Staff view for Investigations of the pore-size distribution of wood in the dry and wet state by means of mercury intrusion porosimetry

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      - This paper deals with the determination of the pore-size distribution of untreated
        and thermally modified twin samples of Norway spruce (Picea abies (L.) Karst.)
        and sycamore maple (Acer pseudoplatanus L.) by means of mercury intrusion
        porosimetry. The investigations considered oven-dried and at 22 °C and 95 %
        relative humidity-conditioned samples. A special sample holder and a novel
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        conditioned samples did not dry in an uncontrolled manner. The results clearly
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      - Biomedical and Life Sciences
      - Ceramics
      - Composites
      - Compression
      - Conditioning
      - Drying ovens
      - Glass
      - intercellular spaces
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      - Lamella
      - Life Sciences
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      - Manufacturing
      - Mercury
      - Natural Materials
      - new methods
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      - Pine trees
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      - Processes
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      - Sample holders
      - Size distribution
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      title:
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      - This paper deals with the determination of the pore-size distribution of untreated
        and thermally modified twin samples of Norway spruce (Picea abies (L.) Karst.)
        and sycamore maple (Acer pseudoplatanus L.) by means of mercury intrusion
        porosimetry. The investigations considered oven-dried and at 22 °C and 95 %
        relative humidity-conditioned samples. A special sample holder and a novel
        method for evacuation were developed for the measurements. This was necessary
        both to ensure that samples were positioned at a defined distance and the
        conditioned samples did not dry in an uncontrolled manner. The results clearly
        show that the climatic state influences the results. Thermal modification
        greatly alters the pore-size distribution of spruce. This can be largely attributed
        to the formation of intercellular spaces in the middle lamella as a result
        of cell-wall compression due to thermal modification. The alteration of the
        pore structure of maple due to thermal modification is not as pronounced as
        that of spruce.
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      creator:
      - Zauer, Mario ; Hempel, Simone ; Pfriem, Alexander ; Mechtcherine, Viktor ;
        Wagenführ, André
      subject:
      - Acer pseudoplatanus ; Biomedical and Life Sciences ; Ceramics ; Composites
        ; Compression ; Conditioning ; Drying ovens ; Glass ; intercellular spaces
        ; Intrusion ; Lamella ; Life Sciences ; Machines ; Manufacturing ; Mercury
        ; Natural Materials ; new methods ; Original ; Picea abies ; Pine trees ;
        Porosity ; Processes ; Relative humidity ; Sample holders ; Size distribution
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      title:
      - Investigations of the pore-size distribution of wood in the dry and wet state
        by means of mercury intrusion porosimetry
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      - Biomedical and Life Sciences
      - Ceramics
      - Composites
      - Compression
      - Conditioning
      - Drying ovens
      - Glass
      - intercellular spaces
      - Intrusion
      - Lamella
      - Life Sciences
      - Machines
      - Manufacturing
      - Mercury
      - Natural Materials
      - new methods
      - Original
      - Picea abies
      - Pine trees
      - Porosity
      - Processes
      - Relative humidity
      - Sample holders
      - Size distribution
      - Wood
      - Wood Science & Technology
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      - This paper deals with the determination of the pore-size distribution of untreated
        and thermally modified twin samples of Norway spruce (Picea abies (L.) Karst.)
        and sycamore maple (Acer pseudoplatanus L.) by means of mercury intrusion
        porosimetry. The investigations considered oven-dried and at 22 °C and 95 %
        relative humidity-conditioned samples. A special sample holder and a novel
        method for evacuation were developed for the measurements. This was necessary
        both to ensure that samples were positioned at a defined distance and the
        conditioned samples did not dry in an uncontrolled manner. The results clearly
        show that the climatic state influences the results. Thermal modification
        greatly alters the pore-size distribution of spruce. This can be largely attributed
        to the formation of intercellular spaces in the middle lamella as a result
        of cell-wall compression due to thermal modification. The alteration of the
        pore structure of maple due to thermal modification is not as pronounced as
        that of spruce.
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