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Demethylation of Wheat Straw Alkali Lignin for Application in Phenol Formaldehyde Adhesives

机译:小麦秸秆碱木质素的脱甲基作用在酚醛胶中的应用

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摘要

Lignin is a natural biopolymer with a complex three-dimensional network. It is the second most abundant natural polymer on earth. Commercially, lignin is largely obtained from the waste liquors of pulping and bioethanol productions. In this study, wheat straw alkali lignin (WSAL) was demethylated by using an in-situ generated Lewis acid under an optimized demethylation process. The demethylation process was monitored by a semi-quantitative Fourier Transform Infrared Spectroscopy (FTIR) method. The demethylated wheat straw alkali lignin (D-WSAL) was further characterized by Proton Nuclear Magnetic Resonance (1H NMR), Gel Permeation Chromatography (GPC), and titration methods. After the demethylation process, it was found that the relative value of the methoxy group decreased significantly from 0.82 to 0.17 and the phenolic hydroxyl group increased from 5.2% to 16.0%. Meanwhile, the hydroxyl content increased from 6.6% to 10.3%. GPC results suggested that the weighted averaged molecular weight of D-WSAL was lower than that of WSAL with a smaller polydispersity index. The D-WSAL was then used to replace 60 wt % of phenol to prepare lignin-based phenol formaldehyde adhesives (D-LPF). It was found that both the free formaldehyde content and the free phenol content in D-LPF were less than those of the lignin-based phenol formaldehyde adhesives without lignin demethylation (LPF). Gel time of D-LPF was shortened. Furthermore, the wet and dry bonding strengths of lap shear wood samples bonded using D-LPF were higher than those of the samples bonded using LPF. Therefore, D-WSAL has shown good potential for application in phenol formaldehyde adhesives.
机译:木质素是具有复杂三维网络的天然生物聚合物。它是地球上第二丰富的天然聚合物。商业上,木质素主要得自制浆和生物乙醇生产的废液。在这项研究中,麦秸碱木质素(WSAL)通过使用原位生成的路易斯酸在优化的脱甲基过程中脱甲基。通过半定量傅里叶变换红外光谱(FTIR)方法监控脱甲基过程。通过质子核磁共振( 1 H NMR),凝胶渗透色谱法(GPC)和滴定法对脱甲基小麦秸秆碱木质素(D-WSAL)进行了表征。在去甲基化过程之后,发现甲氧基的相对值从0.82显着降低至0.17,酚羟基的相对值从5.2%升高至16.0%。同时,羟基含量从6.6%增加到10.3%。 GPC结果表明,D-WSAL的重均分子量低于WSAL的重均分子量,而WSAL的重均分子量较小。然后使用D-WSAL代替60 wt%的苯酚,以制备木质素基苯酚甲醛粘合剂(D-LPF)。发现D-LPF中的游离甲醛含量和游离酚含量均低于没有木质素脱甲基化(LPF)的木质素基酚醛粘合剂。 D-LPF的胶凝时间缩短。此外,使用D-LPF粘合的搭接剪切木材样品的干,湿粘合强度高于使用LPF粘合的样品。因此,D-WSAL在苯酚甲醛胶粘剂中显示出良好的应用潜力。

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