School of Chemical Engineering and Bioengineering, Bioproducts, Science and Engineering Laboratory, Washington State University, Richland, WA 99354, United States.
Bioresour Technol. 2013 Sep;144:232-9. doi: 10.1016/j.biortech.2013.06.100. Epub 2013 Jul 2.
To clarify the specific effect of biomass substrate surface area on its enzymatic digestibility, factors of fiber size reduction and swelling changes were investigated by using poplar substrates with controlled morphological and chemical properties after modified chemical pulping. Results showed that fiber size changes had insignificant influence on enzymatic hydrolysis, although the external surface area increased up to 41% with the reduction of fiber size. Swelling changes caused by increased biomass fiber porosities after PFI refining showed a significant influence on the efficiency of enzymatic hydrolysis. It is also found that chemical properties such as xylan and lignin content can influence the swelling effect. Xylan is confirmed to facilitate substrate hydrolysability by swelling, while lignin restricts swelling effect and thus minimizes the enzyme accessibility to substrates.
为了阐明生物质底物表面积对其酶解性能的具体影响,本研究通过使用经化学制浆改性后的具有可控形态和化学性质的杨木底物,考察了纤维尺寸减小和溶胀变化的因素。结果表明,尽管纤维尺寸减小导致外比表面积增加了 41%,但纤维尺寸变化对酶解几乎没有影响。PFI 精磨后生物质纤维孔隙率增加导致的溶胀变化对酶解效率有显著影响。此外,还发现木聚糖和木质素含量等化学性质会影响溶胀效果。木聚糖被证实通过溶胀来促进底物的水解,而木质素则限制了溶胀效果,从而使酶对底物的可及性最小化。