Open Access
Issue
EPJ Web Conf.
Volume 376, 2026
6th International Conference on Recent Advances in Mechanical Engineering and Nanomaterials (ICRAMEN 2026)
Article Number 05010
Number of page(s) 11
Section Civil Engineering and Sustainable Infrastructure
DOI https://doi.org/10.1051/epjconf/202637605010
Published online 01 July 2026
  1. Ahmed, S., M. Rahman, and K. Hossain, Comparative performance of emergent macrophyte species for nutrient and heavy metal removal in tropical constructed wetlands, Ecol. Eng. 195, 107-122 (2025). [Google Scholar]
  2. Ahmed, T., and M. Islam, Role of substrate media in phosphorus retention in constructed wetlands: A review of mechanisms and design considerations, Crit. Rev. Environ. Sci. Technol. 51, 1250-1280 (2021). [Google Scholar]
  3. Almeida, C., and M. Santos, Substrate media selection for enhanced nutrient removal in constructed wetlands, Water Sci. Technol. 78, 1120-1138 (2018). [Google Scholar]
  4. Almeida, C., and M. Santos, Performance of constructed wetlands with alternative substrates for municipal wastewater treatment in developing countries, J. Environ. Manage. 305, 114-128 (2022). [Google Scholar]
  5. Baral, S., and J. Lee, Phosphorus removal in constructed wetlands using steel slag as substrate media, J. Environ. Manage. 245, 215-228 (2019). [Google Scholar]
  6. Baral, S., and R. Singh, Constructed wetlands for municipal wastewater treatment in tropical climates: A review of performance and design considerations, Ecol. Eng. 168, 106-122 (2021). [Google Scholar]
  7. Bhattacharya, S., and A. Pal, Performance assessment of floating treatment wetlands for municipal wastewater treatment: Role of plant species and hydraulic retention time, J. Water Process Eng. 53, 103-118 (2023). [Google Scholar]
  8. Brix, H., Treatment wetlands: An overview, Water Sci. Technol. 51, 1-10 (2005). [Google Scholar]
  9. Chen, L., and H. Zhang, Heavy metal removal mechanisms in constructed wetlands: A review of recent advances, Chemosphere 275, 130-145 (2021). [Google Scholar]
  10. Chowdhury, A., and P. Saha, Evaluation of tropical plant species for constructed wetlands treating municipal wastewater, Ecol. Eng. 135, 45-60 (2019). [Google Scholar]
  11. Chowdhury, M., and S. Hossain, Seasonal dynamics of microbial communities in constructed wetlands treating municipal wastewater, Sci. Total Environ. 835, 155-172 (2022). [Google Scholar]
  12. Das, P., and S. Chakraborty, Role of aeration in enhancing nitrogen removal in constructed wetlands: A comparative study, J. Environ. Chem. Eng. 8, 104-118 (2020). [Google Scholar]
  13. Das, R., and S. Chakraborty, Techno-economic feasibility of constructed wetlands for municipal wastewater treatment in small communities, Water Res. 215, 118-132 (2022). [Google Scholar]
  14. Garcia, E., and A. Rodriguez, Life cycle assessment of constructed wetland systems for municipal wastewater treatment: Comparison with conventional treatment technologies, J. Clean. Prod. 385, 135-152 (2023). [Google Scholar]
  15. Garcia, M., L. Rodriguez, and C. Fernandez, Role of plant-microbe interactions in nutrient cycling within constructed wetlands treating municipal wastewater, Sci. Total Environ. 912, 168-182 (2025). [Google Scholar]
  16. Garg, A., and I. Mishra, Constructed wetlands for wastewater treatment in India: Status, challenges, and opportunities, Curr. Sci. 118, 1205-1220 (2020). [Google Scholar]
  17. Goyal, P., and A. Sharma, Phytoremediation potential of aquatic macrophytes for heavy metal removal from municipal wastewater, Int. J. Phytoremediation 24, 850-868 (2022). [Google Scholar]
  18. Gupta, S., and P. Singh, Comparative evaluation of tropical and temperate plant species for constructed wetlands treating municipal wastewater, Ecol. Eng. 190, 107-121 (2024). [Google Scholar]
  19. Hasan, M., and M. Hossain, Influence of plant species on microbial community structure and function in constructed wetlands, Sci. Total Environ. 735, 139-155 (2020). [Google Scholar]
  20. Hasan, M., and M. Khan, Phosphorus removal mechanisms in constructed wetlands: Role of substrate media and plant uptake, J. Environ. Chem. Eng. 12, 112-128 (2024). [Google Scholar]
  21. Islam, T., M.A. Khan, and M. Hossain, Nitrogen transformation pathways in constructed wetlands: Influence of plant species and hydraulic loading rate, Water Sci. Technol. 89, 1120-1138 (2024). [Google Scholar]
  22. Kadlec, R.H., and S.D. Wallace, Treatment Wetlands, 2nd edn. (CRC Press, Boca Raton, 2009). [Google Scholar]
  23. Kumar, A., P. Sharma, and R. Singh, Long-term performance assessment of hybrid constructed wetland systems for municipal wastewater treatment in cold climates, Water Res. 245, 120-136 (2025). [Google Scholar]
  24. Kumar, S., and P. Reddy, Role of root zone oxygenation in heavy metal removal by constructed wetlands: A mechanistic study, Environ. Sci. Pollut. Res. 30, 67890-67908 (2023). [Google Scholar]
  25. Li, H., Y. Zhao, and J. Wu, Heavy metal speciation and bioavailability in constructed wetland substrates: Effects of plant species and operational age, Environ. Pollut. 342, 123-138 (2024). [Google Scholar]
  26. Li, J., and X. Wang, Long-term performance of constructed wetlands for municipal wastewater treatment: A 10-year study, Water Res. 182, 115-132 (2020). [Google Scholar]
  27. Patel, V., N. Desai, and M. Shah, Assessment of heavy metal accumulation and translocation in wetland plants used for municipal wastewater treatment, Chemosphere 350, 141-158 (2025). [Google Scholar]
  28. Reed, S.C., R.W. Crites, and E.J. Middlebrooks, Natural Systems for Waste Management and Treatment, 2nd edn. (McGraw-Hill, New York, 1995). [Google Scholar]
  29. Sharma, N., and R. Gupta, Role of plant species in nutrient removal by constructed wetlands, Ecol. Eng. 45, 45-58 (2012). [Google Scholar]
  30. S.A. Choudhari, M.A. Kumbhalkar, M.M. Sardeshmukh and D.V. Bhise, Irrigation planning for development of an effective cropping pattern using genetic algorithm, Multidiscip. Sci. J. 6(7), 2024083 (2024). [Google Scholar]
  31. Vymazal, J., Horizontal sub-surface flow and hybrid constructed wetlands for wastewater treatment, Ecol. Eng. 25, 478-490 (2005). [Google Scholar]
  32. Wang, L., and Y. Chen, Integration of constructed wetlands with conventional wastewater treatment plants for enhanced nutrient removal, J. Water Process Eng. 48, 102-118 (2022). [Google Scholar]

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