Title of article :
Kinetic modelling of the anaerobic digestion of wastewater derived from the pressing of orange rind produced in orange juice manufacturing
Author/Authors :
Borja، R. نويسنده , , Siles، J.A نويسنده , , Martin، M.A. نويسنده , , Chica، A. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی 1 سال 2008
Abstract :
A simplified kinetic model for studying the anaerobic digestion of wastewater derived from the pressing of orange rind as a result of orange juice
production was proposed on the basis of the experimental results obtained. The process was conducted in a laboratory-scale completely stirred tank
reactor operating in batch mode at mesophilic temperature (35 ◦C), with COD loads in the range of 2–5 g COD. The following simplified threestep
reaction scheme was proposed: (1) hydrolysis and conversion of complex organic compounds into intermediate products of lower molecular
weight; (2) conversion of these intermediates to volatile fatty acids (VFA); and (3) methanization of the VFA by methanogenic microorganisms. A
mathematical model based on four segregated differential equations was formulated assuming that a fraction of this substrate is non-biodegradable
and the above-mentioned steps follow first-order kinetics. It was found that the kinetic constants corresponding to these three stages (K0, K1 and
K2) decreased markedly with the load added to the reactor, showing the occurrence of an inhibition process. In addition, it was observed that
the methanogenic step was the slowest in the overall anaerobic process. Finally, the model was validated by comparing the theoretical curves
obtained with the corresponding experimental data of organic matter, VFA and methane. The deviations obtained (less than 20%) in most cases
demonstrated the suitability of the mathematical model proposed and suggested that the parameters obtained represent and predict the activity of
the microorganisms involved in the anaerobic digestion process of this wastewater.
Keywords :
Batch reactor , Wastewater from pressing of orange rind , Anaerobic digestion , Kinetic modelling , Mesophilic temperature
Journal title :
Chemical Engineering Journal
Journal title :
Chemical Engineering Journal