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首页> 外文期刊>Brazilian journal of chemical engineering >ISOLATION AND IDENTIFICATION OF YEAST STRAINS FROM SUGARCANE MOLASSES, DATES AND FIGS FOR ETHANOL PRODUCTION UNDER CONDITIONS SIMULATING ALGAL HYDROLYSATE
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ISOLATION AND IDENTIFICATION OF YEAST STRAINS FROM SUGARCANE MOLASSES, DATES AND FIGS FOR ETHANOL PRODUCTION UNDER CONDITIONS SIMULATING ALGAL HYDROLYSATE

机译:在模拟藻类水解产物的条件下,分离自甘蔗糖蜜,日期和无花果的酵母菌株进行分离和鉴定

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Yeast strains were isolated from sugar cane molasses (S1), dates (S2) and figs (S3) and the ethanol production was evaluated in batch condition. A comparison was made with the yeast Saccharomyces cerevisiae . The strains showed tolerant characteristics to stressful conditions like salinity and ethanol. The isolated strains produced ethanol; at 20 h of fermentation ethanol yields were 0.38-0.39 g.g -1 , and the productivities were almost 0.58 g.L -1 . S. cerevisiae and S1 tolerated up to 14% (v/v) of ethanol; while interestingly the isolates S2 and S3 were highly tolerant, up to 20% (v/v) ethanol. Thus, S2 and S3 could serve as potential strains for ethanol fermentation, with 0.27 and 0.29 g.g -1 yield of ethanol in the presence of 1.37 mol.L -1 NaCl. These values were higher than the value obtained using the yeast of reference and S1 (0.16 g.g -1 ). Co-cultures of S2 and S3 enhanced the ethanol production, increasing the yield of ethanol by 12.5% compared with the single culture. The strains were identified as species S.cerevisiae , and S2 and S3 were very similar. For an application in the valorization of biomass such as green macro-algae, some assays were done on a synthetic model medium of hydrolysate of macro-algae and the strains S2 and S3 demonstrated excellent fermentative performances.
机译:从甘蔗糖蜜(S1),枣(S2)和无花果(S3)中分离酵母菌株,并分批评估乙醇产量。与酿酒酵母(Saccharomyces cerevisiae)进行了比较。该菌株表现出对盐分和乙醇等胁迫条件的耐受性。分离出的菌株产生乙醇。在发酵20小时时,乙醇的产量为0.38-0.39 g.g -1,生产率几乎为0.58 g.L -1。酿酒酵母和S1耐受高达14%(v / v)的乙醇;有趣的是,分离株S2和S3具有很高的耐受性,乙醇含量高达20%(v / v)。因此,S2和S3可以用作乙醇发酵的潜在菌株,在1.37mol.L -1 NaCl存在下具有0.27和0.29g.g -1的乙醇产率。这些值高于使用参考酵母和S1的酵母获得的值(0.16g.g -1)。 S2和S3的共培养可提高乙醇产量,与单培养相比,乙醇的收率提高了12.5%。该菌株被鉴定为酿酒酵母,并且S2和S3非常相似。为了在诸如绿色大型藻类的生物质的增值中的应用,在大型藻类的水解产物的合成模型培养基上进行了一些测定,并且菌株S2和S3表现出优异的发酵性能。

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