Zhang Hongqiong, Zhang Rui, Song Yunong, Miu Xinying, Zhang Quanguo, Qu Jingbo, Sun Yong
College of Engineering, Northeast Agriculture University, Harbin 150030, PR China.
School of Resource and Environment, Northeast Agriculture University, Harbin 150030, PR China.
Bioresour Technol. 2023 May;376:128856. doi: 10.1016/j.biortech.2023.128856. Epub 2023 Mar 11.
Enhancing the degradation of lignocellulosic structure is essential for the efficient use of corn stover. This study investigated the effects of using urea combined with steam explosion on the enzymatic hydrolysis and ethanol production of corn stover. The results demonstrated that 4.87% urea addition and 1.22 MPa steam pressure were optimal for ethanol production. The highest reducing sugar yield (350.12 mg/g) was increased by 116.42% (p < 0.05), and the corresponding degradation rates of cellulose, hemicellulose, and lignin in pretreated corn stover were increased by 40.26%, 45.89% and 53.71% compared with the untreated corn stover (p < 0.05). Moreover, the maximal sugar alcohol conversion rate was approximately 48.3%, and the ethanol yield reached 66.5%. In addition, the key functional groups in corn stover lignin under combined pretreatment were identified. These findings offer new insights into corn stover pretreatment and can help develop feasible technologies to enhance ethanol production.
增强木质纤维素结构的降解对于玉米秸秆的高效利用至关重要。本研究考察了尿素与蒸汽爆破联合使用对玉米秸秆酶解及乙醇生产的影响。结果表明,添加4.87%的尿素和1.22 MPa的蒸汽压力对乙醇生产最为适宜。最高还原糖产量(350.12 mg/g)提高了116.42%(p < 0.05),预处理玉米秸秆中纤维素、半纤维素和木质素的相应降解率与未处理玉米秸秆相比分别提高了40.26%、45.89%和53.71%(p < 0.05)。此外,最大糖醇转化率约为48.3%,乙醇产量达到66.5%。另外,还鉴定了联合预处理下玉米秸秆木质素中的关键官能团。这些发现为玉米秸秆预处理提供了新的见解,并有助于开发可行的技术来提高乙醇产量。