生物塑料
生化工程
食物垃圾
食品包装
环境污染
环境科学
废物管理
化学
工程类
食品科学
环境保护
作者
Massimo Bagnani,Mohammad Peydayesh,Thomas Knapp,Edouard Appenzeller,Daniel Sutter,Stefan Kränzlin,Yi Gong,Alexandra Wehrle,Stella Greuter,Matthias Bucher,Markus Schmid,Raffaele Mezzenga
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2024-02-08
卷期号:25 (3): 2033-2040
被引量:4
标识
DOI:10.1021/acs.biomac.3c01416
摘要
The global plastic waste problem is pushing for the development of sustainable alternatives, encouraged by stringent regulations combined with increased environmental consciousness. In response, this study presents an industrial-scale proof of concept to produce self-standing, transparent, and flexible bioplastic films, offering a possible solution to plastic pollution and resource valorization. We achieve this by combining amyloid fibrils self-assembled from food waste with methylcellulose and glycerol. Specifically, soy whey and okara, two pivotal protein-rich byproducts of tofu manufacturing, emerge as sustainable and versatile precursors for amyloid fibril formation and bioplastic development. An exhaustive industrial-scale feasibility study involving the transformation of 500 L of soy whey into ∼1 km (27 kg) of bioplastic films underscores the potential of this technology. To extend the practicality of our approach, we further processed a running kilometer of film at the industrial scale into transparent windows for paper-based packaging. The mechanical properties and the water interactions of the novel film are tested and compared with those of commercially used plastic films. By pioneering the large-scale production of biodegradable bioplastics sourced from food byproducts, this work not only simultaneously addresses the dual challenges of plastic pollution and food waste but also practically demonstrates the feasibility of biopolymeric building block valorization for the development of sustainable materials in real-world scenarios.
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