Jiang Zhicheng, Ma Ya, Guo Xingjie, Remón Javier, Tsang Daniel C W, Hu Changwei, Shi Bi
Department of Biomass Science and Engineering, Sichuan University, Chengdu, 610065, PR China; National Engineering Research Center of Clean Technology in Leather Industry, Sichuan University, Chengdu, 610065, PR China.
Department of Biomass Science and Engineering, Sichuan University, Chengdu, 610065, PR China.
J Hazard Mater. 2021 Feb 5;403:123701. doi: 10.1016/j.jhazmat.2020.123701. Epub 2020 Aug 13.
The production of lignin micro-/nano-particles (LMNPs) has gained growing interest due to their eco-friendly feature and biological compatibility with negligible hazardous impacts. Herein, this work carefully addresses the preparation of LMNPs from different types of biomass, including pine wood, birch wood, pubescens, vinasse, corncob and corncob residue. Firstly, ligno-oligomers were produced from each biomass through a HO-THF co-solvent system. Then, LMNPs were generated from these effluents. Uniform and spherical LMNPs, consisting of benzene ring-stacked cores and hydrophilic shells, were obtained only from the liquids yielded by the treatment of the corncob residue and pine wood. The characterization of the ligno-oligomers and the LMNPs revealed that the molecular weights of the ligno-oligomers did not exert a significant effect on their self-assembly capability. The presence of guaiacyl units connected by β-O-4 and β-β linkages was beneficial for the π-π stacking of the benzene rings into compact cores, while the existence of β-5 linkages and C-oxidized side-chains exerted a negative effect. Stable and spherical LMNPs with an appropriate negative zeta potential and a relatively high thermal stability were obtained from the corncob residue and pine wood, which can serve as functional materials in various application areas.
木质素微/纳米颗粒(LMNPs)的生产因其环保特性和生物相容性以及可忽略不计的有害影响而受到越来越多的关注。在此,本工作详细阐述了从不同类型的生物质制备LMNPs的方法,这些生物质包括松木、桦木、毛白杨、酒糟、玉米芯和玉米芯残渣。首先,通过HO-THF共溶剂体系从每种生物质中制备木质素低聚物。然后,从这些流出物中生成LMNPs。仅从玉米芯残渣和松木处理产生的液体中获得了由苯环堆积的核和亲水壳组成的均匀球形LMNPs。木质素低聚物和LMNPs的表征表明,木质素低聚物的分子量对其自组装能力没有显著影响。由β-O-4和β-β键连接的愈创木基单元的存在有利于苯环的π-π堆积形成紧密的核,而β-5键和C-氧化侧链的存在则产生负面影响。从玉米芯残渣和松木中获得了具有适当负zeta电位和相对较高热稳定性的稳定球形LMNPs,它们可作为功能材料应用于各个领域。