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Methanosarcina as the dominant aceticlastic methanogens during mesophilic anaerobic digestion of putrescible waste
Authors:Vasily A. Vavilin  Xian Qu  Laurent Mazéas  Melanie Lemunier  Christian Duquennoi  Pinjing He  Theodore Bouchez
Affiliation:(1) Cemagref, UR-HBAN, Parc de Tourvoie, 92163 Antony Cedex, France;(2) Water Problems Institute, Russian Academy of Sciences, 3 Gubkina Str., 119333 Moscow, Russian Federation;(3) College of Environmental Science and Engineering, Tongji-University, Siping Road, 200092 Shanghai, China;(4) Suez-Env, CIRADE, 38 Avenue Jean Jaures, 78440 Gargenville, France
Abstract:Taking into account isotope 13C value a mathematical model was developed to describe the dynamics of methanogenic population during mesophilic anaerobic digestion of putrescible solid waste and waste imitating Chinese municipal solid waste. Three groups of methanogens were considered in the model including unified hydrogenotrophic methanogens and two aceticlastic methanogens Methanosaeta sp. and Methanosarcina sp. It was assumed that Methanosaeta sp. and Methanosarcina sp. are inhibited by high volatile fatty acids concentration. The total organic and inorganic carbon concentrations, methane production, methane and carbon dioxide partial pressures as well as the isotope 13C incorporation in PSW and CMSW were used for the model calibration and validation. The model showed that in spite of the high initial biomass concentration of Methanosaeta sp. Methanosarcina sp. became the dominant aceticlastic methanogens in the system. This prediction was confirmed by FISH. It is concluded that Methanosarcina sp. forming multicellular aggregates may resist to inhibition by volatile fatty acids (VFAs) because a slow diffusion rate of the acids limits the VFA concentrations inside the Methanosarcina sp. aggregates.
Keywords:Anaerobic digestion  FISH  Isotope 13C  Mathematical model   Methanosarcina sp.  Multicellular aggregate
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