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Development of a practical and cost-effective medium for bioethanol production from the seaweed hydrolysate in surface-aerated fermentor by repeated-batch operation

机译:通过重复分批操作开发一种实用且具有成本效益的介质,用于从表面曝气发酵罐中的海藻水解物中生产生物乙醇

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To develop a practical and cost-effective medium for bioethanol production from the hydrolysate of seaweed Sargassum sagamianum, we investigated the feasibility and performance of bioethanol production in CSL (cornsteep liquor)-containing medium, where yeast Pichia stipitis was used and the repeated batch was carried out in a surface-aerated fermentor. The optimal medium replacement time during the repeated operation was determined to be 36 h, and the surface aeration rates were 30 and 100 ml/min. Under these conditions, the repeatedbatch operation was successfully carried out for 6 runs (216 h), in which the maximum bioethanol concentrations reached about 11-12 g/l at each batch operation. These results demonstrated that bioethanol production could be carried out repeatedly and steadily for 216 h. In these experiments, the total cumulative bioethanol production was 57.9 g and 58.0 g when the surface aeration rates were 30 ml/min and 100 ml/min, respectively. In addition, the bioethanol yields were 0.43 (about 84% of theoretical value) and 0.44 (about 86% of theoretical value) when the surface aeration rates were 30 ml/min and 100 ml/min, respectively. CSL was successfully used as a medium ingredient for the bioethanol production from the hydrolysate of seaweed Sargassum sagamianum, indicating that this medium may be practical and cost-effective for bioethanol production.
机译:为了开发一种实用且经济高效的培养基,利用海藻Sargassum sagamianum的水解产物生产生物乙醇,我们研究了在含有CSL(玉米皮酒)的培养基中生产生物乙醇的可行性和性能,该培养基使用了酵母毕赤酵母,重复进行在表面充气的发酵罐中进行。确定重复操作期间的最佳培养基更换时间为36 h,表面通气速率为30和100 ml / min。在这些条件下,成功进行了6次运行(216小时)的重复分批操作,其中每次分批操作中最大生物乙醇浓度达到约11-12 g / l。这些结果表明,生物乙醇的生产可以连续,稳定地进行216小时。在这些实验中,当表面通气速率分别为30 ml / min和100 ml / min时,总累积生物乙醇产量分别为57.9 g和58.0 g。此外,当表面通气速率分别为30 ml / min和100 ml / min时,生物乙醇产率分别为0.43(理论值的84%)和0.44(理论值的86%)。 CSL已成功用作海藻Sargassum sagamianum水解产物生产生物乙醇的培养基成分,表明该培养基对于生产生物乙醇可能是实用且具有成本效益的。

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