References

  1. J. Kapelewska, U. Kotowska, J. Karpińska, A. Astel, P. Zieliński, J. Suchta, K. Algrzym, Water pollution indicators and chemometric expertise for the assessment of the impact of municipal solid waste landfills on groundwater located in their area, Chem. Eng. J., 359 (2019) 790–800.
  2. L. Castrillón, Y. Fernández-Nava, M. Ulmanu, I. Anger, E. Marañón, Physico-chemical and biological treatment of MSW landfill leachate, Waste Manage., 30 (2010) 228–235.
  3. W.G. Moravia, M.C.S. Amaral, L.C. Lange, Evaluation of landfill leachate treatment by advanced oxidative process by Fenton’s reagent combined with membrane separation system, Waste Manage., 33 (2013) 89–101.
  4. A. Ueno, Treatment of Landfill Leachate in Coagulation– Flocculation Method by Using Micro Zeolite and Micro Sand, Doctoral Dissertation, University Tun Hussein Onn, Johor, Malaysia, 2013, pp. 1–5.
  5. S. Ghafari, H.A. Aziz, M.J.K. Bashir, The use of poly-aluminum chloride and alum for the treatment of partially stabilized leachate: a comparative study, Desalination, 257 (2010) 110–116.
  6. A.H. Jendia, S. Hamzah, A.A. Abuhabib, N.M. El-Ashgar, Removal of nitrate from groundwater by eggshell biowaste, Water Sci. Technol. Water Supply, 20 (2020) 2514–2529.
  7. H.H. Wan Jusoh, N.A. Kasan, H. Manan, N. Mohd Nasir, F.H. Mohd Yunos, S. Hamzah, A. Jusoh, Chicken eggshell as an innovative bioflocculant in harvesting biofloc for aquaculture wastewater treatment, J. Renewable Mater., 11 (2023) 2321–2332.
  8. S. Ghafari, H.A. Aziz, M.H. Isa, A.A. Zinatizadeh, Application of response surface methodology (RSM) to optimize coagulationflocculation treatment of leachate using poly-aluminum chloride (PAC) and alum, J. Hazard. Mater., 163 (2009) 650–656.
  9. A. Maleki, M.A. Zazouli, H. Izanloo, R. Rezaee, Composting plant leachate treatment by coagulation-flocculation process, American-Eurasian J. Agric. Environ. Sci., 5 (2009) 638–643.
  10. M.B. Ahmed, J.L. Zhou, H.H. Ngo, W. Guo, N.S. Thomaidis, J. Xu, Progress in the biological and chemical treatment technologies for emerging contaminant removal from wastewater: a critical review, J. Hazard. Mater., 323 (2017) 274–298.
  11. R. Ngteni, Md.S. Hossain, M.O. Ab Kadir, A.J. Asis, Z. Tajudin, Kinetics and isotherm modeling for the treatment of rubber processing effluent using iron(II) sulphate waste as a coagulant, Water, 12 (2020) 1747, doi: 10.3390/w12061747.
  12. A.R.A. Aziz, P. Asaithambi, W.M.A.B.W. Daud, Combination of electrocoagulation with advanced oxidation processes for the treatment of distillery industrial effluent, Process Saf. Environ. Prot., 99 (2016) 227–235.
  13. S. Fauziah, P. Agamuthu, Landfills in Malaysia: Past, Present and Future, 1st International Conference on Final Sinks, 2010, pp. 1–9.
  14. N.A. Mohamad, S. Hamzah, M.H.C. Harun, A. Ali, N. Rasit, M. Awang, W.R.W.A. Rahman, A.A.A. Rahman Azmi, A.A. Abu Habib, M.S.A. Zahid, A.A.F. Mustofa, S.A. Latfi, S.M. Aripin, R. Saad, Integration of copperas and calcium hydroxide as a chemical coagulant and coagulant aid for efficient treatment of palm oil mill effluent, Chemosphere, 281 (2021) 130873, doi: 10.1016/j.chemosphere.2021.130873.
