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Ponovno izumljanje embalaže hrane z varno in trajnostno biološko razgradljivo plastiko, ki absorbira kisik
United Kingdom🏛️ PolitikaSredinapred 7 urami

Ponovno izumljanje embalaže hrane z varno in trajnostno biološko razgradljivo plastiko, ki absorbira kisik

Raziskovalci z univerze Hasanuddin v Indoneziji so razvili novo vrsto biorazgradljive plastike za embalažo hrane, ki aktivno absorbira kisik, da podaljša svežino, hkrati pa ohranja strukturno celovitost. Material temelji na polilaktični kislini (PLA) in je okrašen z mikrokristalno celulozo (MCC), pridobljeno iz fermentirane kokosove vode, namesto iz tradicionalnih virov, kot so les ali pridelki.

Researchers at Hasanuddin University in Indonesia have developed a new type of biodegradable plastic designed for food packaging that both scavenges oxygen and maintains structural integrity. The innovation, led by Professor Andi Dirpan, introduces a multilayered film composed of polylactic acid (PLA) reinforced with microcrystalline cellulose (MCC) derived from fermented coconut water and infused with an oxygen-scavenging compound, butylated hydroxytoluene (BHT). This material aims to address the shortcomings of traditional plastics by offering improved durability and active oxygen management while remaining environmentally friendly. The research team utilized bacterial cellulose sourced from fermented coconut water, a method akin to producing 'nata de coco.' This approach yielded a high-purity cellulose that was processed into MCC powder and integrated into a three-layered PLA film. The BHT compound was strategically positioned in the inner layers to interact directly with the contents being packaged. Testing revealed that increasing the concentration of MCC significantly enhanced the mechanical strength of the film while reducing oxygen permeability. However, this improvement came with increased rigidity, affecting the material's flexibility. Microscopic examination indicated that the MCC obtained from coconut water produced a more consistent and defect-free structure compared to commercially available MCC. This structural advantage translated into better performance during oxygen permeability tests, where the modified film outperformed standard PLA. Additionally, the material demonstrated rapid biodegradation, with approximately 28.86% degradation observed over 25 days when buried in soil. These findings align with established benchmarks for biodegradable plastics, suggesting the material’s potential for widespread application. Despite these advantages, the study identified limitations. While the reinforced film exhibited greater stiffness and effective oxygen scavenging, it lacked the necessary elasticity to withstand typical handling conditions. This brittleness poses challenges for practical use, as packaging materials must endure various stresses during production, transportation, and storage. The balance between functional performance and physical resilience remains a critical area for further refinement. The choice of bacterial cellulose as a reinforcement agent highlights an innovative shift away from conventional sources like wood or agricultural crops. By leveraging the fermentation process familiar in food production, the researchers tapped into a renewable resource with superior structural qualities. This approach not only supports sustainability goals but also integrates existing industrial practices, potentially easing adoption among manufacturers. As the global demand for sustainable packaging solutions continues to rise, this breakthrough represents a step forward in addressing environmental concerns without compromising food safety or quality. Future developments may focus on optimizing the material’s flexibility while preserving its oxygen-scavenging capabilities. Such advancements could lead to broader industry acceptance and regulatory approval, paving the way for a more sustainable future in food packaging.

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Phys.org logoPhys.orgNeodvisenSredinaDejstva 85Objektivnost 90pred 7 urami
Ponovno izumljanje embalaže hrane z varno in trajnostno biološko razgradljivo plastiko, ki absorbira kisik

Raziskovalci z univerze Hasanuddin v Indoneziji so razvili novo vrsto biorazgradljive plastike za embalažo hrane, ki aktivno absorbira kisik, da podaljša svežino, hkrati pa ohranja strukturno celovitost. Material temelji na polilaktični kislini (PLA) in je okrašen z mikrokristalno celulozo (MCC), pridobljeno iz fermentirane kokosove vode, namesto iz tradicionalnih virov, kot so les ali pridelki.

Ocena pristranskosti (Sredina): Članek predstavlja znanstvene raziskave brez očitnega ideološkega okvirja.Osredotočen je na tehnične dosežke pri biološko razgradljivi plastiki, ne da bi se odločil o okoljskih politikah ali političnih razpravah.

Zakaj dejstva (85): The article accurately describes the research by Andi Dirpan and his team involving MCC and BHT in PLA-based films. It references the ASEAN Journal for Science and Engineering in Materials as the publication venue, aligning with the primary sources. However, it omits specific details like the exact

Zakaj objektivnost (90): The article presents the information in a neutral and informative manner, avoiding overt bias or emotional language. It focuses on describing the scientific innovation without taking sides or injecting personal opinion.

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