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    A structural fibrillation parameter from small angle X-ray scattering to quantify pulp refining

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    Date
    2019-06
    Type
    Article
    Author
    Mao, Jia
    Heck, Barbara
    Abushammala, Hatem
    Reiter, Günter
    Laborie, Marie-Pierre
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    Abstract
    Pulp fibrillation results from refining and is of prime importance for papermaking. Yet a structural parameter reflecting the extent of fibrillation remains elusive. In this work, we demonstrate that in refined pulps, the interfibrillar distance at water saturated state (Ls), as derived from the interference factor from small angle X-ray scattering, structurally reflects fibrillation degree. Interestingly, the minimal L obtained at low water content is close to the crystal thickness derived from wide angle X-ray scattering. For a series of refined pulp samples, significant regressions are established between Ls and equilibrium moisture content, transmittance (T%), surface energy components (γLW, γAB), and the normalized crystallinity index (CrIn). These regressions establish Ls as a unique structural parameter for quantifying the fibrillation degree and derived properties of refined pulps without the need of a multi-parameter and time-consuming analyses.
    URI
    https://dspace.adu.ac.ae/handle/1/3340
    DOI
    https://doi.org/10.1007/s10570-019-02386-0
    Citation
    Mao, J., Heck, B., Abushammala, H., Reiter, G., & Laborie, M. P. (2019). A structural fibrillation parameter from small angle X-ray scattering to quantify pulp refining. Cellulose, 26(7), 4265-4277.
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