References
- M. Clara, B. Strenn, O. Gans, E. Martinez, N. Kreuzinger,
H. Kroiss, Removal of selected pharmaceuticals, fragrances and
endocrine disrupting compounds in a membrane bioreactor
and conventional wastewater treatment plants, Water Res.,
39 (2005) 4797–4807.
- S.T. Glassmeyer, E.T. Furlong, D.W. Kolpin, J.D. Cahill,
S.D. Zaugg, S.L. Werner, M.T. Meyer, D.D. Kryak, Transport of
chemical and microbial compounds from known wastewater
discharges: potential for use as indicators of human fecal
contamination, Environ. Sci. Technol., 39 (2005) 5157–5169.
- Y. Jari, N. Roche, M.C. Necibi, S. El Hajjaji, D. Dhiba,
A. Chehbouni, Emerging pollutants in Moroccan wastewater:
occurrence, impact, and removal technologies, J. Chem.,
2022 (2022) 1–24, doi: 10.1155/2022/9727857.
- H. Hayzoun, C. Garnier, G. Durrieu, V. Lenoble, C. Le Poupon,
B. Angeletti, A. Ouammou, S. Mounier, Organic carbon, and
major and trace element dynamic and fate in a large river
subjected to poorly-regulated urban and industrial pressures
(Sebou River, Morocco), Sci. Total Environ., 502 (2015) 296–308.
- M. Bissassa, N. Rais, M. Ijjaali, Efficiency of Fez WWTP: multiparameter
evaluation of water and sediment quality, Environ.
Monit. Assess., 193 (2021) 551, doi: 10.1007/s10661-021-09309-2.
- M. Kachabi, I. El Mrabet, Z. Benchekroun, M. Nawdali,
Z. Hicham, Synthesis and adsorption properties of activated
carbon from KOH-activation of Moroccan Jujube shells for the
removal of COD and color from wastewater, Mediterr. J. Chem.,
8 (2019) 168–178.
- I. Elmansouri, A. Lahkimi, M. Benaabou, M. Chaouch,
N. Eloutassi, H. Bekkari, Contribution to the treatment of urban
wastewater in the city of Fez by coagulation and flocculation
using a biodegradable reagent, J. Ecol. Eng., 23 (2022) 77–85.
- I. El Mrabet, M. Benzina, H. Valdés, H. Zaitan, Treatment of
landfill leachates from Fez city (Morocco) using a sequence
of aerobic and Fenton processes, Sci. Afr., 8 (2020) e00434,
doi: 10.1016/j.sciaf.2020.e00434.
- I.W.C. Lau, P. Wang, H.H.P. Fang, Organic removal of
anaerobically treated leachate by Fenton coagulation, J. Environ.
Eng., 127 (2001) 666–669.
- L. Manrique Losada, Treatment of Florencia Caquetá Municipal
Wastewater by the Combination of Biological Processes and
Fenton Type Advanced Oxidation Processes, Universidad De
Antioquia, Colombia, 2020. Available at http://bibliotecadigital.
udea.edu.co/handle/10495/16155 (Accessed January 15, 2022).
- I. Oller, S. Malato, J.A. Sánchez-Pérez, Combination of advanced
oxidation processes and biological treatments for wastewater
decontamination—a review, Sci. Total Environ., 409 (2011)
4141–4166.
- I.V. Carranzo, Standard Methods for Examination of Water and
Wastewater, An. Hidrol. Médica, Universidad Complutense de
Madrid, 2012, p. 185.
- C. Tizaoui, L. Bouselmi, L. Mansouri, A. Ghrabi, Landfill
leachate treatment with ozone and ozone/hydrogen peroxide
systems, J. Hazard. Mater., 140 (2007) 316–324.
- J. Rodier, B. Legube, N. Merlet, L’analyse de l’eau-10e éd.,
Dunod, 2016.
- NM 03.7.001, Moroccan Standard for the Quality of Water for
Human Consumption, Official Bulletin No. 5404, March 16,
2006.
- E. Falipou, C. Boutin, Analyse statistique de la qualité
bactériologique des rejets d’ANC, Inrae, 2020.
- S. Kitanou, H. Ayyoub, J. Touir, A. Zdeg, S. Benabdallah,
M. Taky, A. Elmidaoui, A comparative examination of MBR
and SBR performance for municipal wastewater treatment,
Water Pract. Technol., 16 (2021) 582–591.
- C.P. Gerba, I.L. Pepper, Chapter 25 – Municipal Wastewater
Treatment, I.L. Pepper, C.P. Gerba, T.J. Gentry, Eds.,
Environmental Microbiology, Elsevier, 2015, pp. 583–606.
Available at https://doi.org/10.1016/B978-0-12-394626-3.00025-9.
- C. Mao, Y. Feng, X. Wang, G. Ren, Review on research
achievements of biogas from anaerobic digestion, Renewable
Sustainable Energy Rev., 45 (2015) 540–555.
- K. Komatsu, T. Onodera, A. Kohzu, K. Syutsubo, A. Imai,
Characterization of dissolved organic matter in wastewater
during aerobic, anaerobic, and anoxic treatment processes by
molecular size and fluorescence analyses, Water Res., 171 (2020)
115459, doi: 10.1016/j.watres.2019.115459.
