Treatment of contaminated well water with coagulants of different Opuntia ficus-indica L. populations

Authors

  • Farah Abidi
  • Nidhal Marzougui
  • Ferdaous Guesmi
  • Mohamed Naceur Khelil
  • Hanen Filali
  • Mohamed Hachicha
  • Noomene Sleimi

DOI:

https://doi.org/10.56027/JOASD.spiss042022

Keywords:

Coagulation, Opuntia ficus-indica, removal efficiency, well water contamination

Abstract

Opuntia ficus-indica (OFI) is a high added value species which different organs are used in several fields, including water purification. The present study intended to treat contaminated well water using naturally prepared coagulant from the cladodes of four local OFI populations in Tunisia. Physicochemical characterization of the water was carried out before and after treatment. The treatment applied allowed to decontaminate the well water studied. Most of the parameters tested were significantly influenced by the "population used" factor. The treatment by the "Amless" population of OFI resulted in the best reduction rates of the contents of Mg, Na, Cu, and Pb. "Loki" population allowed obtaining the best pH and EC reductions. The “Violet” population resulted in the highest COD, BOD5, and TSS reductions. The effectiveness and simplicity of this treatment method would encourage farmers to use it to improve the quality of the well water that is used for irrigation.

References

Ahluwalia, S.S., Goyal, D. (2007). Microbial and plant derived biomass for removal of heavy metals from wastewater. Bioresource Technology 98, 2243–2257.

Alsarayreh, M., Almomani, F., Khraisheh, M., Nasser, M.S., Soliman Y. (2022) Biological-Based Produced Water Treatment Using Microalgae: Challenges and Efficiency. Sustainability 14, 499.

Baird, R.B., Eaten, A.D., Rice, E.W. (2017). Standard Methods for the Examination of Water and Wastewater, 23rd ed. American Public Health Association: Washington, DC.

Bauder, T.A., Waskom, R.M., Sutherland, P.L., Davis, J. G. (2014). Irrigation Water Quality Criteria. Fact Sheet No. 0.506, Crop Series, Irrigation, Colorado State University, U.S.

Belcher, R., Macdonald, A.M.G., Parry, E. (1957). On Mohr’s method for the determination of chlorides. Analytica Chimica Acta 16, 524–529.

Belghythi, D., El Guamri, Y., Ztit, G., Ouahidi, M., Joti, M., Harchrass, A., Amghar, H., Bouchouata, O., El Kharrim, K., Bounouira, H. (2009). Caracterisation physico-chimique des eaux usées d’abattoir en vue de la mise en œuvre d’un traitement adéquat: cas de Kénitra au Maroc. Afrique Science: Revue Internationale des Sciences et Technologie, 20, 57-69.

Bin Omar, A.F., Bin MatJafri, M.Z. (2009). Turbidimeter design and analysis: a review on optical fiber sensors for the measurement of water turbidity. Sensors 9, 8311-8335.

Boretti, A., Orenzo, R. (2019). Reassessing the projections of the World Water Development Report. npj Clean Water 2, 1-6.

Chahed, J., Besbes, M., Hamdane A. (2010). Water scarcity and food security: A global assessment of water potentiality in Tunisia. In: Martínez-Cortina, L., Garrido, A., López-Gunn, E. (Eds.), Re-thinking Water and Food. CRS Press, Taylor & Francis Group, London, pp. 33-52.

Cherif, L. (2012). The influence of coagulation-flocculation and settling on the pre-treatment of brackish water. Master in Hydraulics, Abou Bekr Belkaid University, Faculty of Technology, Tlemcen. (In French)

Dai, Y., Sun, Q., Wang, W., Lu, L., Liu, M., Li, J., Yang, S., Sun, Y., Zhang, K., Xu, J., Zheng, W., Hu, Z., Yang, Y., Gao, Y., Chen, Y., Zhang, X., Gao, F., Zhang, Y. (2018). Utilizations of agricultural waste as adsorbent for the removal of contaminants: a review. Chemosphere 211, 235–253.

Deshmukh, S.O., Hedaoo, M.N. (2018). Wastewater treatment using bio-coagulant as cactus Opuntia ficus indica - A review. International Journal for Scientific Research & Development 6, 2321-0613.

