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The potential of paper mill sludge for wood-plastic composites.

机译:造纸厂污泥用于木塑复合材料的潜力。

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摘要

Recent studies have demonstrated the potential of primary sludge (PS) as reinforcing fibers and secondary sludge (SS) as binder or co-binder in wood-plastic composites (WPC). A comparative study was conducted using paper mill sludge produced by three different pulping processes at two SS to PS ratios. The objectives were to determine the impact of PS and SS on the development of high density polyethylene (HDPE) WPC properties. Sludge produced by thermomechanical pulping (TMP), chemithermomechanical pulping (CTMP), and Kraft pulping were used at three different proportions (20%, 30%, and 40%) for composite manufacturing. The use of mixed sludge containing 30% SS resulted in lower tensile, flexural, and impact performance of the WPC compared to mixed sludge containing only 10% SS for the three pulping processes. Sludge type had a significant impact on the WPC physical and mechanical properties. Kraft sludge produced the best WPC properties, followed by CTMP and TMP sludge. Increasing the sludge proportion produced increasingly negative impacts on water absorption and thickness swelling, but improved the flexural and tensile properties.
机译:最近的研究表明,木塑复合材料(WPC)中的主要污泥(PS)有可能作为增强纤维,而次生的污泥(SS)有作为粘合剂或共粘合剂。使用三种不同制浆工艺以两种SS与PS比率生产的造纸厂污泥进行了比较研究。目的是确定PS和SS对发展高密度聚乙烯(HDPE)WPC性能的影响。通过热机械制浆(TMP),化学热电机械制浆(CTMP)和牛皮纸制浆生产的污泥以三种不同的比例(20%,30%和40%)用于复合材料制造。与三种制浆工艺中仅含10%SS的混合污泥相比,使用含30%SS的混合污泥会降低WPC的拉伸,挠曲和冲击性能。污泥类型对WPC的物理和机械性能有重大影响。牛皮纸污泥产生最佳的WPC性能,其次是CTMP和TMP污泥。污泥比例的增加对吸水率和厚度膨胀产生越来越不利的影响,但改善了挠曲和拉伸性能。

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