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Improving the Reactivity of Sugarcane Bagasse Kraft Lignin by a Combination of Fractionation and Phenolation for Phenol–Formaldehyde Adhesive Applications

机译:通过分馏和酚醛粘合剂应用的分馏和酚类组合改善甘蔗甘蔗渣牛皮纸的反应性

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摘要

The low reactivity of lignin hinders its application as a phenol substitute in phenol–formaldehyde (PF) resin. Therefore, the combination of fractionation and phenolation was adopted to enhance the reactivity of lignin for preparing a phenol–formaldehyde resin adhesive. Sugarcane bagasse kraft lignin and its fractions were employed to replace 40 wt% of phenol to prepare a PF adhesive. The fractionation increased the reactivity of lignin, however the as-prepared lignin-based PF (LPF) hardly met its application requirements as an adhesive. Therefore, the phenolation of lignin under an acidic condition was adopted to further improve its reactivity. The phenolated lignin was characterized by FTIR, gel permeation chromatography, and NMR, indicating its active sites increased while its molecular weight decreased. The phenolated lignin was used to replace 40 wt% of phenol to prepare a PF adhesive (PLPF) which was further employed to prepare plywood. The results indicated that the combination of fractionation and phenolation effectively enhanced the reactivity of lignin, and eventually improved the properties of the PLPF and its corresponding plywood. The free formaldehyde content of PLPF decreased to 0.16%. The wet bonding strength of the as-prepared plywood increased to 1.36 MPa, while the emission of formaldehyde decreased to 0.31 mL/L.
机译:木质素的低反应性阻碍了其应用作为酚醛醛(PF)树脂的酚替代。因此,采用分馏和酚醛化的组合来增强木质素的反应性,用于制备酚醛树脂粘合剂。使用甘蔗甘蔗渣牛皮纸及其级分代替40wt%的苯酚以制备PF粘合剂。分馏增加了木质素的反应性,但是制备的木质素基PF(LPF)几乎不符合其作为粘合剂的应用要求。因此,采用酸性条件下木质素的酚类进一步提高其反应性。酚类木质素的特征在于FTIR,凝胶渗透色谱和NMR,表明其活性位点在其分子量下降时增加。酚类木质素用于代替40wt%的苯酚,以制备进一步用于制备胶合板的PF粘合剂(PLPF)。结果表明,分馏和酚类的组合有效增强了木质素的反应性,最终改善了PLPF及其相应胶合板的性质。 PLPF的游离甲醛含量降至0.16%。制备的胶合板的湿粘合强度增加到1.36MPa,而甲醛的排放减少至0.31ml / l。

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