Eco-efficiency assessment of bioplastics production systems and end-of-life options

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Author listChangwichan K., Silalertruksa T., Gheewala S.H.

PublisherMDPI

Publication year2018

JournalSustainability (2071-1050)

Volume number10

Issue number4

ISSN2071-1050

eISSN2071-1050

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85044398591&doi=10.3390%2fsu10040952&partnerID=40&md5=f89189c78d24a18d22cbcb36a5641725

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

Bioplastics demand has been increased globally due to concerns regarding environmentally friendly consumption and production. Polylactic acid (PLA), polyhydroxyalkanoates (PHAs), and polybutylene succinate (PBS) are promising bioplastics with bio-based feedstocks and property of biodegradability. They are produced by bacterial fermentation of sugars from carbohydrate sources. With flexibility in their properties, PLA, PHAs, and PBS can potentially substitute conventional plastics such as polypropylene (PP), polyethylene terephthalate (PET), and polystyrene (PS). This study aims at evaluating the environmental and economic sustainability of bioplastics production together with end-of-life (EOL) options. The combination of environmental and economic indicators, eco-efficiency (E/E), was selected to investigate the performance of PLA, PHAs, and PBS from sugarcane and cassava in comparison with PP. The environmental impacts were determined using life cycle assessment. The product cost was used to represent the economic value. The E/E results showed that the environmental and economic sustainability could be enhanced with 100% mechanical recycling of all kinds of studied plastics. It is also important to highlight that mechanical recycling showed a better performance in terms of E/E than composting of bioplastics. ฉ 2018 by the authors.


Keywords

PBSPHAs


Last updated on 2023-26-09 at 07:41