  15. R. Mustapha, A. Ali, G. Subramaniam, A.A.A. Zuki, M. Awang, M.H.C. Harun, S. Hamzah, Removal of malachite green dye using oil palm empty fruit bunch as a low-cost adsorbent, Biointerface Res. Appl. Chem., 11 (2021) 14998–15008.
  16. A. Ali, A.W.C. Ing, W.R.W. Abdullah, S. Hamzah, F. Azaman, Preparation of high-performance adsorbent from low-cost agricultural waste (peanut husk) using full factorial design: application to dye removal, Biointerface Res. Appl. Chem., 10 (2020) 6619–6628.
  17. M.M. Ariffin, N.I. Yatim, S. Hamzah, Synthesis and characterization of hydroxyapatite from bulk seashells and its potential usage as lead ions adsorbent, Malays. J. Anal. Sci., 21 (2017) 571–584.
  18. S.M. Raghab, A.M. Abd El Meguid, H.A. Hegazi, Treatment of leachate from municipal solid waste landfill, HBRC J., 9 (2013) 187–192.
  19. M. Yan, D. Wang, J. Yu, J. Ni, M. Edwards, J. Qu, Enhanced coagulation with polyaluminum chlorides: role of pH/ alkalinity and speciation, Chemosphere, 71 (2018) 1665–1673.
  20. A.A. Hamidi, S. Alias, F. Assari, M.N. Adlan, The use of alum, ferric chloride and ferrous sulfate as coagulants in removing suspended solids, color and COD from semi-aerobic landfill leachate at controlled pH, Waste Manage. Res., 25 (2007) 556–565.
  21. M.S. Hossain, F. Omar, A.J. Asis, R.T. Bachmann, M.Z. Islam Sarker, M.O. Ab Kadir, Effective treatment of palm oil mill effluent using FeSO4·7H2O waste from titanium oxide industry: coagulation adsorption isotherm and kinetics studies, J. Cleaner Prod., 219 (2019) 86–98.
  22. M.J.K. Bashir, T.M. Xian, A. Shehzad, S. Sethupahi, N. Choon Aun, S. Abu Amr, Sequential treatment for landfill leachate by applying coagulation–adsorption process, Geosyst. Eng., 20 (2017) 9–20.
  23. M.T. Samadi, M.H. Saghi, A. Rahmani, J. Hasanvand, S. Rahimi, M.S. Syboney, Hamadan landfill leachate treatment by coagulation-flocculation process, Iran. J. Environ. Health Sci. Eng., 73 (2010) 253–258.
  24. Q.G. Wang, P.F. Le, C. Fu, W.L. Jiang, R.F. Han, Y. Zhuo, X.G. Huang, Environ. Sci. Technol., 9 (2014) 1308–1312.
  25. H. Bakraouy, M. Abouri, S. Souabi, K. Digua, A. Yaacoubi, A. Jada, Optimization of fresh landfill leachate treatment by a response surface methodology, J. Colloid Sci. Biotechnol., 5 (2016) 182–189.
  26. H. Bakraouy, S. Souabi, K. Digua, O. Dkhissi, M. Sabar, M. Fadil, Optimization of the treatment of an anaerobic pretreated landfill leachate by a coagulation–flocculation process using experimental design methodology, Process Saf. Environ. Prot., 109 (2017) 621–630.
  27. P. Senthil Kumar, S.J. Varjani, S. Suganya, Treatment of dye wastewater using an ultrasonic aided nanoparticle stacked activated carbon: kinetic and isotherm modelling, Bioresour. Technol., 250 (2018) 716–722.
  28. G. Sharma, Mu. Naushad, Adsorptive removal of noxious cadmium ions from aqueous medium using activated carbon/zirconium oxide composite: isotherm and kinetic modelling, J. Mol. Liq., 310 (2020) 113025, doi: 10.1016/j.molliq.2020.113025.