Publication:
Toxic compounds biodegradation and toxicity of high strength wastewater treated under elevated nitrogen concentration in the activated sludge and membrane bioreactor systems

dc.contributor.authorBoonnorat J.
dc.contributor.authorBoonapatcharoen N.
dc.contributor.authorPrachanurak P.
dc.contributor.authorHonda R.
dc.contributor.authorPhanwilai S.
dc.date.accessioned2021-04-05T03:22:06Z
dc.date.available2021-04-05T03:22:06Z
dc.date.issued2017
dc.date.issuedBE2560
dc.description.abstractThis research has assessed the removal efficiencies of toxic compounds in the high strength wastewater (the leachate and agriculture wastewater mixture) using the activated sludge (AS) and membrane bioreactor (MBR) technologies under two carbon to nitrogen (C/N) ratios (C/N 14 and 6) and two toxic compounds concentrations (8–396 μg/L and 1000 μg/L). In addition, the toxicity evaluations of the AS and MBR effluents to the aquatic environment were undertaken at five effluent dilution ratios (10, 20, 30, 50 and 70% v/v). The findings indicate that the AS treatment performance could be enhanced by the elevation of the nitrogen concentration. Specifically, the C/N 6 environment helps promote the bacterial growth, particularly heterotrophic nitrifying bacteria (HNB) and nitrifying bacteria (NB), which produce the enzymes crucial to the toxic compounds degradation. The improved biodegradation makes the effluents less toxic to the aquatic environment, as evidenced by the lower mortality rates of both experimental fish species raised in the nitrogen-elevated diluted AS effluents. On the other hand, the elevated nitrogen concentration minimally enhances the MBR treatment performance, given the fact that the MBR technology is in itself a biological treatment scheme with very high compounds removal capability. Despite its lower toxic compounds removal efficiency, the AS technology is simple, inexpensive and operationally-friendly, rendering the system more applicable to the treatment operation constrained by the financial, manpower and technological considerations. © 2017 Elsevier B.V.
dc.format.mimetypeapplication/pdf
dc.identifier.citationScience of the Total Environment. Vol 592, (2017), p.252-261
dc.identifier.doi10.1016/j.scitotenv.2017.03.078
dc.identifier.issn489697
dc.identifier.other2-s2.0-85015699429
dc.identifier.urihttps://hdl.handle.net/20.500.14740/4098
dc.rights.holderมหาวิทยาลัยศรีนครินทรวิโรฒ
dc.subject.otherActivated sludge process
dc.subject.otherBacteria
dc.subject.otherBiodegradation
dc.subject.otherBioreactors
dc.subject.otherEfficiency
dc.subject.otherEffluents
dc.subject.otherNitrification
dc.subject.otherNitrogen
dc.subject.otherNitrogen removal
dc.subject.otherToxicity
dc.subject.otherActivated sludge
dc.subject.otherC/N ratio
dc.subject.otherHigh strength wastewater
dc.subject.otherMembrane bio reactor (MBR)
dc.subject.otherMembrane bioreactor system
dc.subject.otherMembrane bioreactor technology
dc.subject.otherNitrogen concentrations
dc.subject.otherToxic compounds
dc.subject.otherWastewater treatment
dc.subject.other4,4' isopropylidenediphenol
dc.subject.otherCarbamazepine
dc.subject.otherCarbon
dc.subject.otherDi (ethylhexyl) phthalate
dc.subject.otherDiclofenac
dc.subject.otherDiethyltoluamide
dc.subject.otherNitrogen
dc.subject.otherPhthalic acid
dc.subject.otherPhthalic acid dibutyl ester
dc.subject.otherUnclassified drug
dc.subject.otherNitrogen
dc.subject.otherActivated sludge
dc.subject.otherBiodegradation
dc.subject.otherBioreactor
dc.subject.otherConcentration (composition)
dc.subject.otherMembrane
dc.subject.otherNitrogen
dc.subject.otherToxic material
dc.subject.otherToxicity
dc.subject.otherWastewater treatment
dc.subject.otherActivated sludge
dc.subject.otherAdsorption
dc.subject.otherAgrobacterium
dc.subject.otherAquatic environment
dc.subject.otherArticle
dc.subject.otherBacillus
dc.subject.otherBacterial growth
dc.subject.otherBiodegradation
dc.subject.otherBurkholderia
dc.subject.otherEnvironmental impact assessment
dc.subject.otherFish
dc.subject.otherHydrophilicity
dc.subject.otherHydrophobicity
dc.subject.otherMembrane reactor
dc.subject.otherMicrobial community
dc.subject.otherNitrifying bacterium
dc.subject.otherNonhuman
dc.subject.otherOreochromis niloticus
dc.subject.otherPopulation abundance
dc.subject.otherPseudomonas
dc.subject.otherRhodopseudomonas
dc.subject.otherSpecies diversity
dc.subject.otherSphingomonas
dc.subject.otherToxicity testing
dc.subject.otherWaste component removal
dc.subject.otherWaste water management
dc.subject.otherWater pollution
dc.subject.otherAnimal
dc.subject.otherArtificial membrane
dc.subject.otherBioreactor
dc.subject.otherChemistry
dc.subject.otherMicrobiology
dc.subject.otherSewage
dc.subject.otherToxicity
dc.subject.otherWaste water
dc.subject.otherBacteria (microorganisms)
dc.subject.otherAnimals
dc.subject.otherBioreactors
dc.subject.otherCarbon
dc.subject.otherFishes
dc.subject.otherMembranes, Artificial
dc.subject.otherNitrogen
dc.subject.otherSewage
dc.subject.otherToxicity Tests
dc.subject.otherWaste Disposal, Fluid
dc.subject.otherWaste Water
dc.titleToxic compounds biodegradation and toxicity of high strength wastewater treated under elevated nitrogen concentration in the activated sludge and membrane bioreactor systems
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85015699429&doi=10.1016%2fj.scitotenv.2017.03.078&partnerID=40&md5=ba289363ebf03f53fda43c3944a2ff4e

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