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         Amatayakul, T., Zisu, B., Sherkat, F., Shah, N.P., 2005. Physical characteristics of set
             yogurts as affected by co-culturing with non-EPS and EPS starter cultures and supple-
             mentation with WPC. Aust. J. Dairy Technol. 60 (3), 238.
         Anderson, A.J., Dawes, E.A., 1990. Occurrence, metabolism, metabolic role, and industrial
             uses of bacterial polyhydroxyalkanoates. Microbiol. Rev. 54 (4), 450 472.
         Ates, O., 2015. Systems biology of microbial exopolysaccharides production. Front. Bioeng.
             Biotechnol. 3, 200.
         Azuma, Y., Yoshie, N., Sakurai, M., Inoue, Y., Chˆ ujˆ o, R., 1992. Thermal behaviour and mis-
             cibility of poly (3-hydroxybutyrate)/poly (vinyl alcohol) blends. Polymer 33 (22),
             4763 4767.
         Banik, R.M., Santhiagu, A., Upadhyay, S.N., 2007. Optimization of nutrients for gellan gum
             production by Sphingomonas paucimobilis ATCC-31461 in molasses based medium
             using response surface methodology. Bioresour. Technol. 98 (4), 792 797.
         Bezawada, J., Hoang, N.V., More, T.T., Yan, S., Tyagi, N., Tyagi, R.D., et al., 2013.
             Production of extracellular polymeric substances (EPS) by Serratia sp. 1 using wastewa-
             ter sludge as raw material and flocculation activity of the EPS produced. J. Environ.
             Manage. 128, 83 91.
         Burdon, K.L., 1946. Fatty material in bacteria and fungi revealed by staining dried, fixed
             slide preparations. J. Bacteriol. 52 (6), 665.
         Buthelezi, S.P., Olaniran, A.O., Pillay, B., 2010. Production and characterization of biofloc-
             culants from bacteria isolated from wastewater treatment plant in South Africa.
             Biotechnol. Bioprocess Eng. 15 (5), 874 881.
         Cavalheiro, J.M., de Almeida, M.C.M., Grandfils, C., Da Fonseca, M.M.R., 2009. Poly(3-
             hydroxybutyrate) production by Cupriavidus necator using waste glycerol. Process
             Biochem. 44 (5), 509 515.
         Chee, J.Y., Yoga, S.S., Lau, N.S., Ling, S.C., Abed, R.M., Sudesh, K., 2010. Bacterially pro-
             duced polyhydroxyalkanoate (PHA): converting renewable resources into bioplastics,
             Current Research. In: Me ´ndez-Vilas, A. (Ed.), Technology and Education Topics in
             Applied  Microbiology and Microbial  Biotechnology,  vol. 2.  ©FORMATEX,
             pp. 1395 1404.
         Comte, S., Guibaud, G., Baudu, M., 2006. Biosorption properties of extracellularpolymeric
             substances (EPS) resulting from activated sludge according to their type: soluble or
             bound. Process Biochem. 41, 815e823.
         Czaczyk, K., Myszka, K., 2007. Biosynthesis of extracellular polymeric substances (EPS)
             and its role in microbial biofilm formation. Pol. J. Environ. Stud. 16 (6), 799 806.
         Da Silva, G.P., Mack, M., Contiero, J., 2009. Glycerol: a promising and abundant carbon
             source for industrial microbiology. Biotechnol. Adv. 27 (1), 30 39.
         Dawes, E.A., Senior, P.J., 1973. The role and regulation of energy reserve polymers in micro-
             organisms. Adv. Microb. Physiol 10, 135 266.
         De Beer, D., O’Flaharty, V., Thaveesri, J., Lens, P., Verstraete, W., 1996. Distribution of
             extracellular polysaccharides and flotation of anaerobic sludge. Appl. Microbiol.
             Biotechnol. 46 (2), 197 201.
         Dignac, M.F., Urbain, V., Rybacki, D., Bruchet, A., Snidaro, D., Scribe, P., 1998. Chemical
             description of extracellular polymers: implication on activated sludge floc structure.
             Water Sci. Tech 38 (8-9), 45 53.
         Domb, A., Amselem, S., Langer, R., Manair, M., 1994. Chapter 3: Polyanhydrides as carriers
             of drugs. In: Shalaby, S. (Ed.), Designed to Degrade Biomedical Polymers Hanser,
             Munich, 69 96.
         Ecoinvent, 2010. The Ecoinvent centre. ,www.ecoinvent.org/database. (accessed 09.05.10.).
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