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Hydrophobic Formulations Based on Tall Oil Distillation Products for High-Density Fiberboards

机译:基于高密度纤维板的高油蒸馏产品的疏水配方

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摘要

This study investigates the effect of renewable formulations based on tall oil bio-refinery products on the water vapor sorption and interfiber strength of cellulosic fibers as well as on the properties of high-density fiberboard (HDF) panels. The results obtained for HDF prepared using renewable formulations were compared to the results for HDF obtained using conventional synthetic paraffin wax (hydrowax), which is the hydrophobic agent currently utilized by the industry. Four tall oil distillation products (TODPs) with different levels of fatty and rosin acids were used for preparing the hydrophobic formulations with furfuryl alcohol as an organic solvent. According to determinations with an automated vapor sorption apparatus, the formulations had a similar effect with hydrowax on the sorption behavior of natural fibers. Unlike to hydrowax treatment, the ultimate tensile strength of cellulosic paper-sheets treated with the formulations remained unchanged or significantly increased. At the standard addition load of 1% (wt/wt dry fibers) of the formulations, HDF panels showed comparable and only in one case, e.g., TODP3-based formulation, slightly higher thickness swelling (24 h) than those with hydrowax. The best performing formulation (TODP2-based) in terms of tensile strength of paper sheets did not significantly change the mechanical properties of HDF panels in both standard climate and high humid conditions. Promising results at the standard and humid climate conditions were obtained for HDF panels manufactured with higher TODP2-based formulation amounts (3–5%) and reduced melamine-urea-formaldehyde resin content (10–12% instead of 14%, wt dry resin/wt dry fibers).
机译:本研究研究了基于高油生物炼油厂对纤维素吸附和纤维素纤维纤维吸附和纤维纤维的纤维纤维强度的可再生制剂的影响以及高密度纤维板(HDF)面板的性能。将使用可再生制剂制备的HDF获得的结果与使用常规合成石蜡(Hydrowax)获得的HDF的结果进行比较,这是行业目前使用的疏水剂。使用不同水平的脂肪和松香酸的四个高油蒸馏产品(TODPS)用于将疏水式制剂与糠醇作为有机溶剂制备。根据具有自动蒸汽吸附装置的测定,制剂与水阵线对天然纤维的吸附行为具有类似的效果。与Hydowax处理不同,用制剂处理的纤维素纸张的最终拉伸强度保持不变或显着增加。在制剂的标准添加负荷1%(WT / WT干纤维)的载荷中,HDF面板显示出可比较且仅在一种情况下,例如,基于TODP3的配方,稍高的厚度溶胀(24小时),而不是Hydowax。在纸张的拉伸强度方面,最佳性能的制剂(TODP2)在标准气候和高潮湿条件下没有显着改变HDF板的机械性能。获得了标准和潮湿的气候条件的预示力,得到了以较高的TODP2的制剂(3-5%)制造的HDF板(3-5%)和降低的三聚氰胺 - 尿醛 - 甲醛树脂含量(10-12%而不是14%,WT干树脂/ wt干纤维)。

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