Heinonen Jari, Tamper Juha, Laatikainen Markku, Sainio Tuomo
Lappeenranta University of Technology School of Engineering Science Skinnarilankatu 34 53850 Lappeenranta Finland.
UPM-Kymmene Corporation North European Research Center, Biochemicals Paloasemantie 19 53200 Lappeenranta Finland.
Chem Eng Technol. 2018 Dec;41(12):2402-2410. doi: 10.1002/ceat.201800412. Epub 2018 Nov 2.
The chromatographic recovery of monosaccharides and lignin from lignocellulosic hydrolysates was studied at laboratory and pilot scale. A weak cation-exchange resin in sodium form and a water eluent gave good separation efficiency. Scale-dependent phenomena, especially viscous fingering resulting from the large viscosity and density differences between the hydrolysate feed and eluent, were observed. The issue was resolved in the pilot scale with appropriate selection of the flow direction, and a high productivity was achieved at 95 % recovery yield. The pH value of the feed was found to have no effect on the actual separation; however, the resin was significantly less colored at a higher pH value.
在实验室和中试规模下研究了从木质纤维素水解物中回收单糖和木质素的色谱过程。钠型弱阳离子交换树脂和水洗脱液具有良好的分离效率。观察到了与规模相关的现象,特别是由于水解物进料和洗脱液之间的粘度和密度差异较大而导致的粘性指进现象。通过在中试规模下适当选择流动方向解决了该问题,并在回收率为95%时实现了高生产率。发现进料的pH值对实际分离没有影响;然而,在较高pH值下树脂的颜色明显较浅。