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Drinking Water Purification Techniques and the Emerging Environmental Challenges Cover

Drinking Water Purification Techniques and the Emerging Environmental Challenges

Open Access
|Nov 2025

References

  1. Abegunde, S.M., Idowu, K.S., Adejuwon, O.M. and Adeyemi-Adejolu, T. 2020. A review on the influence of chemical modification on the performance of adsorbents. Resources, Environment and Sustainability, 1: pp. 100001. DOI: 10.1016/j.resenv.2020.100001
  2. Agudelo-Vera, C., Avvedimento, S., Boxall, J., Creaco, E., de Kater, H., Di Nardo, A., Djukic, A., Douterelo, I., Fish, K.E., Iglesias Rey, P.L., Jacimovic, N., Jacobs, H.E., Kapelan, Z., Martinez Solano, J., Montoya Pachongo, C., Piller, O., Quintiliani, C., Ručka, J., Tuhovčák, L. and Blokker, M. 2020. Drinking water temperature around the globe: Understanding, policies, challenges and opportunities. Water, 12(4): pp. 1049. DOI: 10.3390/w12041049
  3. Alam, M. 2023. How climate change affects waterborne diseases. Wellcome, 11 November 2023, [https://wellcome.org/search?search=How+climate+change+affects+waterborne+diseases and last accessed 13 July 2025].
  4. Arora, R. 2021. Nano adsorbents for removing the arsenic from waste/ground water for energy and environment management—A review. Materials Today Proceedings, 45(6): pp. 44374440. DOI: 10.1016/j.matpr.2020.12.546
  5. Atikpo, E., Okonofua, E.S., Uwadia, N.O. and Michael, A. 2021. Health risks connected with ingestion of vegetables harvested from heavy metals contaminated farms in Western Nigeria. Heliyon, 7(8): pp. e07716. DOI: 10.1016/j.heliyon.2021.e07716
  6. Badawi, A.K., Salama, R.S. and Mostafa, M.M.M. 2023. Natural-based coagulants/flocculants as sustainable market-valued products for industrial wastewater treatment: a review of recent developments. RSC Advances, 13(28): pp. 1933519355. DOI: 10.1039/d3ra01999c
  7. Bai, X., Dinkla, I.J.T. and Muyzer, G. 2022. Microbial ecology of biofiltration used for producing safe drinking water. Applied Microbiology and Biotechnology, 106(13–16): pp. 48134829. DOI: 10.1007/s00253-022-12013-x
  8. Barman, A., Rajak, F. and Jha, R. 2024. Integrating wetlands as nature-based solutions for sustainable built environments a comprehensive review. Engineering, Technology and Applied Science Research, 14(6): pp. 1867018680. DOI: 10.48084/etasr.8923
  9. Bettini, S., Pagano, R., Valli, L. and Giancane, G. 2014. Drastic nickel ion removal from aqueous solution by curcumin-capped Ag nanoparticles. Nanoscale, 6: 1011310117. DOI: 10.1039/C4NR02583K
  10. Bhattarai, K.R. and Bhasin, M. 2022 Water Pollution is the main problem for human health. Journal of Algebraic Statistics, 13(2): pp. 28122817. https://publishoa.com.