- C.-H. Wei, C. Sanchez-Huerta, T. Leiknes, G. Amy, H. Zhou, X. Hu,
Q. Fang, H. Rong, Removal and biotransformation pathway
of antibiotic sulfamethoxazole from municipal wastewater
treatment by anaerobic membrane bioreactor, J. Hazard. Mater.,
380 (2019) 120894, doi: 10.1016/j.jhazmat.2019.120894.
- F.A. El-Gohary, G. Kamel, Characterization and biological
treatment of pre-treated landfill leachate, Ecol. Eng., 94 (2016)
268–274.
- P. Melidis, Landfill leachate nutrient removal using intermittent
aeration, Environ. Process., 1 (2014) 221–230.
- T. Kuba, A. Wachtmeister, M.C.M. Van Loosdrecht, J.J. Heijnen,
Effect of nitrate on phosphorus release in biological
phosphorus removal systems, Water Sci. Technol., 30 (1994)
263–269.
- B.S. Akin, A. Ugurlu, The effect of an anoxic zone on biological
phosphorus removal by a sequential batch reactor, Bioresour.
Technol., 94 (2004) 1–7.
- L. Appels, J. Baeyens, J. Degrève, R. Dewil, Principles and
potential of the anaerobic digestion of waste-activated sludge,
Prog. Energy Combust. Sci., 34 (2008) 755–781.
- K. Mahmud, Md.D. Hossain, S. Shams, Different treatment
strategies for highly polluted landfill leachate in developing
countries, Waste Manage., 32 (2012) 2096–2105.
- R. Changotra, H. Rajput, A. Dhir, Treatment of real
pharmaceutical wastewater using combined approach of Fenton
applications and aerobic biological treatment, J. Photochem.
Photobiol., A, 376 (2019) 175–184.
- M. Trapido, T. Tenno, A. Goi, N. Dulova, E. Kattel, D. Klauson,
K. Klein, T. Tenno, M. Viisimaa, Bio-recalcitrant pollutants
removal from wastewater with combination of the Fenton
treatment and biological oxidation, J. Water Process Eng.,
16 (2017) 277–282.
- F. Dimane, Y. El Hammoudani, Assessment of quality and
potential reuse of wastewater treated with conventional
activated sludge, Mater. Today Proc., 45 (2021) 7742–7746.
- R.R. Karri, J.N. Sahu, V. Chimmiri, Critical review of abatement
of ammonia from wastewater, J. Mol. Liq., 261 (2018) 21–31.
- O.E. Bachi, M.T. Halilat, S. Bissati, S.F. Mehanna, Performance
of two free biomass biological wastewater treatment processes
(Aerated Lagoon and Activated Sludge) in Ouargla area,
Algeria with referring to re-use the treated water in aquaculture,
Egypt. J. Aquat. Biol. Fish., 24 (2020) 575–592.
- D. Thirumurthi, Biodegradation of sanitary landfill leachate,
Biol. Degrad. Wastes Essex Engl. Elsevier Sci. Publ., 1991.
- H. Kim, Comparative Studies of Aerobic and Anaerobic
Landfills Using Simulated Landfill Lysimeters, University of
Florida, 2005.
- W. Ben, Z. Qiang, X. Pan, M. Chen, Removal of veterinary
antibiotics from sequencing batch reactor (SBR) pretreated
swine wastewater by Fenton’s reagent, Water Res., 43 (2009)
4392–4402.
- R. Nousheen, A. Batool, M.S.U. Rehman, M.A. Ghufran,
M.T. Hayat, T. Mahmood, Fenton-biological coupled
biochemical oxidation of mixed wastewater for color and COD
reduction, J. Taiwan Inst. Chem. Eng., 45 (2014) 1661–1665.
- S. Karthikeyan, A. Titus, A. Gnanamani, A.B. Mandal,
G. Sekaran, Treatment of textile wastewater by homogeneous
and heterogeneous Fenton oxidation processes, Desalination,
281 (2011) 438–445.
- N.S.S. Martınez, J.F. Fernández, X.F. Segura, A.S. Ferrer, Preoxidation
of an extremely polluted industrial wastewater by
the Fenton’s reagent, J. Hazard. Mater., 101 (2003) 315–322.
- T. Mandal, S. Maity, D. Dasgupta, S. Datta, Advanced oxidation
process and biotreatment: their roles in combined industrial
wastewater treatment, Desalination, 250 (2010) 87–94.
- V. Kavitha, K. Palanivelu, The role of ferrous ion in Fenton
and photo-Fenton processes for the degradation of phenol,
Chemosphere, 55 (2004) 1235–1243.
- D. Solomon, Z. Kiflie, S. Van Hulle, Integration of sequencing
batch reactor and homo-catalytic advanced oxidation processes
for the treatment of textile wastewater, Nanotechnol. Environ.
Eng., 5 (2020) 7, doi: 10.1007/s41204-020-0070-6.
- R.-Y. Ren, L.-H. Yang, J.-L. Han, H.-Y. Cheng, F.O. Ajibade,
A. Guadie, H.-C. Wang, B. Liu, A.-J. Wang, Perylene pigment
wastewater treatment by Fenton-enhanced biological
process, Environ. Res., 186 (2020) 109522, doi: 10.1016/j.envres.2020.109522.