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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Feasibility of ramie fibers as raw material for the isolation of nanofibrillated cellulose
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Feasibility of ramie fibers as raw material for the isolation of nanofibrillated cellulose

机译:苎麻纤维作为纳米纤化纤维素分离的原料的可行性

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In this study, a strategy was adopted to enhance the use of ramie fibers as raw material for isolation of cellulose nanofibers (CNFs). Ramie pulp was produced by alkaline organosolv followed by bleaching. CNFs were produced by mechanical defibrillation, and films were fabricated via casting. Effects of number of passes in the mechanical grinding on physical and mechanical properties of CNF films were comprehensively studied. Potential of ramie fibers was proved by fabricating homogeneous nanofibers with average thickness of 8.72 nm, which led to CNF films with dense and non-porous networks, and crystallinity index of 76-78%. Tensile strength (42 - 82 MPa) and dynamic mechanical (9 - 11 GPa) performance were good only for less severe mechanical defibrillation. Lower solubility (1.85-2.43%). and activity (0.69) in water, and outstanding barrier properties against water vapor and oxygen make ramie suitable for more sustainable extraction of cellulose nanofibers and production of CNF films for diverse applications.
机译:在这项研究中,采用了一种策略来增强苎麻纤维作为用于分离纤维素纳米纤维(CNFS)的原料。苎麻浆由碱性有机溶液生产,然后漂白。通过机械除颤产生CNF,通过铸造制造薄膜。综合研究了对CNF薄膜物理性质机械研磨中的通过的影响。通过制造平均厚度为8.72nm的均匀纳米纤维来证明苎麻纤维的潜力,其导致具有致密和无孔网络的CNF薄膜,结晶指数为76-78%。拉伸强度(42-82MPa)和动态机械(9-11GPa)性能仅适用于不太严重的机械除颤。溶解度降低(1.85-2.43%)。水中的活性(0.69),以及防水蒸汽和氧气的出色屏障性质使苎麻适用于更可持续地提取纤维素纳米纤维和生产CNF薄膜的不同应用。

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