制浆造纸工业
木质素
胶粘剂
原材料
化学
可再生资源
废物管理
产品(数学)
材料科学
生物燃料
生物量(生态学)
生产(经济)
乙醇燃料
作者
Tian Liu,Hongcai Lu,Yuan Liu,Shuo Liu,Wen Wang,Yongzhuang Liu,Qinqin Xia,Haipeng Yu
出处
期刊:Research
[American Association for the Advancement of Science]
日期:2026-01-01
卷期号:9: 1226-1226
标识
DOI:10.34133/research.1226
摘要
The global pulp industry discards over 50 million tons of lignin annually, with conventional valorization strategies hindered by performance and cost barriers. We report an ion-exchange, self-catalytic strategy to upcycle the industrial lignosulfonate into high-performance bio-based adhesives. The facile ion-exchange process transforms sodium lignosulfonate into lignosulfonic acid, which acts as not only a copolymer backbone of adhesive but also an intrinsic macromolecular catalyst, autonomously driving esterification reaction with citric acid and then wood polymers, eliminating the need of fossil-derived cross-linkers and energy-intensive pretreatments. This mechanism endows it performing excellent performance in bonding strength and boiling-water resistance. Crucially, the performance gains are coupled with important economic and environmental benefits; production costs are substantially lower than conventional petrochemical resins, and a life cycle assessment confirms markedly reduced environmental impacts alongside negligible formaldehyde emissions. This work successfully resolves the performance-sustainability-cost trade-off, establishing a waste-to-wealth pathway for circular manufacturing.
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