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Some opportunities and challenges of producing bio-composites from non-wood residues

机译:由非木材残留物生产生物复合材料的一些机遇和挑战

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摘要

Plant-based composites (bio-composites) may in the future, become materials to replace polymer based composites and wood in terms of their attractive specific properties, lower cost, simple processing technologies, eco-friendliness, and ability to be recycled after use. The quality and performance of plant fibre-based composites can further be improved by adopting appropriate engineering techniques. Although plant-based fibres have these advantages, they also have some limitations. One of the serious problems of plant fibres is their strong polar character, which creates many problems of incompatibility with most thermosetting and thermoplastic matrices. Production of bio-composites with high quality and performance is therefore based on adjusting the properties of the constituents to meet the requirements of the composite material i.e. a product with consistent, uniform, predictable, and reproducible properties. Such adjustments involve creating strong interfacial bonds between the lignocellulosic substrates and the binder. Successful development of bio-composites therefore stem from a careful understanding of the influence of these adjustments on the composite properties. This paper suggests some opportunities available in producing bio-composites from non-wood resources, and the challenges that must be overcome to make this technology commercially viable. Gaps in knowledge and information required before full commercialisation of these materials are identified.
机译:基于植物的复合材料(生物复合材料),由于其有吸引力的特殊性能,较低的成本,简单的加工技术,生态友好性以及使用后可回收利用的能力,将来可能成为替代聚合物基复合材料和木材的材料。通过采用适当的工程技术,可以进一步提高植物纤维基复合材料的质量和性能。尽管基于植物的纤维具有这些优点,但是它们也具有一些局限性。植物纤维的严重问题之一是它们的强极性特性,这造成了与大多数热固性和热塑性基质不相容的许多问题。因此,具有高质量和高性能的生物复合材料的生产是基于调节成分的性能以满足复合材料的要求,即具有一致,均匀,可预测和可再现的性能的产品。此类调整涉及在木质纤维素基质和粘合剂之间建立牢固的界面键。因此,生物复合材料的成功开发源于对这些调整对复合材料性能的影响的认真理解。本文提出了一些利用非木材资源生产生物复合材料的机会,以及使该技术在商业上可行所必须克服的挑战。确定这些材料完全商业化之前所需的知识和信息空白。

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