Waste ground wheat was subjected to acid hydrolysis (pH = 3.0) at 90 degrees C for 15 min using an autoclave. The sugar solution obtained from acid hydrolysis was subjected to dark fermentation for hydrogen gas production after neutralization. In the first set of experiments, initial. total sugar concentration was varied between 3.9 and 27.5 g L-1 at constant biomass (cell) concentration of 1.3 g L-1. Biomass concentration was varied between 0.28 g L-1 and 1.38 g L-1 at initial total sugar concentration of 7.2 +/- 0.2 g L-1 in the second set of experiments. The highest hydrogen yield (1.46 mol H-2 mol(-1) glucose) and the specific formation rate (83.6 ml H-2 g(-1) cell h(-1)) were obtained with 10 g L-1 initial total sugar concentration. Bi...
In this study, waste paper was used as the raw material for hydrogen gas production by dark fermenta...
Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohyd...
Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohyd...
Ground waste wheat was subjected to combined dark and light batch fermentation for hydrogen producti...
Dark fermentation of acid hydrolyzed ground wheat starch for bio-hydrogen production by periodic fee...
Hydrogen gas production potentials of acid-hydrolyzed and boiled ground wheat were compared in batch...
Effects of the substrate and cell concentration on bio-hydrogen production from ground wheat solutio...
Hydrogen gas production from sugar solution derived from acid hydrolysis of ground wheat starch by p...
Powdered wheat solution was fermented batchwise for bio-hydrogen production using heat-treated anaer...
Hydrogen gas production from acid hydrolyzed waste wheat starch by combined dark and photo-fermentat...
Dark fermentation experiments were performed for bio-hydrogen production from ground wheat starch so...
The aim of the study is biohydrogen production from hydrolyzed waste wheat by dark fermentation in a...
Bio-hydrogen production by combined dark and light fermentation of ground wheat starch was investiga...
Effects of N/C, P/C and Fe(II)/C ratios in fermentation medium on biohydrogen production by dark fer...
Ground wheat powder solution (10 g L-1) was subjected to combined dark and light fermentations for b...
In this study, waste paper was used as the raw material for hydrogen gas production by dark fermenta...
Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohyd...
Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohyd...
Ground waste wheat was subjected to combined dark and light batch fermentation for hydrogen producti...
Dark fermentation of acid hydrolyzed ground wheat starch for bio-hydrogen production by periodic fee...
Hydrogen gas production potentials of acid-hydrolyzed and boiled ground wheat were compared in batch...
Effects of the substrate and cell concentration on bio-hydrogen production from ground wheat solutio...
Hydrogen gas production from sugar solution derived from acid hydrolysis of ground wheat starch by p...
Powdered wheat solution was fermented batchwise for bio-hydrogen production using heat-treated anaer...
Hydrogen gas production from acid hydrolyzed waste wheat starch by combined dark and photo-fermentat...
Dark fermentation experiments were performed for bio-hydrogen production from ground wheat starch so...
The aim of the study is biohydrogen production from hydrolyzed waste wheat by dark fermentation in a...
Bio-hydrogen production by combined dark and light fermentation of ground wheat starch was investiga...
Effects of N/C, P/C and Fe(II)/C ratios in fermentation medium on biohydrogen production by dark fer...
Ground wheat powder solution (10 g L-1) was subjected to combined dark and light fermentations for b...
In this study, waste paper was used as the raw material for hydrogen gas production by dark fermenta...
Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohyd...
Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohyd...