Sixty six indigenous Saccharomyces cerevisiae strains were evaluated in stressful conditions (temperature, osmolarity, sulphite and ethanol tolerance) and also ability to flocculate. Eighteen strains showed tolerant characteristics to these stressful conditions, growing at 42 ºC, in 0.04% sulphite, 1 mol L-1 NaCl and 12% ethanol. No flocculent characteristics were observed. These strains were evaluated according to their fermentative performance in sugar cane juice. The conversion factors of substrates into ethanol (Yp/s), glycerol (Yg/s) and acetic acid (Yac/s), were calculated. The highest values of Yp/s in sugar cane juice fermentation were obtained by four strains, one isolated from fruit (0.46) and the others from sugar cane (0.45, 0.4...
This research involves the fermentation of molasses by Saccharomyces cerevisiae. The temperature tol...
During ethanol production, yeasts are subjected to a number of stress factors - among them high subs...
1. Introduction One of the main challenges in advanced 2nd generation bioethanol production is the s...
Sixty six indigenous Saccharomyces cerevisiae strains were evaluated in stressful conditions (tem-pe...
The aim of this investigation was to assess the impact of yeast strain, initial glucose concentratio...
Saccharomyces cerevisiae is the organism of choice for many food and beverage fermentations because ...
Pichia kudriavzevii 1P4 is a thermotolerant-ethanologenic yeast potential for application in ethanol...
The conversion of lignocellulose into fermentable sugars is considered a promising alternative for i...
International audienceYeast strains were isolated from sugar cane molasses (S1), dates (S2) and figs...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
<div><p>The budding yeast <i>Saccharomyces cerevisiae</i> is a platform organism for bioethanol prod...
Background: During industrial fermentation of lignocellulose residues to produce bioethanol, micro...
The selection of yeast strains adapted to fermentation stresses in their winegrowing area is a key f...
Abstract The conversion of lignocellulose into fermentable sugars is considered a promising alternat...
Switching bioethanol production from 1st generation biomass to 2nd generation biomass requires resol...
This research involves the fermentation of molasses by Saccharomyces cerevisiae. The temperature tol...
During ethanol production, yeasts are subjected to a number of stress factors - among them high subs...
1. Introduction One of the main challenges in advanced 2nd generation bioethanol production is the s...
Sixty six indigenous Saccharomyces cerevisiae strains were evaluated in stressful conditions (tem-pe...
The aim of this investigation was to assess the impact of yeast strain, initial glucose concentratio...
Saccharomyces cerevisiae is the organism of choice for many food and beverage fermentations because ...
Pichia kudriavzevii 1P4 is a thermotolerant-ethanologenic yeast potential for application in ethanol...
The conversion of lignocellulose into fermentable sugars is considered a promising alternative for i...
International audienceYeast strains were isolated from sugar cane molasses (S1), dates (S2) and figs...
BACKGROUND: During industrial fermentation of lignocellulose residues to produce bioethanol, microor...
<div><p>The budding yeast <i>Saccharomyces cerevisiae</i> is a platform organism for bioethanol prod...
Background: During industrial fermentation of lignocellulose residues to produce bioethanol, micro...
The selection of yeast strains adapted to fermentation stresses in their winegrowing area is a key f...
Abstract The conversion of lignocellulose into fermentable sugars is considered a promising alternat...
Switching bioethanol production from 1st generation biomass to 2nd generation biomass requires resol...
This research involves the fermentation of molasses by Saccharomyces cerevisiae. The temperature tol...
During ethanol production, yeasts are subjected to a number of stress factors - among them high subs...
1. Introduction One of the main challenges in advanced 2nd generation bioethanol production is the s...