首页> 外文期刊>Biochemical Engineering Journal >Effect of volumetric oxygen transfer coefficient (k(L)a) on ethanol production performance by Scheffersomyces stipitis on hemicellulosic sugarcane bagasse hydrolysate
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Effect of volumetric oxygen transfer coefficient (k(L)a) on ethanol production performance by Scheffersomyces stipitis on hemicellulosic sugarcane bagasse hydrolysate

机译:体积氧传递系数(k(L)a)对半球状甘蔗渣蔗渣水解产物裂殖酵母产乙醇性能的影响

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Experimental evaluation of the effect of the agitation speed and aeration rate (measured by k(L)a) and energy required for ethanol production using sugarcane bagasse hemicellulosic hydrolysate (SBHH) by Scheffersomyces stipitis were studied. Fermentation and purification stages were simulated using the software Aspen Plus with experimental data to understand the overall energy performance of the process. In all experiments, fermentative parameters and the thermal energy required in the ethanol production process were strongly influenced by k(L)a values. The optimum initial k(L)a to achieve the maximal ethanol concentration (15.03 g L-1) and the minimal thermal energy required (1.85 x 10(5) KW per kg ethanol), were found at 8.0 h(-1) (450 rpm and 0.6 vvm). Under this condition, the ethanol yield and productivity were 0.37 g g(-1) and 0.30 g L-1 h(-1), respectively. The current study highlights the ethanol production improvement from hemicellulose hydrolysate by S. stipitis and will contribute to developing a more efficient strategies for fermentation of both cellulose and hemicellulose hydrolysates. (c) 2016 Elsevier B.V. All rights reserved.
机译:实验研究了钝角拟南芥对甘蔗渣半纤维素水解产物(SBHH)的搅拌速度和通气速率(用k(L)a测量)和乙醇生产所需能量的影响的实验评估。使用软件Aspen Plus对发酵和纯化阶段进行了模拟,并结合实验数据来了解该过程的总体能源绩效。在所有实验中,发酵参数和乙醇生产过程中所需的热能都受到k(L)a值的强烈影响。发现在8.0 h(-1)达到最大乙醇浓度(15.03 g L-1)和所需的最小热能(1.85 x 10(5)KW / kg乙醇)的最佳初始k(L)a( 450 rpm和0.6 vvm)。在这种条件下,乙醇的产量和生产率分别为0.37 g g(-1)和0.30 g L-1 h(-1)。当前的研究强调了由链球菌引起的半纤维素水解产物的乙醇产量提高,并将有助于开发更有效的纤维素和半纤维素水解产物发酵策略。 (c)2016 Elsevier B.V.保留所有权利。

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