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Mechanistic modeling of peracetic acid wastewater disinfection using computational fluid dynamics: Integrating solids settling with microbial inactivation kinetics.
Elhalwagy, Mahmoud; Biabani, Roya; Bertanza, Giorgio; Wisdom, Blair; Goldman-Torres, Joshua; McQuarrie, Jim; Straatman, Anthony; Santoro, Domenico.
Afiliação
  • Elhalwagy M; Department of Mechanical & Materials Engineering, Western University, London, Ontario N6A 5B9, Canada; Department of Mechanical Power Engineering, Cairo University, Giza 12613, Egypt; US Peroxide Technologies, 1375 Peachtree St. NE, Suite 300 N., Atlanta, GA, USA.
  • Biabani R; Department of Civil, Environmental, Architectural Engineering and Mathematics (DICATAM), Brescia University, via Branze, 43, 25123 Brescia, Italy.
  • Bertanza G; Department of Civil, Environmental, Architectural Engineering and Mathematics (DICATAM), Brescia University, via Branze, 43, 25123 Brescia, Italy.
  • Wisdom B; Metro Wastewater Reclamation District of Denver, 6450 York St, Denver, CO, USA.
  • Goldman-Torres J; Metro Wastewater Reclamation District of Denver, 6450 York St, Denver, CO, USA.
  • McQuarrie J; Tetra Tech, 1560 Broadway, Suite 1400, Denver, CO, USA.
  • Straatman A; Department of Mechanical & Materials Engineering, Western University, London, Ontario N6A 5B9, Canada.
  • Santoro D; US Peroxide Technologies, 1375 Peachtree St. NE, Suite 300 N., Atlanta, GA, USA. Electronic address: dsantor@uwo.ca.
Water Res ; 201: 117355, 2021 Aug 01.
Article em En | MEDLINE | ID: mdl-34256318
ABSTRACT
While the impact of suspended solids on chemical disinfection kinetics has been widely recognized, a detailed modeling framework for assessing their contribution on disinfection efficiency in municipal contact tanks is yet unavailable. In this paper, we conducted experimental and modeling studies to mechanistically describe the interplay between suspended solids (not removed by gravity settling in secondary clarifiers) and disinfection performance of an emerging disinfectant, peracetic acid, operated in a municipal contact tank. Specifically, we developed an integrated computational fluid dynamics (CFD) model to simultaneously predict the fate and transport of suspended solids, Escherichia coli and peracetic acid in a hypothetical reactor using an exposure-based (i.e., CT-based) inactivation rate expression. The integrated CFD model, calibrated against laboratory data, was used to gain insights on the vertical distribution and local PAA decay effect associated with solids settling and their impact on disinfectant decay and microbial inactivation. Results indicated that (a) solids settling in contact tanks is a significant phenomenon that cannot be neglected, which can substantially impact disinfection efficiency under low flow conditions; (b) vertical solids distribution and stratification in contact tanks can strongly affect Escherichia coli inactivation by peracetic acid, as highlighted by the CFD modeling studies; (c) Escherichia coli settling is experimentally measurable, and strongly correlated with solids settling. These phenomena can be successfully integrated into a CFD model to obtain a comprehensive description of the PAA disinfection process in presence of changes in secondary effluent quality and flow, a situation typically encountered in municipal contact tanks operated in full scale wastewater treatment plants.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Contexto em Saúde: 2_ODS3 Problema de saúde: 2_quimicos_contaminacion Assunto principal: Purificação da Água / Desinfetantes Tipo de estudo: Prognostic_studies Idioma: En Revista: Water Res Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Contexto em Saúde: 2_ODS3 Problema de saúde: 2_quimicos_contaminacion Assunto principal: Purificação da Água / Desinfetantes Tipo de estudo: Prognostic_studies Idioma: En Revista: Water Res Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos
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