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Tytuł artykułu

Spatio-Temporal Behavior of Physico-Chemical Parameters of Fez Controlled Landfill Leachate

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Aiming to preserve and protect the environment, physical and chemical quality of young and mature leachate samples from Fez controlled landfill were studied and assessed. Therefore, leachate samples were taken and analysed during the period of January–September 2022. The physicochemical characterization of both young and mature leachates revealed a significant load of organic matter (biological and chemical oxygen demands: BOD5 and COD) and minerals (NTK and PO43-). In addition, the metallic trace elements (MTEs) concentrations recorded for Cr, Fe, Al and Ni exceeded the threshold levels required in national standards, and their quantitative distribution followed the same pattern at both sites studied: Ni > Fe > Cr > Al > Zn > Pb. The Principal Component Analysis (PCA) enabled to reduce the database to a smaller dimension by gathering as much information on their trends and correlations. Two components were selected which account for the sum of 64.06% of the factors.
Rocznik
Strony
1--9
Opis fizyczny
Bibliogr. 37 poz., rys., tab.
Twórcy
  • Laboratory of Engineering, Electrochemistry, Modelling and Environment, Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah University, Fez 30050, Morocco
  • Laboratory of Engineering, Electrochemistry, Modelling and Environment, Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah University, Fez 30050, Morocco
  • Laboratory of Microbial Biotechnology and Bioactive Molecules, Sciences and Technologies Faculty, Sidi Mohamed Ben Abdellah University, Fez, P. O. Box 2202, Morocco
  • Laboratory of Engineering, Electrochemistry, Modelling and Environment, Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah University, Fez 30050, Morocco
autor
  • Laboratory of Natural Resources and Environment, Polydisciplinary Faculty of Taza, University of Sidi Mohammed Ben Abdellah, Taza 35000, Morocco
  • Laboratory of Microbial Biotechnology and Bioactive Molecules, Sciences and Technologies Faculty, Sidi Mohamed Ben Abdellah University, Fez, P. O. Box 2202, Morocco
Bibliografia
  • 1. Abd El-Salam, M.M., Abu-Zuid, G.I. 2015. Impact of landfill leachate on the groundwater quality: A case study in Egypt. Journal of advanced research, 6(4), 579–586.
  • 2. Abdel-Shafy, H.I., Ibrahim, A.M., Al-Sulaiman, A.M., Okasha, R.A. 2024. Landfill leachate: Sources, nature, organic composition, and treatment: An environmental overview. Ain Shams Engineering Journal, 15(1), 102293.
  • 3. Abdelwaheb, A., Moncef, Z., Hamed, B.D. 2012. Landfill leachate generation and its impact on water at an urban landfill (Jebel Chakir, Tunisia). Hydrology: Current Research, 3(2), 1–5.
  • 4. Adjiri, O.A., Gone, D.L., Kouame, I.K., Kamagate, B., Biemi, J. 2008. Caractérisation de la pollution chimique et microbiologique de l’environnement de la décharge d’Akouédo, Abidjan-Côte d’Ivoire. International Journal of Biological and Chemical Sciences, 2(4), 401–410.
  • 5. Ahouach, Y., Baali, A., Boushaba, A., Hakam, O., Azennoud, K., Lyazidi, A., Chen, T.W. 2023. Impact of the controlled dump of Fez City (Morocco): Evaluation of metallic trace elements contamination in the sediments. Water, 15(6), 1209.
  • 6. Asouam, S., Arabi, M., Faik, F., El Morjani, Z.E.A., Abioui, M., Diaz, L.F., Kostyuchenko, Y. 2021. Physicochemical characterization of the leachate of the Tamelast Landfill Site, Grand Agadir (Morocco). Ecological Engineering Environmental Technology, 22.
  • 7. Baun, D.L., Christensen, T.H. 2004. Speciation of heavy metals in landfill leachate: a review. Waste Management Research, 22(1), 3–23.
