Oshel Reed E, Nandakumar Mecheril V, Urgaonkar Sameer, Hendricker David G, Verkade John G
Midwest Research Institute, 425 Volker Boulevard, Kansas City, MO 64110-2241, USA.
Bioresour Technol. 2008 Aug;99(12):5193-205. doi: 10.1016/j.biortech.2007.09.036. Epub 2007 Dec 11.
Ethanol production from corn starch in the corn dry milling process leaves Distillers' Dry Grains and Solubles (DDGS) as a major by-product from which additional ethanol may be economically obtained from its glucan content. A challenge in processing the cellulose content of this material lies in its extensive inter-cellulose chain hydrogen bonding, which inhibits access of enzymes capable of cleaving glycosidic bonds, a transformation required for providing fermentable sugars. The phosphitylation of cellulosic OH groups using a reactive bicyclic phosphite ester is utilized to disrupt cellulosic hydrogen bonds, thus providing access to cellulose chains for further processing. We describe a method of pretreating DDGS with commercially available trimethylolpropane phosphite [P(OCH2)3CEt] in the presence of a slight molar excess of water to afford greater than 90% DDGS solubility in the reaction mixture in methanol and in water. Preliminary results using a model compound [D-(+)-permethylated cellobiose] indicate that glycosidic bonds are cleaved as a consequence of this pretreatment.
玉米干法磨粉过程中由玉米淀粉生产乙醇会产生酒糟和可溶物(DDGS)作为主要副产物,其葡聚糖含量可经济地用于生产更多乙醇。处理该材料纤维素含量的一个挑战在于其纤维素链间广泛的氢键作用,这会抑制能够裂解糖苷键的酶的作用,而提供可发酵糖需要这种转化。使用反应性双环亚磷酸酯对纤维素羟基进行亚磷酸酯化,以破坏纤维素氢键,从而使纤维素链能够进一步加工。我们描述了一种在略微过量摩尔水存在下,用市售的三羟甲基丙烷亚磷酸酯[P(OCH2)3CEt]预处理DDGS的方法,以使DDGS在甲醇和水中的反应混合物中的溶解度大于90%。使用模型化合物[D-(+)-全甲基化纤维二糖]的初步结果表明,这种预处理会导致糖苷键裂解。