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    Microbiological and physicochemical quality enhancement of treated wastewater using raw and chemically modified clays from Sidi Bouzid region, Tunisia

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    Date
    2023-12-15
    Author
    Gharbi-Khelifi, Hakima
    Jmii, Habib
    Mosbahi, Mohamed
    Hamdi, Samiha
    Hamdi, Rawand
    Brahmi, Jihen
    Loukil, Slim
    Chamkha, Mohamed
    Sayadi, Sami
    Aouni, Mahjoub
    Barreiro, Ana
    Fernández-Sanjurjo, Maria J.
    Núñez-Delgado, Avelino
    Rodríguez, Esperanza Álvarez
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    Abstract
    Environmental discharge of wastewater represents a source of chemical and biological pollutants. This study firstly evaluates the microbiological and physicochemical quality of treated wastewaters collected from two wastewater treatment plants (WWTPs) located in two different Tunisian cities namely Sidi Bouzid (SB) and Gafsa (G). Then, the capacity of three raw and acid/base-activated local clays to enhance the quality of wastewaters was assessed. The results indicate that the quantities of enteric bacteria (oscillating from 1.381 × 103 to 1.4 × 108 CFU/100 mL), fungi (between 1.331 × 103 and 1.781 × 104 CFU/100 mL), as well as SARS-CoV-2 (between 4.25 × 103 and 5.05 × 105 CFU/100 mL) and Hepatitis A virus RNA (form 4.25 × 103 to 7.4 × 104 CFU/100 mL) detected in effluent wastewaters were not in compliance with the Tunisian standards for both studied WWTPs. Likewise for other indicators such as electrical conductivity (ranging 4.9–5.4 mS/cm), suspended matter (145–160 g l−1), chemical oxygen demand (123–160 mg l−1), biological oxygen demand 5 (172–195 mg l−1), chloride, Total Kjeldahl nitrogen (TKN) and phosphorus contents (710, 58–66 and 9.47–10.83 mg l−1 respectively), the registered values do not agree with the set standards established for wastewater treatment. On the other hand, the pH values fitted (oscillating from 6.86 (at G) to 7.24 (at SB) with the Tunisian standards for both WWTPs. After treatment, wastewaters showed better values for the microbiological parameters, especially for the clays designed as AM and HJ1, which eliminated 100% of viruses. In addition, when acid-activated AM clays were applied, a marked improvement in the quality of physicochemical parameters was obtained, especially for suspended matter (2 and 4 g l−1 for SB and G, respectively), TKN (5.2 (SB) and 6.40 (G) mg/l), phosphorus (1.01 (SB) and 0.81 (G) mg/l). Our results open perspectives for the possibility of efficiently using these specific clays in the enhancement of the quality of treated wastewaters.
    URI
    https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85174741880&origin=inward
    DOI/handle
    http://dx.doi.org/10.1016/j.envres.2023.117391
    http://hdl.handle.net/10576/62450
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