Mnafki Rim, Morales Amaia, Sillero Leyre, Khiari Ramzi, Moussaoui Younes, Labidi Jalel
Organic Chemistry Laboratory (LR17ES08), Faculty of Sciences of Sfax, Sfax 3018, Tunisia.
Faculty of Sciences of Gafsa, University of Gafsa, Gafsa 2112, Tunisia.
Polymers (Basel). 2024 Jan 4;16(1):164. doi: 10.3390/polym16010164.
balls (POB), a kind of seagrass, are a significant environmental issue since they are annually discharged onto beaches. Their current usefulness limits interest in their management and enhances the environmental problem. Therefore, in this research, the potential of this lignocellulosic biomass was studied from a holistic biorefinery point of view. To this end, an in-depth study was carried out to select the best pathway for the integral valorization of POBs. First, an autohydrolysis process was studied for the recovery of oligosaccharides. Then, a delignification stage was applied, where, in addition to studying different delignification methods, the influence of the autohydrolysis pre-treatment was also investigated. Finally, cellulose nanofibers (CNFs) were obtained through a chemo-mechanical treatment. The results showed that autohydrolysis not only improved the delignification process and its products, but also allowed the hemicelluloses to be valorized. Acetoformosolv delignification proved to be the most successful in terms of lignin and cellulose properties. However, alkaline delignification was able to extract the highest amount of lignin with low purity. CNFs were also successfully produced from bleached solids. Therefore, the potential of POB as a feedstock for a biorefinery was confirmed, and the pathway should be chosen according to the requirements of the desired end products.
海草球(POB)是一种海草,由于它们每年都会被排放到海滩上,因此成为一个重大的环境问题。它们目前的用途限制了人们对其管理的兴趣,并加剧了环境问题。因此,在本研究中,从整体生物炼制的角度研究了这种木质纤维素生物质的潜力。为此,进行了深入研究,以选择海草球整体增值的最佳途径。首先,研究了自水解过程以回收低聚糖。然后,应用了脱木质素阶段,除了研究不同的脱木质素方法外,还研究了自水解预处理的影响。最后,通过化学机械处理获得了纤维素纳米纤维(CNF)。结果表明,自水解不仅改善了脱木质素过程及其产物,还使半纤维素得以增值。就木质素和纤维素性能而言,乙酰甲酸溶剂脱木质素被证明是最成功的。然而,碱性脱木质素能够提取出最高量的低纯度木质素。也成功地从漂白固体中生产出了纤维素纳米纤维。因此,证实了海草球作为生物炼制原料的潜力,应根据所需最终产品的要求选择途径。