3 wt.% concentration of nanoclays resulted in the optimum mechanical and oxygen barrier properties due to the strong interaction between nanoclays and torturous path length created by nanoclays respectively. Nevertheless, these properties reduced as more nanoclays (≥5 wt.%) was added into the films due to agglomeration of nanoclays. PLA incorporated with MMT nanoclay exhibited better properties compared to halloysite nanoclay due to the nanoclay structure in nature. Addition of 3 wt.% nanoclays into virtually transparent PLA film have only small effects on the transparency of the film whereby the reduction in light transmittance was only around 10%. This study is crucial to improve the feasibility of biopolymers usage for food packaging applications.


2021 ◽  
Vol 7 (2) ◽  
pp. 6-29
Author(s):  
V. I. ZHARKEVICH ◽  
◽  
T. A. SAVITSKAYA ◽  
D. D. HRYNSHPAN ◽  
T. J. SIMAT ◽  
...  

Author(s):  
Thomás Corrêa Vianna ◽  
Carolina Oliveira Marinho ◽  
Luís Marangoni Júnior ◽  
Salam Adnan Ibrahim ◽  
Roniérik Pioli Vieira

2020 ◽  
Vol 235 ◽  
pp. 115944 ◽  
Author(s):  
Asad Riaz ◽  
Camel Lagnika ◽  
Hao Luo ◽  
Meimei Nie ◽  
Zhuqing Dai ◽  
...  

2021 ◽  
Author(s):  
Hao Wang ◽  
Yixiang Du ◽  
Zhenyuan Wang ◽  
Wen Yu ◽  
Ling Zhang ◽  
...  

In this study, we developed an environmentally friendly food cling film exhibiting high antioxidant and antibacterial performances, wherein a novel ionic liquid (IL) of matrine coconut acids ([Mat][Coc]) having excellent...


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