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Combining submerged membrane technology with anaerobic and ...

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IntroductionMtinch, E.V., Ban, K., Watts, S., Keller, J. 2000. Suspended carrier <strong>technology</strong> allows upgradinghigh rate activated sludge plants for nitrogen removal via process intensification. WaterScience <strong>and</strong> Technology 41(4–5), 5–12.Nagaoka, H., Ueda, S., Miya, A., 1996. Influence of bacterial extracellular polymers on the<strong>membrane</strong> separation activated sludge process. Water Science <strong>and</strong> Technology 34(9), 165–172.Nagaoka, H., Yamanishi, S., Miya, A. 1998. Modeling of biofouling by extracellular polymers in a<strong>membrane</strong> separation activated sludge system. Water Science <strong>and</strong> Technology 38(4–5), 497–504.Oyanedel, V., Garrido, J.M., Lema, J.M., Méndez R. 2003. A <strong>membrane</strong> assisted hybrid bioreactorfor the post treatment of an <strong>anaerobic</strong> effluent from a fish canning factory. Water Science <strong>and</strong>Technology 48, 301-309.Passow, U. 2002. Transparent exopolymer particles (TEP) in aquatic environments. Progress inoceanography 55, 287-333.Pearce, G. 2010. Membrane system design, in: M. Wilf, The Guidebook to Membrane Technologyfor Wastewater Reclamation, Desalination Publications, Hopkinton (MA), USA, 187-245.Phattaranawik, J., Leiknes, T. 2010. Study of Hybrid Vertical Anaerobic Sludge-Aerobic BiofilmMembrane Bioreactor for Wastewater Treatment. Water Environment Research 82(3), 273-280.Remy, M., Potier, V., Temmink, H., Rulkems, W. 2009. Why low powdered activated carbonaddition reduces <strong>membrane</strong> fouling in MBRs. Water Research 44, 861-867.Robles, A., Ruano, M.V., Ribes, J., Ferrer, J. 2013. Factors that affect the permeability of comercialhollow-fibre <strong>membrane</strong>s in a <strong>submerged</strong> <strong>anaerobic</strong> MBR (HF-SAnMBR) system. WaterResearch 47, 1277-1288.Rosenberger, S., Kraume, M. 2002. Filterability of activated sludge in <strong>membrane</strong> bioreactors.Desalination 146(1-3), 373-379.Rosenberger, S., Evenblij, H., te Poele, S., Wintgens, T., Laabs, C. 2005. The importance of liquidphase analyses to underst<strong>and</strong> fouling in <strong>membrane</strong> assisted activated sludge processes -sixcase studies of different European research groups. Journal of Membrane Science 263, 113–126.Rosenberger, S., Laabs, C., Lesjean, B., Gnirss, R., Amy, G., Jekel, M., Schrotter, J.-C. 2006.Impact of colloidal <strong>and</strong> soluble organic material on <strong>membrane</strong> performance in <strong>membrane</strong>bioreactors for municipal wastewater treatment. Water Research 40, 710 – 720.Rushton, A., Ward, A.S., Holdich, R.G. 1996. Solid-Liquid filtration <strong>and</strong> separation <strong>technology</strong>. 1 sted., VCH, Weinheim, Gemany.Sánchez, A., Garrido, J.M., Méndez, R. 2011. Tertiary <strong>membrane</strong> filtration of an industrialwastewater using granular or flocculent biomass sequencing batch reactors. Journal ofMembrane Science 382, 316-322.Santos, A., Ma, W., Judd, S.J. 2011. Membrane bioreactors: Two decades of research <strong>and</strong>implementation. Desalination 273(1), 148-154.57

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