article · Journal of Natural Fibers
This review examines Enset (false banana) fibres, an abundant agricultural waste product in Ethiopia, where 150,000 tons are generated annually. Researchers are exploring their potential for cellulosic nanocrystals, paper, and composite materials. However, a limited and inconsistent understanding of their chemical, physical, mechanical, and thermal properties currently hinders their widespread use. The review consolidates existing research, discusses the unique properties and potential of Enset fibres as green composites, paper, and cellulosic nanocrystals, and highlights challenges and future research directions to inform manufacturing and further studies.
Utilising Enset fibres offers a sustainable way to convert agricultural waste into valuable materials, potentially creating economic benefits and addressing environmental concerns. This research helps unlock the potential of an abundant natural resource for various industrial applications.
Enset fibres show potential for use in cellulosic nanocrystals, paper, and composite production. While promising, their application is currently limited by a lack of consistent data on their properties. This is early-stage research focused on characterisation and data organisation, aiming to inform future studies and manufacturing decisions for potential industry partners interested in sustainable material development.
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Current research and design initiatives are cautiously focused on the use of natural fibers from agricultural waste, as they can generate financial gains, improve crop sustainability, and effectively address environmental issues. In Ethiopia, an estimated 100–million Enset plants are harvested annually for their starchy food, providing 20% of the population. This process generates approximately 150,000 tons of Enset fiber, which researchers are actively investigating as a promising and eco-friendly fiber source. Fibers from the Enset plant have been investigated for their potential use in various applications, particularly as materials for cellulosic nanocrystals, paper, and composites production. However, the potential of Enset fiber remains largely untapped due to the limited understanding of its properties, and the inconsistencies in the data reported by previous studies regarding its chemical, physical, mechanical, and thermal properties. Therefore, it is crucial to organize the data for researchers and manufacturers to make informed decisions regarding future studies and applications of this fiber. This review discusses recent research on the unique properties of Enset fibers, their potential as green composites, and their potential for paper and cellulosic nanocrystals as an alternative to natural fibers. The review also unveils the challenges of Enset fibers in advanced applications and suggests future research avenues.
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DOI: 10.1080/15440478.2024.2311303
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