Dihang, M.D. (2007). Mechanisms of coagulation and flocculation of dilute clay suspensions encountered in water treatment, Doctoral thesis, Specialty: Process and Environmental Engineering, Paul Sabatier University, Toulouse III. (In French)

Edokpayi, J.N., Odiyo, J.O., Durowoju, O.S. (2017) Impact of Wastewater on Surface Water Quality in Developing Countries: A Case Study of South Africa, Chapter 18, in: World’s Largest Science (Eds.), Technology & Medicine, Open Access Book Publisher, pp. 401-416.

FAO-Food and Agriculture Organization. (1994). Water quality for agriculture. 29 Rev. 1, Rome.

Gandiwa, B.I., Moyo, L.B., Ncube, S., Mamvura, T.A., Mguni, L.L., Hlabangana, N. (2020). Optimisation of using a blend of plant based natural and synthetic coagulants for water treatment: (Moringa oleifera-Cactus Opuntia-alum blend). South African Journal of Chemical Engineering 34, 158-164.

INNORPI. (1989). Environmental Protection—Use of Treated Wastewater for Agricultural Purposes—Physico-Chemical and Biological Specifications; Tunisian Standard NT 106.03. National Institute for Standardization and Industrial Property, Tunisia. (In French)

Joseph, L., Jun, B.M., Flora, J.R.V., Park, C.M., Yoon, Y. (2019). Removal of heavy metals from water sources in the developing world using low-cost materials: a review. Chemosphere 229, 142–159.

Malik, A., Yasar, A., Tabinda, A.B., Abubakar, M. (2012). Water-borne diseases, cost of illness and willingness to pay for diseases interventions in rural communities of developing countries. Iranian Journal of Public Health 41, 39–49.

Marston L.T., Read Q. D., Brown S. P. and Muth M. K. (2021). Reducing Water Scarcity by Reducing Food Loss and Waste. Frontiers in Sustainable Food Systems 5, 651476.

Marzougui, N., Guasmi, F., Dhouioui, S., Bouhlel, M., Hachicha, M., Berndtsson, R., Sleimi, N. (2021). Efficiency of different Moringa oleifera (Lam.) varieties as natural coagulants for urban wastewater treatment. Sustainability 13, 13500.

Metahri, M.S. (2012). Simultaneous elimination of nitrogen and phosphate pollution from wastewater treated by mixed processes, case of the East STEP of the city of Tizi-Ouzou, Doctoral thesis, University of Tizi-Ouzou, Algeria. (In French)

Miller, S.M., Fugate, E.J., Craver, V.O., Smith, J.A., Zimmerman, J.B. (2008). Toward understanding the efficacy and mechanism of Opuntia spp. as a natural coagulant for potential application in water treatment.

NF T90-008. (2001). Qualité de l'eau - Détermination du pH, Afnor ed. France.

Nhut, H.T., Hung, N.T.Q., Lap, B.Q., Han, L.T.N., Tri, T.Q., Bang, N.H.K., Hiep, N.T., Ky, N.M. (2020) Use of Moringa oleifera seeds powder as bio-coagulants for the surface water treatment. International Journal of Environmental Science and Technology 18, 2173–2180.

Rajasulochana P., Preethy V. (2016). Comparison on efficiency of various techniques in treatment of waste and sewage water. A comprehensive review. Resource-Efficient Technologies 2, 175–184.

Ringbom, A., Pensar, G., Wänninen, E. (1958). A complexometric titration method for determining calcium in the presence of magnesium. Analytica Chimica Acta 19, 525–531.

Downloads

Published

2022-06-30

How to Cite

Abidi, F., Marzougui, N., Guesmi, F., Khelil, M. N., Filali, H., Hachicha, M., & Sleimi, N. (2022). Treatment of contaminated well water with coagulants of different Opuntia ficus-indica L. populations. JOURNAL OF OASIS AGRICULTURE AND SUSTAINABLE DEVELOPMENT, 4(2), 22–30. https://doi.org/10.56027/JOASD.spiss042022

Plum Analytics

 Artifact Widget