Rheology of sludge from double phase anaerobic digestion of organic fraction of municipal solid waste

Author:

Battistoni P.1,Pavan P.2,Mata-Alvarez J.3,Prisciandaro M.4,Cecchi F.5

Affiliation:

1. Institute of Hydraulics, Engineering Faculty, University of Ancona, Via Brecce Bianche 60131 Ancona, Italy (E-mail : idrotre@popcsi.unian.it)

2. University of Venice, Dept. Of Environmental Sciences, Dorsoduro 2137 Venice, Italy (E-mail: pavan@unive.it)

3. University of Verona, Dept. Scientific and Technologic, Strada Le Grazie, Verona, Italy (E-mail: jmata@medicina.ub.es)

4. University of Barcelona, Department of Chemical Engineering, P.ta Martì i Franquez, Barcelona , Spain (E-mail: maripri@ing.univaq.it)

5. University of L'aquila, Dept. Of Chemistry, Chemical Engineering and Materials, Monteluco di Rojo, L'Aquila, Italy (E-mail: cecchi@sci.univr.it)

Abstract

In this paper experimental results on the anaerobic digestion of sewage sludge and organic fraction of municipal solid waste (OFMSW) by using a double phase process are reported. The long-term experiment has been carried out on a pilot scale plant, performed in different sets of operative conditions, during which granulometric distributions of particles in sludges and rheological properties of sludges were monitored. A significant fluidification of sludge was evidenced in the meso-thermo process, especially taking into account the variation in sludge behaviour from the first to the second phase. In the thermo-thermo process a fluidification higher than that shown in meso-thermo conditions is not observed, this suggesting that better results in terms of sludge conditioning can be obtained in a long time spent in thermophilic anaerobic digestion. Total volatile solids (TVS) and total fixed solids (TFS) become the most important parameters when mathematical modelling is applied to these processes.In the acidogenic phase, hydraulic retention time (HRT) and temperature are used to determine rigidity coefficient (RC), while only temperature is needed for yield stress (YC). Organic loading rate (OLR) and specific gas production (SGP) exert an important role in methanogenic phase description.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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