Demethylated activated sulfate lignin-based formaldehyde-free phenolic resin adhesive
投稿时间:2026-06-18  修订日期:2026-07-07
DOI:
Key Words:Lignin  Demethylation  Glyoxal  Glutaraldehyde  Adhesive
作者单位邮编
时文慧 浙江科技大学环境与资源学院 310023
王傲 大连工业大学辽宁省生物质化学与材料重点实验室 
徐磊 大连工业大学辽宁省生物质化学与材料重点实验室 
林文泽 浙江科技大学环境与资源学院 
邹佳杰 浙江科技大学环境与资源学院 
陈小红* 浙江科技大学环境与资源学院 310023
摘要点击次数: 42
全文下载次数: 0
Abstract:Developing eco-friendly lignin-based phenolic resin adhesives is crucial for reducing the consumption of fossil resources. In this work, two novel lignin-based adhesives, namely demethylated lignin-glyoxal resin (DLPG) and demethylated lignin-glutaraldehyde resin (DLPGe), were synthesized by replacing phenol with demethylated lignin and replacing formaldehyde with low-toxicity aldehydes (glyoxal and glutaraldehyde). For comparison, adhesives using unmodified lignin as a phenol substitute were also prepared under the same conditions. The experimental results demonstrated that the lap shear strength of DLPG and DLPGe was 166% and 100% higher than that of the unmodified lignin-based counterparts, respectively. Notably, both adhesives exhibited excellent mechanical strength under various environmental conditions, including 100% relative humidity, low temperature (-55°C), and high temperature (60°C). Further analysis revealed that DLPGe showed superior shear strength compared to DLPG. The underlying mechanism was proposed as follows: DLPG possessed a loose and porous cross-linked structure, whereas DLPGe exhibited sufficient particle agglomeration with a more compact and flexible cross-linked network. The long carbon chain of glutaraldehyde endowed DLPGe with enhanced toughness, effectively resisting water penetration and buffering the stress caused by temperature changes. This study provides a theoretical foundation for the high-value utilization of lignin and the development of formaldehyde-free, environmentally friendly phenolic resin adhesives.
  HTML  查看/发表评论  下载PDF阅读器