Department of Geosciences and Natural Resource Management, University of Copenhagen, Frederiksberg C, Copenhagen 1958, Denmark.
Department of Geosciences and Natural Resource Management, University of Copenhagen, Frederiksberg C, Copenhagen 1958, Denmark.
Bioresour Technol. 2024 Sep;408:131087. doi: 10.1016/j.biortech.2024.131087. Epub 2024 Jul 18.
Lignin represents a promising source of renewable energy. The development of CLEO (Cold processed Lignin Ethanol Oil) fuel introduces a novel lignin valorization approach, proposing its potential as maritime biofuel. However, its industrial success depends on enhancing fractionation yields and reducing solvent evaporation, which necessitates a detailed analysis of lignin properties, solvent types, and process parameters. By using novel combinations of biobased solvents, yields improved from 34 wt% to 49-53 wt% by using 30 wt% water or 40 wt% glycerol in ethanol, where Hildebrand Solubility Parameters emerged as indicative tool for increasing yields. Experiments on solid-to-liquid (S:L) ratios revealed a good balance between yield and lignin dispersion concentration at an S:L of 1:2.5. Producing CLEO with an improved solvent composition and S:L ratio resulted in 89 wt% yield while eliminating solvent evaporation requirements. This study highlights the potential for enhancing CLEO production efficiency and advancing it to industrial scale.
木质素是一种很有前途的可再生能源。冷处理木质素乙醇油(CLEO)燃料的开发提出了一种新的木质素增值方法,提出了其作为海洋生物燃料的潜力。然而,其工业成功取决于提高分馏产率和减少溶剂蒸发,这需要对木质素特性、溶剂类型和工艺参数进行详细分析。通过使用新型生物基溶剂组合,在乙醇中使用 30wt%水或 40wt%甘油,产率从 34wt%提高到 49-53wt%,其中 Hildebrand 溶解度参数成为提高产率的指示工具。固液比(S:L)的实验表明,在 S:L 为 1:2.5 时,产率和木质素分散浓度之间达到了良好的平衡。使用改进的溶剂组成和 S:L 比生产 CLEO,产率达到 89wt%,同时消除了对溶剂蒸发的需求。本研究强调了提高 CLEO 生产效率并将其推向工业规模的潜力。