intelligent packaging
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2022 ◽  
Vol 124 ◽  
pp. 107225
Author(s):  
Meng Cheng ◽  
Yingjun Cui ◽  
Xiaoran Yan ◽  
Rongfei Zhang ◽  
Juan Wang ◽  
...  

Sensors ◽  
2022 ◽  
Vol 22 (2) ◽  
pp. 544
Author(s):  
Andi Dirpan ◽  
Muspirah Djalal ◽  
Irma Kamaruddin

Combining intelligent and active packaging serves the dual purpose of detecting color changes in food that reflect changes in its quality and prolonging its shelf life. This study developed an intelligent and active packaging system made from the cellulose of Acetobacter xylinum and assessed its ability to detect changes in the quality and to increase shelf-life of packaged fresh beef. The properties of the intelligent packaging’s sensor and active packaging films were determined. The application of this system to fresh beef stored at room temperature (28 ± 2 °C) for 24 h was tested. The color of the bromothymol blue (BTB) solution (pH 2.75) in the indicator of the intelligent packaging system changed from orange to dark green to indicate that beef quality changed from fresh to rotten. The meat treated with the active packaging with 10% and 15% garlic extract decayed on the 16th h. In contrast, the meat treated with the active packaging without the garlic extracts rotted on the 12th h. The shift in the indicator’s color was linearly related to the total plate count (TPC), total volatile basic nitrogen (TVBN), and pH of the meat packaged using the active packaging system. Therefore, BTB solution (pH 2.75) can be used as an intelligent packaging indicator that will allow consumers to assess the quality of packaged meat easily. As an antimicrobial agent, the addition of 10–15% garlic extract to the active packaging films can help delay the spoilage of packaged beef.


Talanta ◽  
2022 ◽  
pp. 123230
Author(s):  
Lisa Rita Magnaghi ◽  
Camilla Zanoni ◽  
Giancarla Alberti ◽  
Paolo Quadrelli ◽  
Raffaela Biesuz

2021 ◽  
Vol 30 ◽  
pp. 100720
Author(s):  
Ana Romero ◽  
Julia L. Sharp ◽  
Paul L. Dawson ◽  
Duncan Darby ◽  
Kay Cooksey

2021 ◽  
Vol 22 (22) ◽  
pp. 12524
Author(s):  
Anna Masek ◽  
Angelika Plota ◽  
Julia Chrzastowska ◽  
Małgorzata Piotrowska

This study aimed to present the influence of bio-based and anthraquinone dyes and their combinations on the optical properties of ethylene-propylene (EPM) composites after thermo-oxidative and climatic aging. Therefore, the chosen polymer was filled with a natural, plant-origin flavonoid—quercetin, and with two commercial anthraquinone dyes (C.I. Solvent Yellow 163 and C.I. Solvent Red 207). The manufactured polymer composites were subjected to accelerated aging tests: weathering and thermo-oxidation, respectively. Examination of the materials’ properties indicated that the combination of synthetic and natural dyes can result in better resistance to oxidizing agents and higher thermal stability of ethylene-propylene products. Moreover, color change of quercetin-containing samples due to exposure to simulated atmospheric conditions could be a promising solution for use as aging indicators in intelligent packaging materials that will inform about the ongoing degradation process. Another interesting finding is that these samples exhibited good fungistatic activity against Candida albicans yeast and Aspergillus niger mold. Overall, this novel solution based on hybrid polymer composites containing natural and commercial dyes is a more environmentally friendly alternative to traditional materials used in the plastic packaging industry with better and more desirable properties.


2021 ◽  
Vol 18 (117) ◽  
pp. 171-182
Author(s):  
Mostafa Jafarian ◽  
Esmaeel Seyedabadi ◽  
Mohammad Hossein Saeidirad ◽  
Jalal Baradaran Motie ◽  
M Hosseinpour ◽  
...  

Foods ◽  
2021 ◽  
Vol 10 (9) ◽  
pp. 2088
Author(s):  
Kalpani Y. Perera ◽  
Shubham Sharma ◽  
Dileswar Pradhan ◽  
Amit K. Jaiswal ◽  
Swarna Jaiswal

Food contact materials (FCMs) are materials that come in contact with food products such as food packaging which play a significant role in the food quality and safety. Plastic, which is a major food packaging material, harms the eco-system, wildlife, and the environment. As a result, numerous researches have been in progress on alternative polymers, which has similar properties as plastic but is also environmentally friendly (biodegradable). In recent years, the utilization of seaweed polysaccharides has piqued interest due to its biodegradability, non-toxicity, antioxidant capabilities, and excellent film formation ability. However, it has a number of drawbacks such as low tensile strength, water solubility, and moderate antibacterial characteristics, among others. The addition of other biopolymers, nanoparticles, or natural active agents improves these features. In this review article, we have summarized the current state of seaweed polysaccharide research in active packaging, intelligent packaging, edible films, and coatings. It also highlights the physical, thermal, antioxidant, and other properties of these materials. Finally, the article discusses the relevant legislation as well as the field’s future prospects. Research shows that seaweeds polysaccharide looks promising as a sustainable food contact material, but there is always a potential for development to make it market feasible.


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