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Kinetics of the Methanogenic Fermentation of Acetate - Applied and

initial concentration of undissociated acetic acid on methane production, we used initial concentrations of total acetic acid of 10 to 130 mM from pH 6 0 to pH 7 5
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Microbial acetate conversion to methane: kinetics, yields and

process to methane and carbon dioxide by mixed cultures of microorganisms Acetate, a product of acidogenic and acetogenic bacteria and the main substrate  
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STUDIES ON THE METHANE FERMENTATION: V BIOCHEMICAL

between the ethanol oxidized and acetic acid formed cannot be due to a production of carbon dioxide, since if this occurred the net disappearance of carbon 
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[PDF] Methane Production from Acidic Effluent Obtained from Hydrogen

Parameter Total chemical oxygen demand (tCOD) Butyric acid Acetic acid Propionic acid Lactic acid Ethanol Concentration (mg/L) 23,000 3105 9 2293 2
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The effect of pH on ruminal methanogenesis

ruminal bacteria from the forage-fed cow converted CO, and H, to methane, but the ruminal fluid The influence of acetate on the rate of methane production



Microbial acetate conversion to methane: kinetics yields - Springer

Acetate a product of acidogenic and acetogenic bacteria and the main substrate for methanogenic bacteria is an important intermediate of the anaerobic 



Kinetics of the Methanogenic Fermentation of Acetate - Europe PMC

To determine the effect of the initial concentration of undissociated acetic acid on methane production we used initial concentrations of total acetic acid



A Practical Method to Estimate the Acetoclastic Methanogenic - jstor

Thus far a limited number of methanogenic bacteria are known to convert acetate to methane and carbon dioxide such as Methanobacterium soehngenii Meth



Inhibition of the Fermentation of Propionate to Methane by Hydrogen

acetate to propionate utilization a noncompetitive product inhibition model was used: q positive long rod-shaped bacterium and could utilize hy-



[PDF] Important Aceticlastic Methanogen sp as an Methanothrix

cycle and acetate was the precursor of 63 to 66 of the methane produced during peak digestor mentative bacteria are usually coupled with hydrogen-con-

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