  11. Calero Preciado, C., Boxall, J., Soria-Carrasco, V., Martínez, S. and Douterelo, I. 2021. Implications of Climate Change: How does increased water temperature influence biofilm and water quality of chlorinated drinking water distribution systems? Frontiers in Microbiology, 12(658927). DOI: 10.3389/fmicb.2021.658927
  12. Carbonari, A., Scarpab, M. and Plazac, F.I.M. 2025. Environmental control of urban covered courtyards in mediterranean climates – Comparison between different strategies. Energy Catalyst, 1: pp. 2234. DOI: 10.61552/EC.2025.002
  13. Chadha, U., Selvaraj, S.K., Vishak Thanu, S., Cholapadath, V., Abraham, A.M., Zaiyan, M., Manikandan, M. and Paramasivam, V. 2022. A review of the function of using carbon nanomaterials in membrane filtration for contaminant removal from wastewater. Materials Research Express. 9(012003): pp. 123. DOI: 10.1088/2053-1591/ac48b8
  14. Chmielewská, E. 2019. Chapter 4—Natural zeolite: Alternative adsorbent in purification or post-treatment of waters. In Modified Clay and Zeolite Nanocomposite Materials: Environmental and Pharmaceutical Applications; Elsevier: Amsterdam, The Netherlands, 2019; pp. 87112. DOI: 10.1016/B978-0-12-814617-0.00012-8
  15. Chua, S.F., Nouri, A., Ang, W.L., Mahmoudi, E., Mohammad, A.W., Benamor, A. and Ba-Abbad, M. 2021. The emergence of multifunctional adsorbents and their role in environmental remediation. Journal of Environmental Chemical Engineering, 9: pp. 104793. DOI: 10.1016/j.jece.2020.104793
  16. Da’na, E. 2017. Adsorption of heavy metals on functionalized-mesoporous silica: A review. Microporous and Mesoporous Materials, 247: 145157. DOI: 10.1016/j.micromeso.2017.03.050
  17. Dragić, D., Drljača, D. and Zoric, S. 2024. Start-up of biofilter for nitrification and effect of filtration rate on the ammonium removal efficiency in drinking water treatment on pilot plant. Water Supply, 24(4): pp. 12071223. DOI: 10.2166/ws.2024.038
  18. Esteki, R., Ehrampoush, M.H., Nasab, H. and Ebrahimi, A.A. 2024. Investigating the improvement of the quality of industrial effluents for reuse with added processes: coagulation, flocculation, multi-layer filter and UV. Scientific reports, 14: pp. 3971. DOI: 10.1038/s41598-024-54310-7
  19. Ghernaout, D. 2020. Water treatment coagulation: dares and trends. OALib, 07(08): pp. 118. DOI: 10.4236/oalib.1106636
  20. Haris, M., Khan, M.W., Zavabeti, A., Mahmood, N. and Eshtiaghi, N. 2023. Self-assembly of C@FeO nanopillars on 2D-MOF for simultaneous removal of microplastic and dissolved contaminants from water. Chemical Engineering Journal, 455: pp. 140390. DOI: 10.1016/j.cej.2022.140390
  21. Hu, Z., Wu, K., Wang, Z., Shah, K.J. and Sun, Y. 2024. Research progress of magnetic flocculation in water treatment. Magnetochemistry, 10(8): pp. 56. DOI: 10.3390/magnetochemistry10080056
  22. Hwang, C.-L., Ling, F., Andersen, G.L., LeChevallier, M.W. and Wen Tso Liu. 2012. Microbial Community dynamics of an urban drinking water distribution system subjected to phases of chloramination and chlorination treatments. Applied and Environmental Microbiology, 78(22): pp. 78567865. DOI: 10.1128/aem.01892-12
  23. Iqbal, H.H., Siddique, A., Qadir, A., Sajid Rashid Ahmad, Liess, M. and Shahid, N. 2024. Human health and ecology at risk: A case study of metal pollution in Lahore, Pakistan. Environmental Sciences Europe, 36(9): pp. 111. DOI: 10.1186/s12302-023-00824-2
  24. Kesar, S. and Bhatti, M.S. 2022. Chlorination of secondary treated wastewater with sodium hypochlorite (NaOCl): An effective single alternate to other disinfectants. Heliyon, 8(11): pp. e11162. DOI: 10.1016/j.heliyon.2022.e11162
  25. Kong, J., Lu, Y., Ren, Y., Chen, Z. and Chen, M. 2021. The virus removal in UV irradiation, ozonation and chlorination. Water Cycle, 2: pp. 2331. DOI: 10.1016/j.watcyc.2021.05.001
  26. Kristanti, R.A. 2021. Rhizofiltration for removal of inorganic and organic pollutants in groundwater: A review. Biointerface Research in Applied Chemistry. 11(4): pp. 1232612347. DOI: 10.33263/briac114.1232612347
  27. Kurniawan, S., Abdullah, S., Imron, M., Said, N., Ismail, N., Hasan, H., Othman, A. and Purwanti, I. 2020. Challenges and opportunities of biocoagulant/bioflocculant application for drinking water and wastewater treatment and its potential for sludge recovery. International Journal of Environmental Research and Public Health, 17(24): pp. 9312. DOI: 10.3390/ijerph17249312
  28. Maćczak, P., Kaczmarek, H. and Ziegler-Borowska, M. 2020. Recent achievements in polymer bio-based flocculants for water treatment. Materials, 13(18). DOI: 10.3390/ma13183951
  29. Malekmohammadi, S., Mirbagheri, A. and Ehteshami, M. 2016. Comparison of silica, activated carbon and zeolite adsorbents in the removal of ammonium, iron, COD, turbidity and phosphate pollutants, and investigating the effect of discharge on the removal of pollutants. International Journal of Humanities and Cultural Studies. 2016: pp. 667679. http://www.ijhcs.com/index.php/ijhcs/index.
