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生物塑料和生物复合材料的合成与热机械性能:系统综述

Synthesis and thermomechanical properties of bioplastics and biocomposites: a systematic review.

作者信息

Rajeshkumar L, Ramesh M, Bhuvaneswari V, Balaji D, Deepa C

机构信息

Department of Mechanical Engineering, KPR Institute of Engineering and Technology, Coimbatore-641407, Tamil Nadu, India.

Department of Mechanical Engineering, KIT-Kalaignarkarunanidhi Institute of Technology, Coimbatore-641402, Tamil Nadu, India.

出版信息

J Mater Chem B. 2023 Apr 12;11(15):3307-3337. doi: 10.1039/d2tb02221d.

Abstract

Materials research relating to bio-based polymers and composites has become the order of the day and several types of research are being undertaken on these materials. This is mainly due to the belief in the ability of these polymers and composites to serve as potential alternatives for synthetic polymers and fiber-reinforced composites and to mitigate problems pertaining to environmental pollution. A majority of synthetic fibers and polymers in the market today are developed from nonrenewable petroleum-based materials. These have the potential to harm the natural biodiversity of the environment. On the other hand, the use of bioplastics and biocomposites is supported by a few facts such as low cost, lesser energy consumption during production, and notable mechanical and thermal characteristics. The usage of bio-based fibers and polymers in the manufacture of biocomposites in numerous applications greatly enhance the sustainability by eradicating the problem of waste generation. Considering all the above points, the current review focuses on the synthesis and characterization of bioplastics and biocomposites. An elaborate discussion on the mechanical and thermal properties of these materials has also been made. In addition, this review comprehensively discusses the applications, challenges, and prospects of bioplastics and biocomposites.

摘要

与生物基聚合物和复合材料相关的材料研究已成为当今的热门话题,目前正在对这些材料进行多种类型的研究。这主要是因为人们相信这些聚合物和复合材料有能力作为合成聚合物和纤维增强复合材料的潜在替代品,并缓解与环境污染相关的问题。当今市场上的大多数合成纤维和聚合物都是由不可再生的石油基材料制成的。这些材料有可能损害环境的自然生物多样性。另一方面,生物塑料和生物复合材料的使用得到了一些事实的支持,比如成本低、生产过程中能源消耗少,以及显著的机械和热性能。在众多应用中,生物基纤维和聚合物用于制造生物复合材料,通过消除废物产生问题极大地提高了可持续性。考虑到上述所有要点,本综述聚焦于生物塑料和生物复合材料的合成与表征。此外,还对这些材料的机械和热性能进行了详细讨论。此外,本综述全面探讨了生物塑料和生物复合材料的应用、挑战及前景。

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