Inhibition of the acidogenic dissimilation of glucose in anaerobic continuous cultures by free butyric acid |
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Authors: | J. C. van den Heuvel H. H. Beeftink P. G. Verschuren |
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Affiliation: | (1) Department of Chemical Engineering, University of Amsterdam, Nieuwe Achtergracht 166, 1018 WV Amsterdam, The Netherlands |
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Abstract: | Summary In anaerobic wastewater treatment the separation of fermentative and methanogenic bacteria is aimed at an increased performance of the total digestion process. It is known that the attainable growth rate of the acidogenic population in continuous culture decreases at increasing influent concentrations of glucose. To account for this phenomenon, a new kinetic model was developed that combines substrate and product inhibition. In the present research product inhibition was investigated quantitatively in a continuous culture fermenting 50 mmol/l glucose. Extra acetate and butyrate were added up to 200 mmol/l at different pH values, and it turned out that only free butyric acid inhibited growth. The lower attainable growth rates of cultures producing comparable amounts of butyrate when fed with concentrated influents, strongly indicated substrate inhibition. Evidence is presented that transitions to low-conversion steady states predicted by the kinetic model, play a role and decrease the stability of the culture.Nomenclature D dilution rate, h-1 - Datt highest D using certain experimental procedure h-1 - Ki substrate inhibition constant, mol·m-3 - Kp product inhibition constant mol·m-3 - Ks substrate saturation constant, mol·m-3 - P concentration inhibitory product mol·m-3 - S substrate concentration, mol·m-3 - So influent substrate concentration, mol·m-3 - Smaxc substrate concentration at maxc, mol·m-3 - Smaxh substrate concentration at maxh, mol·m-3 - specific growth rate, h-1 - experimental realization of at Datt, h-1 - max maximum specific growth rate, h-1 - maxc maximum attainable specific growth rate according to combined substrate/product inhibition model, h-1 - h0 specific growth rate at S0 according to Haldane kinetics, h-1 - maxc maximum attainable specific growth rate according to Haldane kinetics, h-1 - Yp yield inhibitory product, mol·mol-1 - Yx yield biomass, kg dry weight·kg-1 - bio biomass - EtOH ethanol - gluc glucose - HAc acetate - HBt butyrate - HCap caproate - HFo formate - HPr propionate - HVal valerate - prod produced - lact lactate |
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