Treatment of an actual slaughterhouse wastewater by integration of biological and advanced oxidation processes: Modeling, optimization, and cost-effectiveness analysis.

Biological and advanced oxidation processes are combined to treat an actual slaughterhouse wastewater (SWW) by a sequence of an anaerobic baffled reactor, an aerobic activated sludge reactor, and a UV/H 2 O 2 photoreactor with recycle in continuous mode at laboratory scale. In the first part of this...

Descripción completa

Detalles Bibliográficos
Publicado en:Journal of Environmental Management Vol. 182; pp. 651 - 667
Autores principales: Bustillo-Lecompte, Ciro Fernando, Mehrvar, Mehrab
Formato: Artículo
Publicado: Academic Press Inc. Nov2016
Materias:
Acceso en línea:Ver este registro en EBSCOhost
fields @attributes:
  recordID: 1
pdfLink:
plink: https://search.ebscohost.com/login.aspx?direct=true&db=ssf&AN=117799271&site=ehost-live
header:
  @attributes:
    shortDbName: ssf
    uiTerm: 117799271
    longDbName: Social Sciences Full Text (H.W. Wilson)
    uiTag: AN
  controlInfo:
    bkinfo:
    jinfo:
      jid:
        03014797
        EMJ
      jtl: Journal of Environmental Management
      issn: 03014797
      maglogo: N
    pubinfo:
      dt: Nov2016
      vid: 182
      pid: 735
      pub: Academic Press Inc.
    artinfo:
      ui:
        117799271
        10.1016/j.jenvman.2016.07.044
      ppf: 651
      ppct: 16
      formats:
      tig:
        atl: Treatment of an actual slaughterhouse wastewater by integration of biological and advanced oxidation processes: Modeling, optimization, and cost-effectiveness analysis.
      aug:
        au:
          Bustillo-Lecompte, Ciro Fernando
          Mehrvar, Mehrab
        affil:
          Graduate Programs in Environmental Applied Science and Management, Ryerson University, 350 Victoria Street, Toronto, ON M5B 2K3, Canada
          Department of Chemical Engineering, Ryerson University, 350 Victoria Street, Toronto, ON M5B 2K3, Canada
      su:
        Cost effectiveness
        Energy consumption
        Slaughtering
        Wastewater treatment
        Oxidation
        Response surfaces (Statistics)
      sug:
        subj:
          Cost effectiveness
          Energy consumption
          Animal (except Poultry) Slaughtering
          Sewage Treatment Facilities
          Slaughtering
          Wastewater treatment
          Oxidation
          Response surfaces (Statistics)
      keyword:
        Activated sludge
        Advanced oxidation processes
        Anaerobic digestion
        Combined processes
        Process optimization
        Slaughterhouse wastewater
        Activated sludge
        Advanced oxidation processes
        Anaerobic digestion
        Combined processes
        Process optimization
        Slaughterhouse wastewater
      ab: Biological and advanced oxidation processes are combined to treat an actual slaughterhouse wastewater (SWW) by a sequence of an anaerobic baffled reactor, an aerobic activated sludge reactor, and a UV/H 2 O 2 photoreactor with recycle in continuous mode at laboratory scale. In the first part of this study, quadratic modeling along with response surface methodology are used for the statistical analysis and optimization of the combined process. The effects of the influent total organic carbon (TOC) concentration, the flow rate, the pH, the inlet H 2 O 2 concentration, and their interaction on the overall treatment efficiency, CH 4 yield, and H 2 O 2 residual in the effluent of the photoreactor are investigated. The models are validated at different operating conditions using experimental data. Maximum TOC and total nitrogen (TN) removals of 91.29 and 86.05%, respectively, maximum CH 4 yield of 55.72%, and minimum H 2 O 2 residual of 1.45% in the photoreactor effluent were found at optimal operating conditions. In the second part of this study, continuous distribution kinetics is applied to establish a mathematical model for the degradation of SWW as a function of time. The agreement between model predictions and experimental values indicates that the proposed model could describe the performance of the combined anaerobic–aerobic–UV/H 2 O 2 processes for the treatment of SWW. In the final part of the study, the optimized combined anaerobic–aerobic–UV/H 2 O 2 processes with recycle were evaluated using a cost-effectiveness analysis to minimize the retention time, the electrical energy consumption, and the overall incurred treatment costs required for the efficient treatment of slaughterhouse wastewater effluents.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
    refInfo:
    copyright:
      @attributes:
        flag: N
    holdings:
      @attributes:
        islocal: N