High-strength wastewater treatment in a pure oxygen thermophilic process: 11-year operation and monitoring of different plant configurations

Author:

Collivignarelli M. C.1,Bertanza G.2,Sordi M.1,Pedrazzani R.3

Affiliation:

1. Department of Civil Engineering and Architecture, University of Pavia, via Ferrata 1, 27100 Pavia, Italy

2. Department of Civil, Environmental, Architectural Engineering, and Mathematics, University of Brescia, via Branze 43, 25123 Brescia, Italy

3. Department of Mechanical and Industrial Engineering, University of Brescia, via Branze 38, 25123 Brescia, Italy

Abstract

This research was carried out on a full-scale pure oxygen thermophilic plant, operated and monitored throughout a period of 11 years. The plant treats 60,000 t y−1 (year 2013) of high-strength industrial wastewaters deriving mainly from pharmaceuticals and detergents production and landfill leachate. Three different plant configurations were consecutively adopted: (1) biological reactor + final clarifier and sludge recirculation (2002–2005); (2) biological reactor + ultrafiltration: membrane biological reactor (MBR) (2006); and (3) MBR + nanofiltration (since 2007). Progressive plant upgrading yielded a performance improvement chemical oxygen demand (COD) removal efficiency was enhanced by 17% and 12% after the first and second plant modification, respectively. Moreover, COD abatement efficiency exhibited a greater stability, notwithstanding high variability of the influent load. In addition, the following relevant outcomes appeared from the plant monitoring (present configuration): up to 96% removal of nitrate and nitrite, due to denitrification; low-specific biomass production (0.092 kgVSS kgCODremoved−1), and biological treatability of residual COD under mesophilic conditions (BOD5/COD ratio = 0.25–0.50), thus showing the complementarity of the two biological processes.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference21 articles.

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2. Performance comparison of mesophilic and thermophilic aerobic sidestream membrane bioreactors treating high strength wastewater;Abeynayaka;Bioresource Technology,2011

3. Sinergie tra attività di ricerca e procedure gestionali in una piattaforma polifunzionale di trattamento rifiuti (Synergies between research and management procedures in a multipurpose platform for waste treatment);Bertanza;RS Rifiuti Solidi,2006

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