School of Materials and Chemical Engineering, Southwest Forestry University, Kunming 650224, China.
School of Civil Engineering, Southwest Forestry University, Kunming 650224, China.
Bioresour Technol. 2023 Sep;383:129230. doi: 10.1016/j.biortech.2023.129230. Epub 2023 May 25.
Organic peracids has attracted widespread attention from researchers in biomass pretreatment. As a weak acid with high production, low price and toxicity, citric acid (CA) was mixed with hydrogen peroxide at the room temperature to generate peroxy-citric acid with strong oxidative functions. An innovative and efficient pretreatment method using peroxy-citric acid (HPCA) was proposed to enhance enzymatic hydrolysis and bioethanol production of bamboo residues. After D. giganteus (DG) was pretreated with HPCA at 80 °C for 3 h, lignin of 95.36% and xylan of 55.41% was effectively removed, and the enzymatic saccharification yield of HPCA-treated DG enhanced by about 8-9 times compared with CA pretreated DG. The ethanol recovery of 17.18 g/L was achieved. This work provided a reference for mild biomass pretreatment, which will promote the large-scale application of organic peracids system in biorefinery processes.
有机过氧酸在生物质预处理方面引起了研究人员的广泛关注。柠檬酸(CA)是一种弱酸性物质,具有生产量大、价格低廉、毒性低的特点,它与过氧化氢混合可在室温下生成具有强氧化功能的过氧柠檬酸。本研究提出了一种使用过氧柠檬酸(HPCA)的创新且高效的预处理方法,以提高竹废料的酶水解和生物乙醇产量。在 80°C 下用 HPCA 预处理大巨桉(DG)3 小时后,有效地去除了 95.36%的木质素和 55.41%的木聚糖,与 CA 预处理 DG 相比,HPCA 处理 DG 的酶解糖化产率提高了约 8-9 倍。乙醇得率为 17.18 g/L。这项工作为温和的生物质预处理提供了参考,将促进有机过氧酸体系在生物炼制过程中的大规模应用。