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利用废弃生物聚合物的纳米复合包装薄膜的最新趋势:工业共生及其对可持续性的影响。

Recent trends in nanocomposite packaging films utilising waste generated biopolymers: Industrial symbiosis and its implication in sustainability.

机构信息

School of Bioengineering and Biosciences, Lovely Professional University, Phagwara, Punjab, India.

Department of Chemistry and Nanotechnology, The School of Engineering and Science, Tecnologico de Monterrey, Monterrey, Nuevo Leon, Mexico.

出版信息

IET Nanobiotechnol. 2023 May;17(3):127-153. doi: 10.1049/nbt2.12122. Epub 2023 Mar 13.

Abstract

Uncontrolled waste generation and management difficulties are causing chaos in the ecosystem. Although it is vital to ease environmental pressures, right now there is no such practical strategy available for the treatment or utilisation of waste material. Because the Earth's resources are limited, a long-term, sustainable, and sensible solution is necessary. Currently waste material has drawn a lot of attention as a renewable resource. Utilisation of residual biomass leftovers appears as a green and sustainable approach to lessen the waste burden on Earth while meeting the demand for bio-based goods. Several biopolymers are available from renewable waste sources that have the potential to be used in a variety of industries for a wide range of applications. Natural and synthetic biopolymers have significant advantages over petroleum-based polymers in terms of cost-effectiveness, environmental friendliness, and user-friendliness. Using waste as a raw material through industrial symbiosis should be taken into account as one of the strategies to achieve more economic and environmental value through inter-firm collaboration on the path to a near-zero waste society. This review extensively explores the different biopolymers which can be extracted from several waste material sources and that further have potential applications in food packaging industries to enhance the shelf life of perishables. This review-based study also provides key insights into the different strategies and techniques that have been developed recently to extract biopolymers from different waste byproducts and their feasibility in practical applications for the food packaging business.

摘要

废物的无控制产生和管理困难正在给生态系统造成混乱。虽然缓解环境压力至关重要,但目前还没有可行的策略来处理或利用废物材料。由于地球资源有限,需要一个长期、可持续和明智的解决方案。目前,废物作为可再生资源引起了广泛关注。利用剩余生物质废料似乎是一种绿色和可持续的方法,可以减轻地球上的废物负担,同时满足对生物基产品的需求。有几种可从可再生废物来源获得的生物聚合物,它们有可能在各种行业中广泛应用。与基于石油的聚合物相比,天然和合成生物聚合物在成本效益、环境友好性和用户友好性方面具有显著优势。通过工业共生将废物作为原材料利用,应作为通过企业间合作实现更高经济和环境价值的策略之一,朝着零废物社会迈进。本综述广泛探讨了可以从几种废物来源中提取的不同生物聚合物,以及它们在食品包装行业中进一步具有潜在应用的可能性,以延长易腐食品的保质期。这项基于综述的研究还深入了解了最近为从不同废物副产物中提取生物聚合物而开发的不同策略和技术,以及它们在食品包装业务中的实际应用的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fbc/10190667/5223a4a356e1/NBT2-17-127-g010.jpg

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