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Bioconversion of sugarcane bagasse and dry spent yeast to ethanol through a sequential process consisting of solid-state fermentation, hydrolysis, and submerged fermentation

机译:通过连续的过程组成的甘蔗甘蔗蔗渣和干燥的酵母与乙醇的生物转化通过固态发酵,水解和浸没式发酵

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摘要

Sugarcane bagasse (SB), a by-product from the sugar industry, is considered a promising feedstock for ethanol production, owing to its high cellulose content and its ready availability. In this study, chemically pretreated SB was mixed with dry spent yeast (DSY) at a mass ratio of 60:40 before being fermented under solid-state fermentation (SSF) by Aspergillus niger TK1. The fermented solids at a concentration of 24 g/L (on a dry basis) was subsequently hydrolyzed to produce a hydrolysate, which was concentrated to contain 29.7 ± 0.6 g/L of reducing sugar and 585.1 ± 6.5mg/L of free amino nitrogen. The concentrated hydrolysate was fermented by Saccharomyces cerevisiae TISTR 5339, yielding 8.98 ± 0.2 g/L of ethanol. An ethanol yield on reducing sugar was 0.46 g/g, which was 90.33% of the theoretical yield. Based on the results, a bioconversion process consisting of SSF followed by hydrolysis of fermented solids and submerged ethanol fermentation is proposed. In this process, ethanol yield on SB-DSY mixed substrates was 0.08 g/g.
机译:糖甘蔗Bagasse(SB)是糖业的副产品,被认为是乙醇生产的有前途的原料,由于其高纤维素含量及其现成的可用性。在该研究中,在通过Aspergillus尼日尔TK1在固态发酵(SSF)下发酵之前,将化学预处理的Sb与干燥的花费酵母(DSY)混合在60:40之前。随后水解浓度为24g / L(干基)的发酵固体以产生水解产物,浓缩,含有29.7±0.6g / L的还原糖和585.1±6.5mg / L的游离氨基氮。浓渗水解产物通过酿酒酵母酿酒酵母5339发酵,得到8.98±0.2g / L的乙醇。还原糖的乙醇产率为0.46g / g,为理论产率的90.33%。基于结果,提出了由SSF组成的生物转化过程,然后改变发酵固体和浸没式乙醇发酵。在该方法中,Sb-DSY混合衬底上的乙醇产率为0.08g / g。

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