  30. Mawari, G., Kumar, N., Sarkar, S., Frank, A.L., Daga, M.K., Singh, M.M., Joshi, T.K. and Singh, I. 2022. Human health risk assessment due to heavy metals in ground and surface water and association of diseases with drinking water sources: A study from Maharashtra, India. Environmental Health Insights, 16: pp. 117863022211460. DOI: 10.1177/11786302221146020
  31. Mazhar, M.A., Khan, N.A., Ahmed, S., Khan, A.H., Hussain, A., Rahisuddin, Changani, F., Yousefi, M., Ahmadi, S. and Vambol, V. 2020. Chlorination disinfection by-products in municipal drinking water – A review. Journal of Cleaner Production, 273: pp. 123159. DOI: 10.1016/j.jclepro.2020.123159
  32. Meher, A. 2024. Framework for adaptive governance in odisha : a special reference to educational administration: Theory and practice framework for adaptive governance in Odisha : A special reference to climate change and disaster management. Educational Administration: Theory and Practice, 30(9): pp. 377388. DOI: 10.53555/kuey.v30i9.7703
  33. Mishra, R.K. 2023. Fresh water availability and it’s global challenge. Journal of Marine Science and Research, 2(1): pp. 0103. DOI: 10.58489/2836-5933/004
  34. Musa Khan, N., Bano, A. and Ishaq Khan, G. 2022. Contaminated wastewater irrigation impacts on human health. Pak-Euro Journal of Medical and Life Sciences, 4(6): pp. 126137. DOI: 10.31580/pjmls.v4iSpecial.1802
  35. Morin-Crini, N., Lichtfouse, E., Liu, G., Balaram, V., Ribeiro, A.R.L., Lu, Z., Stock, F., Carmona, E., Teixeira, M.R., Picos-Corrales, L.A., Moreno-Piraján, J.C., Giraldo, L., Li, C., Pandey, A., Hocquet, D., Torri, G. and Crini, G. 2022. Worldwide cases of water pollution by emerging contaminants: A review. Environmental Chemistry Letters, 20: pp. 23112338. DOI: 10.1007/s10311-022-01447-4
  36. Nizer, W.S. da C., Inkovskiy, V. and Overhage, J. 2020. Surviving reactive chlorine stress: responses of gram-negative bacteria to hypochlorous acid. Microorganisms, 8(8): pp. 127. DOI: 10.3390/microorganisms8081220
  37. Nzereogu, S.K. 2024. A critical review on emerging organic micro pollutants: Fate and treatment methods. International Journal of Advances in Engineering and Management (IJAEM), 6(09): pp. 239258. DOI: 10.35629/5252-0609239258
  38. Oloruntoba, E.O., Wada, O.Z. and Adejumo, M. 2022. Heavy metal analysis of drinking water supply, wastewater management, and human health risk assessment across secondary schools in Badagry coastal community, Lagos State, Nigeria. International Journal of Environmental Health Research, 32(9): pp. 18971914. DOI: 10.1080/09603123.2021.1926438
  39. Patchaiyappan, A. and Devipriya, S.P. 2021. Application of plant-based natural coagulants in water treatment. Cost Effective Technologies for Solid Waste and Wastewater Treatment, 14: pp. 127. DOI: 10.1016/B978-0-12-822933-0.00012-7
  40. Pinakidou, F., Katsikini, M., Paloura, E., Simeonidis, K., Mitraka, E. and Mitrakas, M. 2016. Monitoring the role of Mn and Fe in the As-removal efficiency of tetravalent manganese feroxyhyte nanoparticles from drinking water: An X-ray absorption spectroscopy study. Journal of Colloid and Interface Science. 477: 148155. DOI: 10.1016/j.jcis.2016.05.041