  • 8. Benaddi, R., Ferkan, Y., Bouriqi, A., Ouazzani, N. 2022. Impact of landfill leachate on groundwater quality–a comparison between three different landfills in Morocco. Journal of Ecological Engineering, 23(11).
  • 9. Chen, C., Ge, Q., Tao, Z., Liang, L. 2022. Evaluation of ecological environment quality in Chongqing main city area based on principal component analysis. Scientific Programming, 1, 7374034.
  • 10. Cheng, S.Y., Show, P.L., Juan, J.C., Chang, J.S., Lau, B.F., Lai, S.H., Ling, T.C. 2021. Landfill leachate wastewater treatment to facilitate resource recovery by a coagulation-flocculation process via hydrogen bond. Chemosphere, 262, 127829.
  • 11. Chiguer, H., El Khayyat, F., El Rhaouat, O., Rifki, R., Bensaid, A., El Kharrim, K., Belghyti, D. 2016. Evaluation de la charge polluante des lixiviats de la décharge contrôlée de la ville d’Essaouira (MAROC) (Evaluation of the pollution load of leachatesfrom the landfill in the city Essaouira (Morocco)). International Journal of Innovation and Applied Studies, 14(3), 863.
  • 12. El Atmani, A., Belhaili, I., Aitsi, S., Elkhachine, D., El Kharrim, K., Touria, A., Driss, B. 2021. First investigations into the pollution load of leachates from the Rabat Landfill, Morocco.
  • 13. El Mrabet, I., Ihssane, B., Valdés, H., Zaitan, H. 2022. Optimization of Fenton process operating conditions for the treatment of the landfill leachate of Fez city (Morocco). International Journal of Environmental Science and Technology, 19(4), 3323–3336.
  • 14. El-Gohary, F.A., Kamel, G. 2016. Characterization and biological treatment of pre-treated landfill leachate. Ecological Engineering, 94, 268–274.
  • 15. Elmaghnougi, I., Tribak, A.A., Maatouk, M. 2018. Assessment of leachates from uncontrolled landfill: Tangier case study. In E3S Web of Conferences, 37, 02003. EDP Sciences.
  • 16. Enitan, I.T., Enitan, A.M., Odiyo, J.O., Alhassan, M.M. 2018. Human health risk assessment of trace metals in surface water due to leachate from the municipal dumpsite by pollution index: a case study from Ndawuse River, Abuja, Nigeria. Open Chemistry, 16(1), 214–227.
  • 17. Erses, A.S., Onay, T.T., Yenigun, O. 2008. Comparison of aerobic and anaerobic degradation of municipal solid waste in bioreactor landfills. Bioresource technology, 99(13), 5418–5426.
  • 18. Hamri, Z., Mouhir, L., Souabi, S. 2021. Quantification of the pollution generated by the leachate of the Mohammedia-Benslimane landfill. Scientific Study Research. Chemistry Chemical Engineering, Biotechnology, Food Industry, 22(3), 341–356.
  • 19. Hussein, M., Yoneda, K., Zaki, Z.M., Amir, A. 2019. Leachate characterizations and pollution indices of active and closed unlined landfills in Malaysia. Environmental nanotechnology, monitoring management, 12, 100232.
  • 20. Liu, L., Li, L., Mo, H. 2022. Research on Ecological Evaluation Model Based on Principal Component Analysis. In Proceedings of the 3rd International Conference on Green Energy, Environment and Sustainable Development (GEESD2022) IOS Press, 429.
  • 21. Mejraoua, Z., Zine, N.E. 2017. Caractérisation physico-chimique du Lixiviat de la décharge sauvage de Meknès. Euro Sci J, 13(33), 154–166.
  • 22. Merzouki, H., Hanine, H., Lekhlif, B., Latrache, L., Mandi, L., Sinan, M. 2015. Physicochemical characterization of leachate discharge Fkih Ben Salah from Morocco. Journal of Materials and Environmental Science, 6(5), 1354–1363.
