Immobilization of Saccharomyces cerevisiae in Jackfruit (Artocarpus heterophyllus) Seed Fiber for Bioethanol Production

Q4 Chemical Engineering ASEAN Journal of Chemical Engineering Pub Date : 2022-06-30 DOI:10.22146/ajche.69781
Z. A. S. Bahlawan, M. Megawati, A. Damayanti, R. Putri, Ayu Nur Permadhini, Khoridatus Sulwa, Fahreza Pracenda Felicitia, Anggun Septiamurti
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引用次数: 3

Abstract

Bioethanol is alternative renewable energy typically obtained from glucose through a fermentation process using Saccharomyces cerevisiae. In the bioethanol fermentation process using yeast, there are several inhibiting factors, such as a high concentration of substrate, ethanol as the product, and nutrients. The present study aimed to investigate the effect of fermentation time (12- 72 hours), immobilized carrier size (sizes of 0.5 cm3 , 1 cm3 , and 1.5 cm3 ), and medium pH (3.0, 4.0, and 5.0) on the ethanol fermentation process using immobilized yeast in jackfruit (Artocarpus heterophyllus) seeds and subsequently to compare its performance with a free cell system. The highest ethanol concentration (89.15 g/L) with a yield of 96.92% was obtained by immobilizing yeast in jackfruit seed at a fermentation time of 72 hours, carrier size of 0.5 cm3 , and medium pH of 5.0. When compared to the free cell system fermentation under identical operating conditions, immobilized yeast in jackfruit seed obtained 1.41 times higher ethanol concentration. Jackfruit seed also led to a higher ethanol concentration compared to other S. cerevisiae carriers. Altogether, our findings imply that jackfruit seed has great potential as a carrier of S. cerevisiae in the process of fermenting glucose into ethanol
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菠萝蜜种子纤维固定化酿酒酵母菌生产生物乙醇的研究
生物乙醇是一种可替代的可再生能源,通常通过使用酿酒酵母的发酵过程从葡萄糖中获得。在使用酵母的生物乙醇发酵过程中,有几个抑制因素,如高浓度的底物、作为产物的乙醇和营养物质。本研究旨在研究发酵时间(12-72小时)、固定化载体尺寸(尺寸为0.5 cm3、1 cm3和1.5 cm3)和培养基pH(3.0、4.0和5.0)对固定化酵母在菠萝蜜(Artocarpus heterophyllus)种子中乙醇发酵过程的影响,并随后将其与游离细胞系统的性能进行比较。在发酵时间为72小时、载体尺寸为0.5cm3、培养基pH为5.0的条件下,通过将酵母固定在菠萝蜜种子中获得最高乙醇浓度(89.15g/L),产率为96.92%。与相同操作条件下的自由细胞系统发酵相比,菠萝蜜种子中的固定化酵母获得了1.41倍高的乙醇浓度。与其他酿酒酵母载体相比,菠萝蜜种子也导致了更高的乙醇浓度。总之,我们的研究结果表明,在将葡萄糖发酵成乙醇的过程中,菠萝蜜种子作为酿酒酵母的载体具有巨大的潜力
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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