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Mechanical and Air Permeability Performance of Novel Biobased Materials from Fungal Hyphae and Cellulose Fibers

机译:真菌菌丝和纤维素纤维的新型生物化材料的机械和透气性能

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摘要

Novel biobased materials from fungal hyphae and cellulose fibers have been proposed to address the increasing demand for natural materials in personal protective equipment (PPE). Materials containing commercially available kraft fibers (KF), laboratory-made highly fibrillated hemp fibers (HF) and fungal fibers (FF) obtained from fruiting bodies of lignicolous basidiomycetes growing in nature were prepared using paper production techniques and evaluated for their mechanical and air permeability properties. SEM and microscopy revealed the network structure of materials. The tensile index of materials was in the range of 8–60 Nm/g and air permeability ranged from 32–23,990 mL/min, depending on the composition of materials. HF was the key component for strength; however, the addition of FF to compositions resulted in higher air permeability. Chemical composition analysis (Fourier-transform infrared spectroscopy) revealed the presence of natural polysaccharides, mainly cellulose and chitin, as well as the appropriate elemental distribution of components C, H and N. Biodegradation potential was proven by a 30-day-long composting in substrate, which resulted in an 8–62% drop in the C/N ratio. Conclusions were drawn about the appropriateness of fungal hyphae for use in papermaking-like technologies together with cellulose fibers. Developed materials can be considered as an alternative to synthetic melt and spun-blown materials for PPE.
机译:已经提出了来自真菌菌丝和纤维素纤维的新型生物化材料,以解决个人防护设备(PPE)对天然材料的日益增长的需求。使用纸张生产技术制备含有市售的高磷酸纤维(KF),实验室制造的高度原纤化大麻纤维(HF)和真菌纤维(HF)和真菌纤维(FF),并使用纸张生产技术制备,并评估其机械和透气性的机械和透气性特性。 SEM和显微镜显示材料的网络结构。取决于材料的组成,材料的拉伸指数在8-60nm / g的范围内,透气性范围为32-23,990ml / min。 HF是强度的关键组成部分;然而,向组合物中添加FF导致透气性较高。化学成分分析(傅立叶变换红外光谱)揭示了天然多糖的存在,主要是纤维素和甲壳素,以及组分C,H和N的适当元素分布。生物降解潜力被证明是30天长的堆肥基质,导致C / N比下降8-62%。结论是关于真菌菌丝用于造成纤维素纤维的真菌菌丝的适当性。开发材料可以被认为是合成熔融和PPE纺材料的替代品。

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