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Modification of hemp fibers through alkaline attack assisted by mechanical milling: effect of processing time on the morphology of the system

机译:机械研磨辅助碱性攻击的大麻纤维:处理时间对系统形态的影响

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摘要

This paper reports the possibility of functionalizing hemp fibers (HF) through a mechano-chemical treatment assisted by an easily scalable top-down technology. The mechanical action was able to remove non-cellulosic material and to cause exposure of the cellulose microfibrils. Its influence on structure, morphology, and properties of hemp fibers has been analyzed by means of the scanning electron microscopy, X-Ray, FTIR and Raman spectroscopy. The milling process induced a change in crystalline content of hemp fibers, which decreased after a treatment time of 30 min. The crystallinity index and cellulose chain arrangement influence the thermal stability of hemp fibers. In order to compare the improved properties of mechanochemically treated HF respect to the HF modified with conventional alkalization, they were introduced, as green reinforcement, into a pectin matrix. Thermal and mechanical properties demonstrated the effectiveness of milling treatment in improving the considered physical properties of the pectin matrix.
机译:本文通过易于可扩展的自上而下技术辅助的机械化学处理报告了官能化的官能化纤维(HF)的可能性。机械作用能够去除非纤维素材料并引起纤维素微纤维的暴露。通过扫描电子显微镜,X射线,FTIR和拉曼光谱分析了对大麻纤维的结构,形态和性质的影响。铣削过程诱导大麻纤维的结晶含量的变化,其在30分钟的治疗时间后降低。结晶性指数和纤维素链布置影响了大麻纤维的热稳定性。为了比较机械化学处理的HF的改善性能对常规碱化改性的HF改性的HF,将它们作为绿色增强引入果胶基质中。热和机械性能证明了研磨处理在改善果胶基质的所考虑的物理性质方面的有效性。

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