  41. Pinar-Méndez, A., Wangensteen, O.S., Præbel, K., Galofré, B., Méndez, J., Blanch, A.R. and García-Aljaro, C. 2022. Monitoring bacterial community dynamics in a drinking water treatment plant: An integrative approach using metabarcoding and microbial indicators in large water volumes. Water, 14(9): pp. 1435. DOI: 10.3390/w14091435
  42. Rahim, J., Sunarsih. and Budiati, L. 2024. Drinking water treatment system and the challenges faced by developing countries. Malaysian Journal of Medicine and Health Sciences, 20(2): pp. 293299. DOI: 10.47836/mjmhs.20.2.38
  43. Sarker, B., Keya, K.N., Mahir, F.I., Nahiun, K.M., Shahida, S. and Khan, R.A. 2021. Surface and ground water pollution: Causes and effects of urbanization and industrialization in South Asia. Scientific Review, 7(73): pp. 3241. DOI: 10.32861/sr.73.32.41
  44. Schmidt, S.J., Dou, W. and Sydlik, S.A. 2023. Regeneratable graphene-based water filters for heavy metal removal at home. ACS ES and T Water, 3(8): pp. 21792185. DOI: 10.1021/acsestwater.3c00010
  45. Shahid, M.K., Kashif, A., Fuwad, A. and Choi, Y. 2021. Current advances in treatment technologies for removal of emerging contaminants from water – A critical review. Coordination Chemistry Reviews, 442: pp. 213993. DOI: 10.1016/j.ccr.2021.213993
  46. Shi, X., Zhang, X., Gao, W., Zhang, Y. and He, D. 2022. Removal of microplastics from water by magnetic nano-Fe3O4. Science of The Total Environment, 802: pp. 149838. DOI: 10.1016/j.scitotenv.2021.149838
  47. Siame, T., Muzandu, K., Kataba, A. and M’Kandawire, E. 2023. Comparative determination of human health risks associated with consumption of groundwater contaminated with lead in selected areas surrounding the former lead mine in Kabwe and non-mining areas in Lusaka, Zambia. International Journal of Community Medicine and Public Health, 10(11): pp. 40894095. DOI: 10.18203/2394-6040.ijcmph20233434
  48. Simeonidis, K., Kaprara, E., Samaras, T., Angelakeris, M., Pliatsikas, N., Vourlias, G., Mitrakas, M. and Andritsos, N. 2015. Optimizing magnetic nanoparticles for drinking water technology: The case of Cr(VI). Science of The Total Environment. 535: 6168. DOI: 10.1016/j.scitotenv.2015.04.033
  49. Zhu, F., Zheng, Y.M., Zhang, B.G. and Dai, Y.R. 2021. A critical review on the electrospun nanofibrous membranes for the adsorption of heavy metals in water treatment. Journal of Hazardous Materials, 401: pp. 123608. DOI: 10.1016/j.jhazmat.2020.123608
DOI: https://doi.org/10.5334/rss.11 | Journal eISSN: 2977-8441
Language: English
Submitted on: Jul 13, 2025
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Accepted on: Oct 15, 2025
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Published on: Nov 11, 2025
Published by: Ubiquity Press
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2025 Nur Atikah Abdul Salim, Wilson Lee Hua Xuan, Nur Aina Farzana Asruzi, Noorul Hudai Abdullah, Nor Arbani Sean, Nur Sumaiyyah Supian, Fatin Zafirah Mansur, published by Ubiquity Press
This work is licensed under the Creative Commons Attribution 4.0 License.