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Selected Papers from EuroDrying 2013

Modeling of Sewage Sludge Flow in a Continuous Paddle Dryer

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REFERENCES

  • Werther, J.; Ogada, T. Sewage sludge combustion. Progress in Energy 1999, 25(1), 55–116.
  • Manara, P.; Zabaniotou, A. Towards sewage sludge based biofuels via thermochemical conversion: A review. Renewable and Sustainable Energy Reviews 2012, 16(5), 2566–2582.
  • Fonts, I.; Gea, G.; Azuara, M.; Ãbrego, J.; Arauzo, J. Sewage sludge pyrolysis for liquid production: A review. Renewable and Sustainable Energy Reviews 2012, 16(5), 2781–2805.
  • Arlabosse, P.; Ferrasse, J.-H.; Lecomte, D.; Crine, M.; Dumont, Y.; Léonard, A. Efficient sludge thermal processing: From drying to thermal valorization. Modern Drying Technology; Wiley-VCH Verlag GmbH & Co. KGaA: Weinheim, Germany, 2012; 295–329.
  • Chen, G.H.; Yue, P.L.; Mujumdar, A.S. Sludge dewatering and drying. Drying Technology 2002, 20(4–5), 883–916.
  • Tuncal, T.; Jangam, S.V.; Gunes, E. Abatement of organic pollutant concentrations in residual treatment sludges: A review of selected treatment technologies including drying. Drying Technology 2011, 29(14), 1601–1610.
  • Bennamoun, L.; Arlabosse, P.; Leonard, A. Review on fundamental aspect of application of drying process to wastewater sludge. Renewable & Sustainable Energy Reviews 2013, 28, 29–43.
  • Chabrier, J.-P. Le séchage thermique des boues: Le développement, ses avantages et ses inconvénients. Journée Technique du SIAAP 2007 (in French). Personal communication.
  • European Committee for Standardization. Characterization of Sludges: Good Practice for Sludges Drying, PD CEN/TR 15473, 2007.
  • Arlabosse, P.; Chitu, T. Identification of the limiting mechanism in contact drying of agitated sewage sludge. Drying Technology 2007, 25(4), 557–567.
  • Yan, J.-H.; Deng, W.-Y.; Li, X.-D.; Wang, F.; Chi, Y.; Lu, S.-Y.; Cen, K.-F. Experimental and theoretical study of agitated contact drying of sewage sludge under partial vacuum conditions. Drying Technology 2009, 27(6), 787–796.
  • Deng, W.-Y.; Yan, J.-H.; Li, X.-D.; Wang, F.; Lu, S.-Y.; Chi, Y.; Cen, K.-F. Measurement and simulation of the contact drying of sewage sludge in a Nara-type paddle dryer. Chemical Engineering Science 2009, 64(24), 5117–5124.
  • Tazaki, M.; Tsuno, H.; Takaoka, M.; Shimizu, K. Modeling of sludge behavior in a steam dryer. Drying Technology 2011, 29(14), 1748–1757.
  • Charlou, C.; Sauceau, M.; Arlabosse, P. Characterisation of residence time distribution in a continuous paddle dryer. Journal of Residuals Science & Technology 2013, 10(3), 117–125.
  • Seyssiecq, I.; Ferrasse, J.-H.; Roche, N. State-of-the-art: Rheological characterisation of wastewater treatment sludge. Biochemical Engineering Journal 2003, 16(1), 41–56.
  • Ratkovich, N.; Horn, W.; Helmus, F.P.; Rosenberger, S.; Naessens, W.; Nopens, I.; Bentzen, T.R. Activated sludge rheology: A critical review on data collection and modelling. Water Research 2013, 47(2), 463–482.
  • Eshtiaghi, N.; Markis, F.; Yap, S.D.; Baudez, J.-C.; Slatter, P. Rheological characterisation of municipal sludge: A review. Water Research 2013, 47(15), 5493–5510.
  • Danckwerts, P.V. Continuous flow systems: Distribution of residence times. Chemical Engineering Science 1953, 2(1), 1–13.
  • Levenspiel, O. Chemical Reaction Engineering; John Wiley and Sons: New York, 1999.
  • Gao, Y.; Muzzio, F.J.; Lerapetritou, M.G. A review of the residence time distribution (RTD) applications in solid unit operations. Powder Technology 2012, 228(0), 416–423.
  • Berthiaux, H.; Mizonov, V. Applications of Markov chains in particulate process engineering: A review. Canadian Journal of Chemical Engineering 2004, 82(6), 1143–1168.
  • Harris, A.T.; Thorpe, R.B.; Davidson, J.F. Stochastic modelling of the particle residence time distribution in circulating fluidised bed risers. Chemical Engineering Science 2002, 57(22–23), 4779–4796.
  • Berthiaux, H.; Mizonov, V.; Zhukov, V. Application of the theory of Markov chains to model different processes in particle technology. Powder Technology 2005, 157(1–3), 128–137.
  • Marikh, K.; Berthiaux, H.; Mizonov, V.; Barantseva, E.; Ponomarev, D. Flow analysis and Markov chain modelling to quantify the agitation effect in a continuous powder mixer. Chemical Engineering Research and Design 2006, 84(11), 1059–1074.
  • Ponomarev, D.; Rodier, E.; Sauceau, M.; Nikitine, C.M.; Mizonov, V.; Fages, J. Modelling non-homogeneous flow and residence time distribution in a single-screw extruder by means of Markov chains. Journal of Mathematical Chemistry 2012, 50(8), 2141–2154.
  • Mizonov, V.; Berthiaux, H.; Arlabosse, P.; Djerroud, D. Application of the theory of Markov chains to model heat and mass transfer between stochastically moving particulate and gas flows. Granular Matter 2008, 10(4), 335–340.
  • Mizonov, V.; Zaitsev, V.; Volynskii, V.; Leznov, V. Modeling the moisture content distribution over a rotating porous cylinder using Markov chains. Chemical Engineering & Technology 2008, 34(7), 1185–1190.
  • Tamir, A. Chapter 2: Fundamentals of Markov chains. Applications of Markov Chains in Chemical Engineering; Elsevier Science B.V: Amsterdam, 1998; 11–185.
  • Charlou, C.; Milhe, M.; Sauceau, M., Arlabosse, P. A new methodology for measurement of sludge residence time distribution in a paddle dryer using X-ray fluorescence analysis. Water Reseach ( under review).

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