National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China.
Bioresour Technol. 2013 Jul;139:59-65. doi: 10.1016/j.biortech.2013.04.015. Epub 2013 Apr 12.
In order to solve the inhomogeneity of cornstalk as fiber material to manufacture dissolving pulp, a novel method of steam explosion coupling mechanical carding was put forward to fractionate cornstalk long fiber for the production of cornstalk dissolving pulp. The fractionated long fiber had homogeneous structure and low hemicellulose and ash content. The fiber cell content was up to 85% in area, and the hemicellulose and ash content was 8.34% and 1.10% respectively. The α-cellulose content of cornstalk dissolving pulps was up to 93.10-97.10%, the viscosity was 14.37-23.96 mPas, and the yields of cornstalk dissolving pulps were from 10.11% to 12.44%. In addition, the fractionated short fiber was to be hydrolyzed by enzyme to build sugar platform. The constructed method of steam explosion coupling mechanical carding achieved the fractionation of cornstalk into long fiber and short fiber cleanly and effectively, and provided a new way for cornstalk integrated refinery.
为了解决玉米秸秆作为纤维材料制造溶解浆的不均匀性,提出了一种新的汽爆-机械梳理耦合方法,将玉米秸秆中的长纤维分级,用于生产玉米秸秆溶解浆。分级后的长纤维结构均匀,半纤维素和灰分含量低。纤维细胞含量高达 85%,半纤维素和灰分含量分别为 8.34%和 1.10%。玉米秸秆溶解浆的α-纤维素含量高达 93.10%-97.10%,粘度为 14.37-23.96mPas,玉米秸秆溶解浆的得率为 10.11%-12.44%。此外,分级后的短纤维通过酶解进行水解,构建糖平台。汽爆-机械梳理耦合的分级方法实现了玉米秸秆的长纤维和短纤维的高效、清洁分级,为玉米秸秆的综合炼制提供了新途径。