食品包装用高性能Pla / Phb吹膜的研制

Q3 Chemical Engineering Chemical engineering transactions Pub Date : 2021-07-01 DOI:10.3303/CET2187016
A. Pietrosanto, P. Scarfato, L. Maio, L. Incarnato
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引用次数: 6

摘要

在目前的工作中,聚乳酸(PLA) /聚s-羟基丁酸酯(PHB)共混物在广泛的组合物中用于吹膜挤出的适用性进行了评估,获得了用于食品包装应用的性能更好的薄膜。与纯聚乳酸相比,PHB与PLA共混可提高体系的吹膜加工性。此外,即使聚合物被发现是不混溶的,PHB的加入也改善了PLA的结晶,从而增加了最终开发体系的刚度、阻隔性能和光屏蔽能力。当PHB含量达到30wt .%时,薄膜的延展性也得到了提高。并对薄膜的透明度与结晶度、透氧性与弹性模量之间的关系进行了评价。
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Development of Pla / Phb Blown Films with Improved Performance for Food Packaging Applications
In the present work, the suitability of Polylactic acid (PLA) / Poly-s-hydroxybutyrate (PHB) blends for blown film extrusion was evaluated in a broad range of compositions, obtaining films with improved performance for food packaging applications. Blending PHB with PLA enhanced the processability of the systems for the film blowing process than neat PLA. Moreover, even though the polymers were found to be immiscible, the addition of PHB improved the crystallization of PLA, with a consequent increase in the stiffness, barrier properties and light-screening ability of the final developed systems. An increase in the ductility of the films was also achieved with a PHB content up to 30 wt.%. Correlations between the transparency and the crystallinity degree, and between the oxygen permeability and the elastic modulus of the films were also evaluated.
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来源期刊
Chemical engineering transactions
Chemical engineering transactions Chemical Engineering-Chemical Engineering (all)
CiteScore
1.40
自引率
0.00%
发文量
0
审稿时长
6 weeks
期刊介绍: Chemical Engineering Transactions (CET) aims to be a leading international journal for publication of original research and review articles in chemical, process, and environmental engineering. CET begin in 2002 as a vehicle for publication of high-quality papers in chemical engineering, connected with leading international conferences. In 2014, CET opened a new era as an internationally-recognised journal. Articles containing original research results, covering any aspect from molecular phenomena through to industrial case studies and design, with a strong influence of chemical engineering methodologies and ethos are particularly welcome. We encourage state-of-the-art contributions relating to the future of industrial processing, sustainable design, as well as transdisciplinary research that goes beyond the conventional bounds of chemical engineering. Short reviews on hot topics, emerging technologies, and other areas of high interest should highlight unsolved challenges and provide clear directions for future research. The journal publishes periodically with approximately 6 volumes per year. Core topic areas: -Batch processing- Biotechnology- Circular economy and integration- Environmental engineering- Fluid flow and fluid mechanics- Green materials and processing- Heat and mass transfer- Innovation engineering- Life cycle analysis and optimisation- Modelling and simulation- Operations and supply chain management- Particle technology- Process dynamics, flexibility, and control- Process integration and design- Process intensification and optimisation- Process safety- Product development- Reaction engineering- Renewable energy- Separation processes- Smart industry, city, and agriculture- Sustainability- Systems engineering- Thermodynamic- Waste minimisation, processing and management- Water and wastewater engineering
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