Innovation Center, University of Sopron, 4 Bajcsy Zs., 9400 Sopron, Hungary; Department of Wood Science and Technology, Faculty of Forestry and Wood Technology, Mendel University in Brno, Zemědělská 3, Brno 61300, Czech Republic.
Innovation Center, University of Sopron, 4 Bajcsy Zs., 9400 Sopron, Hungary.
Ultrason Sonochem. 2021 Apr;72:105462. doi: 10.1016/j.ultsonch.2021.105462. Epub 2021 Jan 9.
One way of satisfying increased market demand and simultaneously achieving a reduced environmental load in the industrial paper production is the use of fibrous agricultural residues. The aims of this study were i) to investigate the effect of alkaline - hydrodynamic cavitation (HC) pre-treatments on the delignification of Miscanthus × giganteus stalks (MGS) and ii) establishing the suitability of MGS as feedstock and their exploitation in pulp and paper manufacturing. It was demonstrated that the proposed treatment is an efficient delignification method for the non-wood fiber sources, such as miscanthus. A significant outcome of this work was the observation that HC treatment preserved the fibres lengths and surface quality of raw MGS, but at the same time increased the amount of kinked and curled fibers present in cavitated miscanthus fibers. The average miscanthus fiber length was found to be relatively short at 0.45 (±0.28) mm, while the slenderness ratio, the flexibility coefficient and Runkel ratio values were calculated to be 28.13, 38.16 and 1.62, respectively. The estimated physical properties of MGS pulp hand-sheets were 24.88 (±3.09) N m g as the tensile index, 0.92 (±0.06) kPa m g as the burst index and 4.0 (±0.37) mN m g as the tear index. Overall the current work demonstrated effective use of hydrodynamic cavitation for improving the processing in pulp and paper manufacturing.
满足市场需求增长并同时减少工业造纸过程中环境负荷的一种方法是使用纤维状农业残留物。本研究的目的是:i)研究碱性-水力空化(HC)预处理对芒草茎(MGS)脱木质素的影响,ii)确定 MGS 作为原料的适宜性及其在制浆造纸中的应用。结果表明,该处理方法是一种有效的非木材纤维原料脱木质素方法,如芒草。这项工作的一个重要结果是观察到 HC 处理保留了原料芒草的纤维长度和表面质量,但同时增加了空化芒草纤维中存在的扭结和卷曲纤维的数量。发现芒草纤维的平均长度相对较短,为 0.45(±0.28)mm,而其长径比、柔韧性系数和伦克尔比分别计算为 28.13、38.16 和 1.62。MGS 纸浆手抄片的估计物理性能为:拉伸指数为 24.88(±3.09)N m g,耐破指数为 0.92(±0.06)kPa m g,撕裂指数为 4.0(±0.37)mN m g。总的来说,目前的工作表明,水力空化在改善制浆造纸加工方面具有有效的应用。