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Membrane bioreactor

Industrial hazardous wastewater can be treated aerobically in suspended biomass stirred-tank bioreactors, plug-flow bioreactors, rotating-disc contactors, packed-bed fixed-biofilm reactors (or biofilters), fluidized bed reactors, diffused aeration tanks, airlift bioreactors, jet bioreactors, membrane bioreactors, and upflow bed reactors [28,30]. [Pg.153]

Novel Membrane Bioreactors Membrane Attached Biofilms. 1018... [Pg.1007]

NOVEL MEMBRANE BIOREACTORS MEMBRANE ATTACHED BIOFILMS... [Pg.1018]

EP = Product values - Costs of raw materials, bioreactors, membrane systems, utilities. [Pg.900]

Biomass Anaerobic I g I External submerged waste bioreactor membrane chamber... [Pg.349]

Long D. Nghiem (removal of trace contaminants by NF/RO membranes membrane fouling and autopsy studies non-potable and indirect potable water reuse membrane bioreactors membrane extraction membrane electrolysis). School of Civil Mining and Environmental Engineering, University of Wollongong (UOW), NSW... [Pg.14]

Livingston, A.G., Brookes, P.R., Biological Detoxification of a 3-chloronitrobenzene Manufacture Wastewater in an Extractive Membrane Bioreactor, Water Research, v.28, pp.1347-1354, 1994. [Pg.368]

Livingston, A.G., Extractive Membrane Bioreactors A New Process Technology for Detoxifying Industrial Waste waters, J. Chem. Tech. Biotech., v.60, pp. 117-124, 1994. [Pg.368]

Livingston, A.G., Freitas dos Santos, L.M., Extraction and Biodegradation of a Toxic Volatile Organic Compound (1,2 dichloroethane) from Wastewater in a Membrane Bioreactor, Applied Microbiology and Biotechnology, v.42, pp.421-431, 1994. [Pg.368]

Intensive technologies are derived from the processes used for the treatment of potable water. Chemical methods include chlorination, peracetic acid, ozonation. Ultra-violet irradiation is becoming a popular photo-biochemical process. Membrane filtration processes, particularly the combination microfiltration/ultrafiltra-tion are rapidly developing (Fig. 3). Membrane bioreactors, a relatively new technology, look very promising as they combine the oxidation of the organic matter with microbial decontamination. Each intensive technique is used alone or in combination with another intensive technique or an extensive one. Extensive... [Pg.100]

Radjenovic J, Petrovic M, Barcelo D (2007) Analysis of pharmaceuticals in wastewater and removal using a membrane bioreactor. Anal Bioanal Chem 387 1365-1377... [Pg.223]

Clara M, Strenn B, Cans O, Martinez E, Kreuzinger N, Kroiss H (2005) Removal of selected pharmaceuticals, fragrances and endocrine disrupting compounds in a membrane bioreactor and conventional wastewater treatment plants. Water Res 39 4797 807... [Pg.224]

Clara M, Strenn B, Ausserleitner M, Kreuzinger N (2004) Comparison of the behaviour of selected micropollutants in a membrane bioreactor and a conventional wastewater treatment plant. Water Sci Technol 50 29-36... [Pg.224]

Quintana JB, Weiss S, Reemtsma T (2005) Pathways and metabolites of microbial degradation of selected acidic pharmaceutical and their occurrence in municipal wastewater treated by a membrane bioreactor. Water Res 39 2654-2664... [Pg.226]

As is the case with pure bubble columns and gas-operated loop reactors, most bioreactors in technical use are aerated with oxygen or air. Reactors with pure surface aeration, such as roller bottles, shake flasks and small stirred reactors or special reactors with membrane aeration, are exceptions. The latter are used for the cultivation of cells and organisms which are particularly sensitive to shearing (see e. g. [28 - 29]). The influence of gas bubbles in increasing stress has been described in many publications (see e.g. [4, 27, 29, 30]). In principle it can be caused by the following processes ... [Pg.45]

Wang, L.K., and Menon, R., Membrane bioreactors, in Advanced Biological Treatment Processes, Wang, L.K., Shammas, N.K., and Hung, Y.T., Eds, Humana Press, Totowa, NJ, 2009. [Pg.1054]

Wang, Y., Huang, X., and Yuan, Q., Nitrogen and carbon removals from food processing wastewater by an anoxic/aerobic membrane bioreactor, Process Biochemistry, 40, 1733-1739, 2005. [Pg.1251]

Sridang, P.C., Pottier, A., Wisniewski, C., and Grasmick, A., Performance and microbial surveying in submerged membrane bioreactor for seafood processing wastewater treatment, Journal of Membrane Science, 317,43-49, 2008. [Pg.1251]


See other pages where Membrane bioreactor is mentioned: [Pg.153]    [Pg.225]    [Pg.394]    [Pg.213]    [Pg.165]    [Pg.4]    [Pg.1357]    [Pg.120]    [Pg.153]    [Pg.225]    [Pg.394]    [Pg.213]    [Pg.165]    [Pg.4]    [Pg.1357]    [Pg.120]    [Pg.154]    [Pg.2141]    [Pg.2143]    [Pg.2144]    [Pg.330]    [Pg.369]    [Pg.369]    [Pg.74]    [Pg.293]    [Pg.111]    [Pg.179]    [Pg.181]    [Pg.168]    [Pg.581]    [Pg.582]    [Pg.525]    [Pg.1039]    [Pg.1043]    [Pg.1246]    [Pg.1248]    [Pg.1251]   
See also in sourсe #XX -- [ Pg.336 ]

See also in sourсe #XX -- [ Pg.8 , Pg.113 , Pg.125 , Pg.127 , Pg.128 , Pg.139 , Pg.153 , Pg.155 , Pg.163 , Pg.172 , Pg.213 , Pg.214 , Pg.216 , Pg.218 , Pg.231 , Pg.237 ]

See also in sourсe #XX -- [ Pg.227 ]




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