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Characteristics of microfibrillated cellulosic fibers and paper sheets from Korean white pine

机译:韩国白松微纤化纤维素纤维和纸张的特性

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摘要

Microfibrillated cellulosic fibrous product was successfully obtained from Korean white pine (Pinus koraiensis Sieb. et Zucc.) by using two alternative pretreatments (steam and ozone treatments) followed by disk milling (DM). The steam and ozone treatments were effective in extracting some of the hemicelluloses and degrading lignin, respectively, with both types of treatment resulting in the improvement of mechanical fibrillation as a result of loosening of the cell wall structure. The obtained products showed nanoscopic fibrous morphology even though hemicelluloses and lignin components remained. The specific surface area and filtration time were increased using the DM treatment after both treatments, and the values increased further with longer periods of DM. The paper sheets of the fibrillated products after both the alternative treatments had higher tensile properties at the same DM time scale than the sheets of the products obtained without treatment. Tensile strength was further increased by increasing sheet density showing the highest tensile strength and modulus of 125 MPa and 20 GPa, respectively.
机译:通过使用两种可选的预处理(蒸汽和臭氧处理),然后进行盘磨(DM),成功地从韩国白松(Pinus koraiensis Sieb。et Zucc。)中获得了微纤化纤维素纤维产品。蒸汽和臭氧处理分别可有效地提取一些半纤维素和降解木质素,两种处理均由于细胞壁结构的松动而导致机械原纤化的改善。即使保留了半纤维素和木质素成分,所获得的产物仍显示出纳米纤维形态。在两次处理之后,使用DM处理均会增加比表面积和过滤时间,而使用DM的时间越长,比表面积和过滤时间就越增加。两种替代处理后的原纤化产品的纸页在相同的DM时间标度下均比未经处理的产品纸页具有更高的拉伸性能。通过增加片材密度进一步提高了拉伸强度,片材密度分别显示出最高的拉伸强度和模量分别为125 MPa和20 GPa。

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  • 来源
    《Wood Science and Technology》 |2013年第5期|925-937|共13页
  • 作者单位

    Department of Forest Biomaterials Engineering, College of Forest and Environmental Sciences, Kangwon National University, Chuncheon 200-701, Korea;

    Department of Forest Biomaterials Engineering, College of Forest and Environmental Sciences, Kangwon National University, Chuncheon 200-701, Korea,Biomass Refinery Research Center, National Institute of Advanced Industrial Science and Technology (AIST), 3-11-32, Kagamiyama, Higashihiroshima, Hiroshima 739-0046, Japan;

    Biomass Refinery Research Center, National Institute of Advanced Industrial Science and Technology (AIST), 3-11-32, Kagamiyama, Higashihiroshima, Hiroshima 739-0046, Japan;

    Department of Forest Biomaterials Engineering, College of Forest and Environmental Sciences, Kangwon National University, Chuncheon 200-701, Korea;

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  • 入库时间 2022-08-18 03:49:35

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