Cola wastewater, generated during the production of sugar-containing beverages, is a low-toxicity effluent rich in organic matter and may serve as a promising external carbon source for biological denitrification. However, its phosphate content often exceeds the relevant quality limit, and its low carbon bioavailability limits its suitability as an effective carbon source for denitrification. To address these limitations, an integrated pretreatment strategy combining selective phosphate removal using a polymeric ion-exchange resin with UV/H2O2 was developed to improve substrate quality. The process reduced the phosphate concentration from 132.0 to 16.1 mg/L and increased the BOD5/COD from 0.22 to 0.56, indicating enhanced carbon bioavailability. In denitrification tests at carbon-to-nitrogen ratios ≥ 6, the pretreated wastewater achieved nitrate removal efficiencies of 87.5%-91.5%, comparable to those achieved with glucose (88.8%-90.9%) and considerably higher than those achieved with untreated wastewater (67.8%-78.2%). Effluent chemical oxygen demand was lower and more stable, indicating improved substrate utilisation and process stability. Mechanistically, pretreatment increased the availability of readily biodegradable small-molecule organic compounds, thereby enhancing microbial access to substrates and denitrification efficiency. Collectively, these findings demonstrate a feasible approach that integrates phosphate control with organic matter transformation to valorise cola wastewater-derived organic carbon as a sustainable carbon source for biological nitrogen removal.
Low carbon-to-nitrogen (C/N) municipal wastewater often limits heterotrophic denitrification and increases external carbon addition. This study evaluated an exogenous denitrifying bioaugmentation (DEN) strategy for improving nitrogen removal per unit of external carbon added. The screened inoculant reached approximatel...
Xi-Kun Zhu, Chun-Sheng Liu, Ze-Hua Li et al.· Water· 0 citations
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Anaerobic digestate is rich in nitrogen, and its treatment poses substantial challenges to conventional processes due to its ammonium concentration, high alkalinity, and low biodegradable carbon content. In this study, microbial fuel cells (MFCs) were investigated for the treatment of digestate....
Xizi Long, Long Xiao, Xiang-Peng Zhai et al.· Bioelectricity· 0 citations
Starch processing wastewater (SPW) is a high-strength organic effluent that imposes substantial treatment costs, while its high starch content also represents a potentially valuable carbon resource. Here, we developed an integrated waste-to-resource strategy for converting SPW into bacterial cellulose (BC) for sandy so...
Hao-Long Zheng, Yi Wang, Xue-Qing Zhao et al.· Bioresource Technology· 0 citations
Conventional anaerobic digestion (AD), despite its proven efficiency in wastewater treatment, faces limitations due to energy requirements and extended hydraulic retention times, with methane yields from waste-activated sludge rarely exceeding 50% of the stoichiometric maximum at retention times of 20 days or more and...
Hyusein Yemendzhiev, Yana Mersinkova, G. Peeva et al.· Processes· 0 citations
In this study, quince-derived biochar was employed as a sustainable and multifunctional material for the removal of organic pollutants through different treatment alternatives depending on the pH (natural or modified), including adsorption and electro-Fenton degradation processes. The biochar, obtained by pyrolysis (50...
Antón Puga, Ana Rita Alves, Sónia A. Figueiredo et al.· Sustainability· 1 citation
This study explores the impact of glucose as a second source of organic carbon on the denitrification coupled to methane oxidation (DOM) process under anoxic conditions. For this purpose, batch tests were conducted varying the C:N ratios to
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A. K. Molina-Macías, Y. A. Londoño, G. Peñuela· Journal of environmental eng...· 0 citations
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