Biorefinery Processes Research Group (BioRP), Chemical and Environmental Engineering Department, University of the Basque Country (UPV/EHU), Plaza Europa 1, 20018 San Sebastian, Spain.
Biorefinery Processes Research Group (BioRP), Chemical and Environmental Engineering Department, University of the Basque Country (UPV/EHU), Plaza Europa 1, 20018 San Sebastian, Spain.
Int J Biol Macromol. 2023 Aug 30;247:125855. doi: 10.1016/j.ijbiomac.2023.125855. Epub 2023 Jul 17.
Bio-polyols, produced by liquefying lignin with polyhydric alcohols, offer a promising alternative to conventional polyols for polyurethane production. To enhance the sustainability on the production of these bio-polyols, this study proposes the use of crude glycerol and microwave-assisted liquefaction as substitutes for conventional methods and commercial glycerol. This approach reduces the energy requirements of the reaction while also adding value to this by-product. The synthesis of bio-polyols with suitable properties to produce elastic and rigid polyurethane was carried out using previously optimised reaction conditions. Organosolv lignins obtained from Eucalyptus globulus and Pinus radiata were employed, using polyethylene glycol and crude glycerol as solvents and sulphuric acid as a catalyst. Several parameters of the bio-polyols were analysed, including hydroxyl number (I), acid number (A), and functionality (f), suggesting that the bio-polyols were suitable for polyurethane synthesis. Bio-polyols formulated to produce rigid polyurethanes exhibited I values of 554 and 383 (mg KOH/g), A values of 1.91 and 4.21 (mg KOH/g), and functionalities of 4.16 and 3.14 for Eucalyptus globulus and Pinus radiata lignin. In the case of bio-polyols for elastic polyurethanes, the values were 228 and 173 (mg KOH/g) (I), 20.94 and 25.09 (mg KOH/g) (A), and functionalities of 3.51 and 2.08.
生物多元醇是通过多元醇液化木质素生产的,为生产聚氨酯提供了一种有前途的传统多元醇替代品。为了提高这些生物多元醇生产的可持续性,本研究提出使用粗甘油和微波辅助液化来替代传统方法和商业甘油。这种方法降低了反应的能源需求,同时也为这种副产品增加了价值。使用之前优化的反应条件,使用适当性质的生物多元醇合成了弹性和刚性聚氨酯。使用聚乙二醇和粗甘油作为溶剂,硫酸作为催化剂,使用来自桉树和辐射松的有机溶剂木质素。分析了生物多元醇的几个参数,包括羟值(I)、酸值(A)和官能度(f),表明生物多元醇适合于聚氨酯合成。用于生产刚性聚氨酯的生物多元醇的 I 值为 554 和 383(mg KOH/g),A 值为 1.91 和 4.21(mg KOH/g),官能度为 4.16 和 3.14,分别来自桉树和辐射松木质素。对于弹性聚氨酯的生物多元醇,其值分别为 228 和 173(mg KOH/g)(I)、20.94 和 25.09(mg KOH/g)(A)和官能度为 3.51 和 2.08。