Corbett Derek B, Hong Changyoung, Venditti Richard, Jameel Hasan, Park Sunkyu
North Carolina State University, Department of Forest Biomaterials 2820 Faucette Dr. Raleigh North Carolina 27606 USA
RSC Adv. 2019 Oct 7;9(55):31819-31827. doi: 10.1039/c9ra06018a.
The production of a high-value xylooligosaccharide (XOS) prebiotic product from lignocellulosic autohydrolysate requires processing for the removal of non-carbohydrate components such as lignin and furfural. In this research, the nature of XOS dissolved in autohydrolysate is evaluated including the XOS degree of polymerization (DP) distribution and potential covalent association between XOS and lignin (LCC). The impact of these factors on the yield of XOS during treatment of autohydrolysate with hydrophobic resin is assessed. Over 30% of the XOS in autohydrolysate was found to be likely associated with lignin ("tied" XOS), all of which was removed during hydrophobic resin treatment along with over 90% of the dissolved lignin. However, loss of dissolved XOS during resin treatment was found to not be due solely to XOS association with lignin. Over 50% of the "free," non-lignin-associated XOS was also removed by resin treatment. Interaction between "free" XOS and the hydrophobic resin was found to be highly dependent on DP with higher DP XOS being removed far more readily than low DP XOS. Over 80% of dissolved "free" XOS with a DP of six and above (X6+) was removed from autohydrolysate during treatment while only 17% of xylose (X1) was removed. Efforts to understand the interaction between the hydrophobic resin and XOS and to improve the recovery of XOS during hydrophobic resin treatment are presented.
从木质纤维素自水解液中生产高价值的低聚木糖(XOS)益生元产品需要进行处理以去除木质素和糠醛等非碳水化合物成分。在本研究中,对溶解在自水解液中的XOS的性质进行了评估,包括XOS的聚合度(DP)分布以及XOS与木质素之间潜在的共价结合(LCC)。评估了这些因素对用疏水树脂处理自水解液过程中XOS产率的影响。发现自水解液中超过30%的XOS可能与木质素相关(“结合”XOS),在疏水树脂处理过程中,所有这些XOS以及超过90%的溶解木质素都被去除。然而,发现树脂处理过程中溶解XOS的损失并非仅仅是由于XOS与木质素的结合。超过50%的“游离”、与木质素无关的XOS也通过树脂处理被去除。发现“游离”XOS与疏水树脂之间的相互作用高度依赖于DP,较高DP的XOS比低DP的XOS更容易被去除。在处理过程中,自水解液中超过80%的DP为六及以上(X6+)的溶解“游离”XOS被去除,而只有17%的木糖(X1)被去除。本文介绍了理解疏水树脂与XOS之间相互作用以及提高疏水树脂处理过程中XOS回收率的努力。