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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Chemical modification of cellulose-rich fibres to clarify the influence of the chemical structure on the physical and mechanical properties of cellulose fibres and thereof made sheets
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Chemical modification of cellulose-rich fibres to clarify the influence of the chemical structure on the physical and mechanical properties of cellulose fibres and thereof made sheets

机译:富含纤维素的纤维的化学改性,以阐明化学结构对纤维素纤维的物理和力学性能的影响

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摘要

Despite the different chemical approaches used earlier to increase the ductility of fibre-based materials, it has not been possible to link the chemical modification to their mechanical performance. In this study, cellulose fibres have been modified by periodate oxidation, alone or followed either by borohydride reduction, reductive amination or chlorite oxidation. In addition, TEMPO oxidation, and TEMPO oxidation in combination with periodate oxidation and further reduction with sodium borohydride have also been studied. The objective was to gain understanding of the influence of different functional groups on the mechanical and structural properties of handsheets made from the modified fibres. It was found that the modifications studied improved the tensile strength of the fibres to different extents, but that only periodate oxidation followed by borohydride reduction provided more ductile fibre materials. Changes in density, water-holding capacity and mechanical performance were also quantified and all are dependent on the functional group introduced.
机译:尽管先前使用的不同化学方法来增加纤维基材料的延展性,但仍有可能将化学改性与其机械性能联系起来。在该研究中,通过硼氢化硼还原,还原胺化或亚氯酸盐氧化,通过期间氧化,纤维素纤维进行修饰。另外,还研究了CTPO氧化,以及与硼氢化钠的周期氧化和进一步减少的节奏氧化和节奏氧化。该目的是了解不同官能团对由改性纤维制成的手抄夹的机械和结构性能的影响。结果发现,研究改善了纤维的拉伸强度与不同的范围,但是只有硼氢化物降低,只有硼氢化物纤维材料。还量化了密度,水控容量和机械性能的变化,所有依赖于介绍的功能组。

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