聚氨酯
木质素
深共晶溶剂
溶剂
化学工程
有机溶剂
材料科学
共晶体系
化学
有机化学
高分子科学
制浆造纸工业
复合材料
工程类
合金
作者
Chenxi Wang,Isaac Nartey Oduro,Ziqi Yu,Cuixia Cheng,Dylan Cronin,Udishnu Sanyal,A. Ameli,Wangcheng Liu,Baoming Zhao,Jinwen Zhang,Jing‐Hang Wu,Keimpe J. van den Berg,Alexander Yahkind,Xiao Zhang
出处
期刊:ACS Sustainable Chemistry & Engineering
[American Chemical Society]
日期:2025-01-10
标识
DOI:10.1021/acssuschemeng.4c08370
摘要
Lactic acid- and choline chloride-based deep eutectic solvents (DES) are applied for extracting lignin from pine wood. The ensuing DES-extracted lignin (DES lignin, DESL) has a purity higher than 90% and is rich in hydroxyl groups (about 5 mmol/g) without detectable sulfur. In-depth analyses show that DESL possesses good thermostability, low glass transition temperature (Tg), good polymer mobility, reduced cross-linking density, and rigidity. DESL was further subjected to an oxypropylation reaction to synthesize lignin-derived polyols (Lig-PO). Lig-PO carries functionalities that have both aromatic skeletons of isocyanate and hydroxyl groups of polyols, which are simultaneously leveraged in producing flexible polyurethane (PU) foam. The Lig-PO samples respectively derived from DESL, commercial alkali lignin (AL), and diluted acid corn stover lignin (DACSL) are subsequently used for flexible PU foam preparation with partial substitution (20 wt %) of petroleum-derived polyols. Compared to AL and DACSL, DESL-based PU (DESL-PU) foams have been the only ones capable of achieving highly homogeneous morphologies, well-oriented geometry, and superior thermal stability. DESL-PU foams have comparable compressive stress response with standard industrial flexible PU foam. The unique properties grant DESL to be an ideal biobased resource for PU foam production. This work demonstrates that DESL has a great potential for generating flexible biobased PU foams.
科研通智能强力驱动
Strongly Powered by AbleSci AI