Experiments and ANFIS modelling for the biodegradation of penicillin-G wastewater using anaerobic hybrid reactor

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dc.contributor.author Mullai, P
dc.contributor.author Arulselvi, S
dc.contributor.author Ngo, H-H
dc.contributor.author Sabarathinam, PL
dc.date.accessioned 2012-02-02T07:39:06Z
dc.date.issued 2011-05-01
dc.identifier.citation BIORESOURCE TECHNOLOGY, 2011, 102 (9), pp. 5492 - 5497 (6)
dc.identifier.issn 0960-8524
dc.identifier.other C1 en_US
dc.identifier.uri http://hdl.handle.net/10453/14904
dc.language English
dc.publisher ELSEVIER SCI LTD
dc.relation.isbasedon 10.1016/j.biortech.2011.01.085
dc.subject Science & Technology, Life Sciences & Biomedicine, Technology, Agricultural Engineering, Biotechnology & Applied Microbiology, Energy & Fuels, Agriculture, AGRICULTURAL ENGINEERING, BIOTECHNOLOGY & APPLIED MICROBIOLOGY, ENERGY & FUELS, Penicillin-G wastewater, Anaerobic hybrid reactor, ANFIS modelling, NEURAL-NETWORK, DIGESTION PROCESS, UASB, WASTEWATERS, PERFORMANCE, INHIBITION, EFFLUENT, SEWAGE, SYSTEM, Penicillin-G wastewater, Anaerobic hybrid reactor, ANFIS modelling, Water Purification, Bioreactors, Anaerobiosis, Biodegradation, Environmental, Computer Simulation, Waste Disposal, Fluid, Penicillin G, Biological Oxygen Demand Analysis, Fuzzy Logic, Models, Chemical, Time Factors, Anaerobiosis, Biodegradation, Environmental, Biological Oxygen Demand Analysis, Bioreactors, Computer Simulation, Fuzzy Logic, Models, Chemical, Penicillin G, Time Factors, Waste Disposal, Fluid, Water Purification, Neural-Network, Digestion Process, Uasb, Wastewaters, Performance, Inhibition, Effluent, Sewage, System, Biotechnology
dc.subject Science & Technology; Life Sciences & Biomedicine; Technology; Agricultural Engineering; Biotechnology & Applied Microbiology; Energy & Fuels; Agriculture; AGRICULTURAL ENGINEERING; BIOTECHNOLOGY & APPLIED MICROBIOLOGY; ENERGY & FUELS; Penicillin-G wastewater; Anaerobic hybrid reactor; ANFIS modelling; NEURAL-NETWORK; DIGESTION PROCESS; UASB; WASTEWATERS; PERFORMANCE; INHIBITION; EFFLUENT; SEWAGE; SYSTEM; Penicillin-G wastewater; Anaerobic hybrid reactor; ANFIS modelling; Water Purification; Bioreactors; Anaerobiosis; Biodegradation, Environmental; Computer Simulation; Waste Disposal, Fluid; Penicillin G; Biological Oxygen Demand Analysis; Fuzzy Logic; Models, Chemical; Time Factors; Anaerobiosis; Biodegradation, Environmental; Biological Oxygen Demand Analysis; Bioreactors; Computer Simulation; Fuzzy Logic; Models, Chemical; Penicillin G; Time Factors; Waste Disposal, Fluid; Water Purification; Neural-Network; Digestion Process; Uasb; Wastewaters; Performance; Inhibition; Effluent; Sewage; System; Biotechnology
dc.title Experiments and ANFIS modelling for the biodegradation of penicillin-G wastewater using anaerobic hybrid reactor
dc.type Journal Article
dc.description.version Published
dc.description.version Published
dc.parent BIORESOURCE TECHNOLOGY
dc.journal.volume 9
dc.journal.volume 102
dc.journal.number 9 en_US
dc.publocation Oxford en_US
dc.identifier.startpage 5492 en_US
dc.identifier.endpage 5497 en_US
dc.cauo.name FEIT.A/DIntED Technical en_US
dc.conference Verified OK en_US
dc.for 0904 Chemical Engineering
dc.personcode 0000069912 en_US
dc.personcode 0000069913 en_US
dc.personcode 890265 en_US
dc.personcode 0000069914 en_US
dc.percentage 100 en_US
dc.classification.name Chemical Engineering en_US
dc.classification.type FOR-08 en_US
dc.edition en_US
dc.custom en_US
dc.date.activity en_US
dc.location.activity WOS:000290009300035 en_US
dc.description.keywords Neural-Network; Digestion Process; Uasb; Wastewaters; Performance; Inhibition; Effluent; Sewage; System en_US
dc.description.keywords Science & Technology
dc.description.keywords Life Sciences & Biomedicine
dc.description.keywords Technology
dc.description.keywords Agricultural Engineering
dc.description.keywords Biotechnology & Applied Microbiology
dc.description.keywords Energy & Fuels
dc.description.keywords Agriculture
dc.description.keywords AGRICULTURAL ENGINEERING
dc.description.keywords BIOTECHNOLOGY & APPLIED MICROBIOLOGY
dc.description.keywords ENERGY & FUELS
dc.description.keywords Penicillin-G wastewater
dc.description.keywords Anaerobic hybrid reactor
dc.description.keywords ANFIS modelling
dc.description.keywords NEURAL-NETWORK
dc.description.keywords DIGESTION PROCESS
dc.description.keywords UASB
dc.description.keywords WASTEWATERS
dc.description.keywords PERFORMANCE
dc.description.keywords INHIBITION
dc.description.keywords EFFLUENT
dc.description.keywords SEWAGE
dc.description.keywords SYSTEM
dc.description.keywords Science & Technology
dc.description.keywords Life Sciences & Biomedicine
dc.description.keywords Technology
dc.description.keywords Agricultural Engineering
dc.description.keywords Biotechnology & Applied Microbiology
dc.description.keywords Energy & Fuels
dc.description.keywords Agriculture
dc.description.keywords AGRICULTURAL ENGINEERING
dc.description.keywords BIOTECHNOLOGY & APPLIED MICROBIOLOGY
dc.description.keywords ENERGY & FUELS
dc.description.keywords Penicillin-G wastewater
dc.description.keywords Anaerobic hybrid reactor
dc.description.keywords ANFIS modelling
dc.description.keywords NEURAL-NETWORK
dc.description.keywords DIGESTION PROCESS
dc.description.keywords UASB
dc.description.keywords WASTEWATERS
dc.description.keywords PERFORMANCE
dc.description.keywords INHIBITION
dc.description.keywords EFFLUENT
dc.description.keywords SEWAGE
dc.description.keywords SYSTEM
dc.staffid en_US
pubs.embargo.period Not known
pubs.organisational-group /University of Technology Sydney
pubs.organisational-group /University of Technology Sydney/Faculty of Engineering and Information Technology
pubs.organisational-group /University of Technology Sydney/Faculty of Engineering and Information Technology/School of Civil and Environmental Engineering
pubs.organisational-group /University of Technology Sydney/Strength - Technology in Wastewater Treatment


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