利用可持续生物复合材料:绿色材料和制造策略的进展综述

IF 4 3区 化学 Q2 POLYMER SCIENCE
Muhammad Faheem, Kamran A. Khan
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引用次数: 0

摘要

可持续生物复合材料,包括天然纤维(NFs)、生物填料和可生物降解聚合物基质,作为合成复合材料的环保替代品,正受到越来越多的关注。这篇综述批判性地评估了材料发展、表面改性和制造方法的最新进展,旨在提高机械性能、生物降解性和环境相容性。提出的综合方案旨在加速从石油基系统的转变,并为全球追求联合国可持续发展目标做出贡献。特别关注的是高压灭菌器外(OoA)加工,它提供了可扩展的,低排放的,和符合循环经济原则的节能制造路线。OoA技术的对比分析突出了它们在简化工艺、减少能源需求和降低挥发性排放方面的好处。然而,诸如吸湿性和弱纤维基质界面等挑战仍然存在,限制了其更广泛的应用。该综述确定了这些技术差距,并强调了生命周期评估、生物降解指标和多标准决策框架(如分析层次过程)的整合,从而为可持续材料和工艺选择提供信息。探讨了未来的发展方向,包括智能生物复合材料设计,固化过程中的可再生能源集成,通过回收创新进行寿命终止管理,以及解决增材制造中的可扩展性挑战。本文综述了材料科学、绿色制造和环境评价三者的有机结合,为生物复合材料的发展提供了战略指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing sustainable biocomposites: a review of advances in greener materials and manufacturing strategies

Sustainable biocomposites, comprising natural fibers (NFs), biofillers, and biodegradable polymer matrices, are gaining traction as eco-friendly alternatives to synthetic composites. This review critically assesses recent progress in material development, surface modifications, and fabrication methods aimed at enhancing mechanical performance, biodegradability, and environmental compatibility. The synthesis presented aims to accelerate the shift away from petroleum-based systems and contributes to the global pursuit of the United Nations Sustainable Development Goals. Special focus is placed on out-of-autoclave (OoA) processing, which offers scalable, low-emission, and energy-efficient manufacturing routes aligned with circular economy principles. Comparative analysis of OoA techniques highlights their benefits in process simplification, reduced energy demands, and lower volatile emissions. However, challenges such as moisture absorption and weak fiber–matrix interfaces persist, limiting broader adoption. The review identifies these technical gaps and emphasizes the integration of life cycle assessment, biodegradability metrics, and multi-criteria decision-making frameworks like the analytical hierarchy process to inform sustainable material and process choices. Future directions are explored, including intelligent biocomposites design, renewable energy integration in curing processes, end-of-life management through recycling innovations, and addressing scalability challenges in additive manufacturing. This review provides a cohesive framework combining materials science, green manufacturing, and environmental evaluation, offering strategic guidance for advancing biocomposites.

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来源期刊
Polymer Bulletin
Polymer Bulletin 化学-高分子科学
CiteScore
6.00
自引率
6.20%
发文量
0
审稿时长
5.5 months
期刊介绍: "Polymer Bulletin" is a comprehensive academic journal on polymer science founded in 1988. It was founded under the initiative of the late Mr. Wang Baoren, a famous Chinese chemist and educator. This journal is co-sponsored by the Chinese Chemical Society, the Institute of Chemistry, and the Chinese Academy of Sciences and is supervised by the China Association for Science and Technology. It is a core journal and is publicly distributed at home and abroad. "Polymer Bulletin" is a monthly magazine with multiple columns, including a project application guide, outlook, review, research papers, highlight reviews, polymer education and teaching, information sharing, interviews, polymer science popularization, etc. The journal is included in the CSCD Chinese Science Citation Database. It serves as the source journal for Chinese scientific and technological paper statistics and the source journal of Peking University's "Overview of Chinese Core Journals."
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