Pan Xuejun, Xie Dan, Yu Richard W, Saddler Jack N
Department of Biological Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, Wisconsin 53706, USA.
Biotechnol Bioeng. 2008 Sep 1;101(1):39-48. doi: 10.1002/bit.21883.
Lodgepole pine (Pinus contorta) killed by mountain pine beetle (Dendroctonus ponderosae) (BLP) was compared with healthy lodgepole pine (HLP) for bioconversion to ethanol and high-value co-products. The BLP and HLP chips were pretreated using an ethanol organosolv process at a variety of severities. It was shown that the BLP was easier to pretreat and delignify than were the HLP chips. The resulting pretreated BLP substrate had a lower residual lignin, lower degree of polymerization of cellulose, lower cellulose crystallinity, smaller fiber size and thereby a better enzymatic hydrolysability than did the HLP substrates. However, under the same conditions, the BLP showed lower substrate yield and cellulose recovery than did the HLP, which likely resulted from the excessive hydrolysis and subsequent decomposition of the cellulose and hemicellulose during the pretreatment. The BLP wood yielded more ethanol organosolv lignin than was obtained with the HLP material. The HLP lignin had a lower molecular weight and narrower distribution than did the BLP lignin. It appears that the beetle killed LP is more receptive to organosolv pretreatment other than a slightly lower recovery of carbohydrates.
将被山松甲虫(Dendroctonus ponderosae)杀死的扭叶松(Pinus contorta)(BLP)与健康的扭叶松(HLP)进行比较,以用于生物转化为乙醇和高价值副产品。使用乙醇有机溶剂法在不同的严苛条件下对BLP和HLP木片进行预处理。结果表明,与HLP木片相比,BLP更易于预处理和脱木质素。所得的预处理BLP底物比HLP底物具有更低的残余木质素、更低的纤维素聚合度、更低的纤维素结晶度、更小的纤维尺寸,因此具有更好的酶水解性。然而,在相同条件下,BLP的底物产率和纤维素回收率低于HLP,这可能是由于预处理过程中纤维素和半纤维素过度水解及随后的分解所致。BLP木材产生的乙醇有机溶剂木质素比HLP材料更多。HLP木质素的分子量比BLP木质素更低且分布更窄。看来,被甲虫杀死的扭叶松除了碳水化合物回收率略低外,对有机溶剂预处理更敏感。