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首页> 外文期刊>Biomass Conversion and Biorefinery >Optimization of low-temperature energy-efficient pretreatment for enhanced saccharification and fermentation of Conocarpus erectus leaves to produce ethanol using Saccharomyces cerevisiae
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Optimization of low-temperature energy-efficient pretreatment for enhanced saccharification and fermentation of Conocarpus erectus leaves to produce ethanol using Saccharomyces cerevisiae

机译:优化低温节能预处理,用于增强Conocarpus erectus叶片的糖化和发酵,用酿酒酵母产生乙醇

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Leaves of Conocarpus erectus are potential feedstock for bioethanol production due to their lower lignin and higher cellulosic content and are among one of the least explored biomass sources. The present study reported a low-temperature (90 degrees C) energyefficient pretreatment method for the release of fermentable sugars from C. erectus leaves and its conversion into bioethanol by using industrial and lab yeast strains. Optimization of process parameters was performed by monitoring glucose utilization and ethanol production. The maximum glucose concentration of 12 g L-1 and 19.75 g L-1 were obtained after the low-temperature (90 degrees C) pretreatment and enzymatic saccharification, respectively. The optimum enzymatic assay conditions were with 10% biomass and enzyme loading of 30 FPU/g cellulose, resulting in the release of similar to 20 g L-1 of glucose from pretreated biomass which is equivalent to the glucose concentration in standard growth media. Hydrolysate fermentation by S. cerevisiae strains SPSC01, ER, YB2625, and 6525 exhibited highest ethanol yields of 0.47 g g(-1) and 0.46 g g(-1) which is the highest ever reported for C. erectus even under acetic acid stress, where a fermentation efficiency of 92.3% was achieved. The present study may lead to establishing low-cost, energy-efficient biological conversion of C. erectus to ethanol.
机译:Conocarpus erectus的叶子是生物乙醇产生的潜在原料,由于它们的降低木质素和更高的纤维素含量,并且是最不探索的生物质来源之一。本研究报道了一种低温(90℃)的能量效能效率,用于通过使用工业和实验室酵母菌菌株将可发酵糖的可发酵糖释放到生物乙醇中。通过监测葡萄糖利用和乙醇生产来进行工艺参数的优化。在低温(90℃)预处理和酶糖化后,获得12g L-1和19.75g L-1的最大葡萄糖浓度。最佳酶测定条件具有10%的生物质和30fpu / g纤维素的酶负载,导致释放与预处理生物质的20g L-1相似,其等于标准生长介质中的葡萄糖浓度。通过S. Cerevisiae菌株SPSC01,ER,YB2625和6525的水解产物发酵表现出最高的0.47gg(-1)和0.46gg(-1)的最高乙醇产率,即即使在乙酸胁迫下,勃起的最高均为C. erectus报道。实现了92.3%的发酵效率。本研究可能导致C.2Rectus的低成本,节能的生物转化为乙醇。

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