通用肥料作为酿酒酵母乙醇葡萄糖发酵替代无机氮源的评价

Q4 Biochemistry, Genetics and Molecular Biology
Thracesy Munah Assan, Effa Shahrina Sahari, N. Suhaili, Dayang, Salwani Awang Adeni, D. Kanakaraju, Micky Vincent
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引用次数: 0

摘要

在生物乙醇的研究和生产中,首选的发酵酵母(酿酒酵母)通常在含有酵母提取物和蛋白胨的液体肉汤中培养。然而,这些实验室和科学级化学品的使用成本高昂,使其无法用于大规模生物乙醇生产。因此,本研究旨在评估酿酒酵母使用普通肥料配方进行葡萄糖乙醇发酵的可行性,以提供无机氮、磷、钾和微量元素(NPK-TE)。与作为对照的传统酵母提取物蛋白胨(YEP)培养基相比,在葡萄糖的乙醇发酵过程中,使用具有0.5X、1.0X和2.0X肥料氮当量(FNE)的不同通用肥料强度的发酵培养基作为发酵液。根据结果,在YEP肉汤中培养的酿酒酵母产生的湿细胞(21.93 g/L)和干细胞(3.87 g/L)的最高细胞浓度,在发酵的前72小时观察到快速增加。发酵期结束时,YEP培养基中的乳酸(3.14g/L)和乙酸(0.96g/L)水平最低,而2.0X FNE肥料培养基中乳酸(8.08g/L)和醋酸(2.67g/L)的浓度最高。结果表明,在0.5X FNE肥料培养基中发酵时,获得了最佳的理论乙醇产量(TEY),TEY为86.18%。在1.0X和2.0X FNE的肉汤中,TEY产量分别为78.68%和51.54%。一般来说,所有三种肥料培养基都支持葡萄糖的乙醇发酵,如统计分析所示,0.5X FNE肥料肉汤的产量显著接近传统的YEP培养基。YEP样品和肥料肉汤(0.5X和1.0X FNE)样品的结果在乙酸、乳酸、生物质生产以及葡萄糖利用等其他发酵特性方面的相似性也表明,普通肥料有潜力用作替代培养基,以取代传统的YEP,以更低的成本生产乙醇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Generic Fertiliser as an Alternative Inorganic Nitrogen Source for Ethanolic Glucose Fermentation by Saccharomyces cerevisiae
In the studies and production of bioethanol, the preferred fermenting yeast (Saccharomyces cerevisiae) is usually cultured in liquid broth that contains yeast extract and peptone. However, the use of these laboratory and scientific grade chemicals is costly, making them impractical for mass bioethanol production. Therefore, this study was conducted to evaluate the feasibility of glucose ethanolic fermentation by S. cerevisiae using generic fertiliser formulations to provide inorganic nitrogen, phosphorus, potassium and trace elements (NPK-TE). Fermentation media of different generic fertiliser strength at 0.5X, 1.0X and 2.0X Fertiliser Nitrogen Equivalents (FNE), as compared to the conventional Yeast Extract-Peptone (YEP) medium as control, was used as fermentation broth during the ethanolic fermentation of glucose. Based on the results, S. cerevisiae cultured in YEP broth produced the highest cell concentration for both wet (21.93 g/L) and dry cells (3.87 g/L), with rapid increment observed in the first 72 h of fermentation. By the end of the fermentation period, lactic acid (3.14 g/L) and acetic acid (0.96 g/L) levels were recorded to be the lowest in YEP medium while their concentration (lactic acid, 8.08 g/L) and (acetic acid, 2.67 g/L) were highest in 2.0X FNE fertiliser medium. Results indicated that the best theoretical ethanol yield (TEY) among the fertiliser media was achieved when fermentation was performed in the 0.5X FNE fertiliser medium, with a TEY of 86.18%. TEY yields were 78.68% and 51.54% in broth with 1.0X and 2.0X FNE, respectively. In general, all three fertiliser media supported ethanolic fermentation of glucose, with the 0.5X FNE fertiliser broth showing a yield that is significantly close to the conventional YEP medium, as seen in the statistical analysis. Similarities in other fermentation profiles such as acetic acid, lactic acid, and biomass production, as well as glucose utilisation, between the results from the YEP samples and samples from the fertiliser broths (at 0.5X and 1.0X FNE) have also shown that generic fertiliser has the potential to be used as an alternative medium to replace the conventional YEP to produce ethanol at a lower cost.
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来源期刊
Borneo Journal of Resource Science and Technology
Borneo Journal of Resource Science and Technology Agricultural and Biological Sciences-Forestry
CiteScore
0.70
自引率
0.00%
发文量
16
审稿时长
12 weeks
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