Sharma Laxmi, Alam Nurnabi Meherul, Roy Suman, Satya Pratik, Kar Gouranga, Ghosh Subhojit, Goswami Tinku, Majumdar Bijan
ICAR-Central Research Institute for Jute and Allied Fibres, Barrackpore, Kolkata 700121, India.
ICAR-Central Research Institute for Jute and Allied Fibres, Barrackpore, Kolkata 700121, India.
Bioresour Technol. 2023 Jan;368:128318. doi: 10.1016/j.biortech.2022.128318. Epub 2022 Nov 12.
Reduction of inherent structural recalcitrance and improved saccharification efficiency are two important facets to enhance fermentable sugar yield for bioethanol production from lignocellulosic biomass. This study optimized alkaline pretreatment and saccharification conditions employing response surface methodology to improve saccharification yield of jute (Corchorus olitorius cv. JROB-2) biomass. The biomass is composed of cellulose (66.6 %), lignin (19.4 %) and hemicellulose (13.1 %). NaOH concentration exhibited significant effect on delignification during pretreatment. The highest delignification (80.42 %) was obtained by pretreatment with 2.47 % NaOH at 55.8 °C for 5.9 h removing 79.8 % lignin and 34.2 % hemicellulose from biomass, thereby increasing cell wall porosity and allowing better accessibility to saccharification enzyme. During saccharification optimization, significant effect was observed for biomass loading, enzyme concentration and temperature. Optimized saccharification condition yielded maximum saccharification (76.48 %) when hydrolysis was performed at 6.9 % biomass loading with enzyme concentration of 49.52 FPU/g substrate at 51.05 °C for 74.46 h.
降低内在结构顽固性并提高糖化效率是提高木质纤维素生物质生产生物乙醇可发酵糖产量的两个重要方面。本研究采用响应面法优化了碱预处理和糖化条件,以提高黄麻(Corchorus olitorius cv. JROB-2)生物质的糖化产率。该生物质由纤维素(66.6%)、木质素(19.4%)和半纤维素(13.1%)组成。NaOH浓度在预处理过程中对脱木质素表现出显著影响。在55.8°C下用2.47%NaOH预处理5.9小时可获得最高脱木质率(80.42%),从生物质中去除79.8%的木质素和34.2%的半纤维素,从而增加细胞壁孔隙率并使糖化酶更容易进入。在糖化优化过程中,观察到生物质负载量、酶浓度和温度有显著影响。当在51.05°C下以6.9%的生物质负载量、49.52 FPU/g底物的酶浓度进行74.46小时水解时,优化的糖化条件产生了最大糖化率(76.48%)。