  • 23. Mishra, S., Singh, V., Ormeci, B., Hussain, A., Cheng, L., Venkiteshwaran, K. 2023. Anaerobic–aerobic treatment of wastewater and leachate: a review of process integration, system design, performance and associated energy revenue. Journal of Environmental Management, 327, 116898.
  • 24. Mojiri, A., Zhou, J.L., Ratnaweera, H., Ohashi, A., Ozaki, N., Kindaichi, T., Asakura, H. 2021. Treatment of landfill leachate with different techniques: an overview. Water Reuse, 11(1), 66–96.
  • 25. Mor, S., Negi, P., Khaiwal, R. 2018. Assessment of groundwater pollution by landfills in India using leachate pollution index and estimation of error. Environmental nanotechnology, monitoring & management, 10, 467–476.
  • 26. Parvin, F., Tareq, S.M. 2021. Impact of landfill leachate contamination on surface and groundwater of Bangladesh: a systematic review and possible public health risks assessment. Applied water science, 11(6), 1–17.
  • 27. Razak, M.W.A., Adamou, Z. 2020. Caractérisation physico-chimique des lixiviats des décharges: Cas de la décharge non contrôlée de Niamey 2000 (Niamey-Niger). European Scientific Journal, ESJ, 16(9), 42.
  • 28. Rhouat, S., El Youbi, M.S., Dimane, F. 2019. Physico-chemical characterization of Meknes municipal landfill leachate and assessment of the seasonal effects using PCA. Environmental Engineering & Management Journal (EEMJ), 18(11).
  • 29. Rodier J., Bazin C., Broutin J.P., Chambon P., Champsaur H. Rodi L. 2009. Water analysis, 9th edition. Dunod, Paris, France, 1579.
  • 30. Saha, P., Saikia, K.K., Kumar, M., Handique, S. 2023. Assessment of health risk and pollution load for heavy and toxic metal contamination from leachate in soil and groundwater in the vicinity of dumping site in Mid-Brahmaputra Valley, India. Total Environment Research Themes, 8, 100076.
  • 31. Siddiqi, S.A., Al-Mamun, A., Sana, A., Baawain, M.S., Choudhury, M.R. 2022. Characterization and pollution potential of leachate from urban landfills during dry and wet periods in arid regions. Water Supply, 22(3), 3462–3483.
  • 32. Tahiri, A.A., Laziri, F., Yachaoui, Y., El Allaoui, A., Tahiri, A.H. 2017. Heavy metals leached from the waste from the landfill in the city of Meknes, and their impact on groundwater. J. Mater. Environ. Sci, 8, 1004–1014.
  • 33. Talbi, F.Z., Sadek, S., Harkati, F.B., Elmarkhi, M., Chiguer, H., El Kharrim, K., Belghyti, D. 2020. The metallic charge of the leachates of the public discharge of Sefrou’city (Middle Atlas, Morocco). Easy Chair Preprint.
  • 34. Torkashvand, J., Godini, K., Norouzi, S., Gholami, M., Yeganeh, M., Farzadkia, M. 2021. Effect of cigarette butt on concentration of heavy metals in landfill leachate: health and ecological risk assessment. Journal of Environmental Health Science and Engineering, 19, 483–490.
  • 35. Touzani, I., Machkor, M., Boudouch, O., El Machrafi, I., Flouchi, R., Fikri-Benbrahim, K. 2020. Environmental impact assessment of Taza city’s wastewater: application through principal component analysis. Scientifica, 2020.
  • 36. Zhang, T., Wu, X., Fan, X., Tsang, D.C., Li, G., Shen, Y. 2019. Corn waste valorization to generate activated hydrochar to recover ammonium nitrogen from compost leachate by hydrothermal assisted pretreatment. Journal of environmental management, 236, 108–117.
  • 37. Zoubi, Y.E., Merzouki, M., Bennani, L., Lalami, A.E.O., Benlemlih, M. 2010. Procédé pour la réduction de la charge polluante du lixiviat de la décharge contrôlée de la ville de Fès. Environnement, Ingénierie Développement. N°58-2010. 8.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ea706cbd-290a-4486-a9e1-4697610e69b6
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