Wang Hao, Eberhardt Thomas L, Wang Chunpeng, Gao Shishuai, Pan Hui
Jiangsu Co-Innovation Center for Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, 159# Longpan Road, Nanjing 210037, China.
College of Chemical Engineering, Nanjing Forestry University, 159# Longpan Road, Nanjing 210037, China.
Polymers (Basel). 2019 Oct 28;11(11):1771. doi: 10.3390/polym11111771.
Lignin, a byproduct from the chemical processing of lignocellulosic biomass, is a polyphenolic compound that has potential as a partial phenol substitute in phenolic adhesive formulations. In this study, HBr and HI were used as reagents to demethylate an alkali lignin (AL) to increase its hydroxyl content and thereby enhance its reactivity for the preparation of phenolic resins. Analyses by FT-IR, H-NMR and 2D-NMR(HSQC) demonstrated both a decrease in methoxyl groups and an increase in hydroxyl groups for each demethylated lignin (DL). In addition, the molar amounts of phenolic hydroxyls, determined by H-NMR, increased to 0.67 mmol/g for the HI-DL, and 0.64 mmol/g for the HBr-DL, from 0.52 mmol/g for the AL. These results showed that HI, a stronger nucleophilic reagent than HBr, provided a higher degree of AL demethylation. Lignin-containing resins, prepared by copolymerization, met the bonding strength standard for exterior plywood with DL used to replace as much as 50 wt.% of phenol. The increased hydroxyl contents resulting from the lignin demethylations also imparted faster cure times for the lignin-containing resins and lower formaldehyde emissions. Altogether, the stronger nucleophilicity of HI, compared to HBr, impacted the degree of lignin demethylation, and carried through to measurable differences the thermal properties and performance of the lignin-containing PF resins.
木质素是木质纤维素生物质化学加工的副产物,是一种多酚化合物,有潜力在酚醛胶粘剂配方中作为部分酚类替代品。在本研究中,使用氢溴酸(HBr)和氢碘酸(HI)作为试剂对碱木质素(AL)进行脱甲基反应,以增加其羟基含量,从而提高其在酚醛树脂制备中的反应活性。通过傅里叶变换红外光谱(FT-IR)、氢核磁共振谱(H-NMR)和二维核磁共振谱(HSQC)分析表明,每种脱甲基木质素(DL)的甲氧基含量均降低,羟基含量均增加。此外,通过H-NMR测定,酚羟基的摩尔量从AL的0.52 mmol/g增加到HI-DL的0.67 mmol/g和HBr-DL的0.64 mmol/g。这些结果表明,HI作为比HBr更强的亲核试剂,能使AL的脱甲基程度更高。通过共聚制备的含木质素树脂,当用DL替代高达50 wt.%的苯酚时,符合室外胶合板的粘结强度标准。木质素脱甲基导致的羟基含量增加,也使含木质素树脂的固化时间加快,甲醛排放量降低。总的来说,与HBr相比,HI更强的亲核性影响了木质素的脱甲基程度,并导致含木质素酚醛树脂的热性能和性能出现可测量的差异。