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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Lignin-Rich Nanocellulose Fibrils Isolated from Parenchyma Cells and Fiber Cells of Western Red Cedar Bark
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Lignin-Rich Nanocellulose Fibrils Isolated from Parenchyma Cells and Fiber Cells of Western Red Cedar Bark

机译:富含木质素的纳米纤维素原纤维,从牙科细胞和西红雪松树皮的薄壁细胞和纤维细胞分离

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A mild alkaline treatment followed by micro grinding is employed to isolate lignin (23 wt %) containing nanocellulose fibrils (LNFs) from the bark of western red cedar. Microscopic images of the cross section of the bark revealed the high abundance of thin-walled parenchyma cells followed by fiber cells. The mild alkaline treatment resulted in separated cell corners, reduced cell wall thickness, and loose and layered cell wall structure for all of the cells. Confocal and atomic force microscopy-infrared images confirmed that the lignin mainly moved out from the cell corners, parenchyma cells, and Si layers of fiber cells. Within a few passes through a grinder, most of the bark was disintegrated to smaller fibrils. The extracted bark was homogenized to LNFs with a diameter less than 15 nm. The dynamic mechanical analysis and thermogravimetric analysis results showed the high thermal stability of LNF films, compared to those made from bleached nanocellulose fibrils. In addition, the LNF films retained the bulk of mechanical and water vapor barrier properties at high humidities. The films made from LNFs exceeded the tensile performance of most of the other biopolymers reported in the literature.
机译:用微米研磨的温和碱性处理,用于将含有纳米纤维素原纤维(LNF)的木质素(23wt%)从西红雪松的树皮中分离出来。树皮的横截面的微观图像揭示了薄壁薄壁细胞的高丰度,然后是纤维细胞。温和的碱性处理导致分离的细胞弯,降低的细胞壁厚度,以及所有细胞的松散和分层的细胞壁结构。共聚焦和原子力显微镜 - 红外图像证实,木质素主要从细胞角落,实质细胞和纤维细胞层移出。在几次通过研磨机之内,大部分树皮都崩解为较小的原纤维。将提取的树皮均质化为直径小于15nm的LNF。与由漂白纳米纤维素原纤维制成的那些相比,动态力学分析和热重分析结果表明,LNF薄膜的高热稳定性。此外,LNF膜在高湿度下保留了大量机械和水蒸气屏障性质。由LNFS制成的薄膜超过了文献中报道的大多数其他生物聚合物的拉伸性能。

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