References

  1. Z. Daud, M.H. Abubakar, A.A. Kadir, A.A.A. Latiff, H. Awang, A.A. Halim, A. Marto, Optimization of leachate treatment with granular biomedia: feldspar and zeolite, Indian J. Sci. Technol., 9(37) (2016) 1–5.
  2. H.A. Aziz, Z. Daud, M.N. Adlan, Y.T. Hung, The use of polyaluminium chloride for removing colour, COD and ammonia from semi-aerobic leachate, Int. J. Environ. Eng, 1(1) (2009) 20–35.
  3. A.A. Halim, H.A. Aziz, M.A.M. Johari, K.S. Ariffin, Comparison study of ammonia and COD adsorption on zeolite, activated carbon and composite materials in landfill leachate treatment, Desalination, 262 (2010) 31–35.
  4. Z. Daud, M.A. Rosli, A.A.A. Latiff, M.B. Ridzuan, H. Awang, A.A. Halim, Micro-peat as a potential low-cost adsorbent material for COD and NH3-N removal, Defect Diffus. Forum, 382(12) (2018) 297–301.
  5. A.A. Oyekanmi, A.A.A. Latiff, Z. Daud, B. Ridzuan, N.F.M. Daud, Remediation of raw wastewater of palm oil mill using activated cow bone powder through batch adsorption, Key Eng. Mater. 705 (2016) 380–384.
  6. A.A.A. Latiff, A.A. Oyekanmi, Z. Daud, M.B. Ridzuan, N.F.M. Daud, Batch adsorption of manganese from palm oil mill effluent onto activated cow bone powder, ARPN J. Eng. Appl Sci., 11(4) (2016) 2627–2631.
  7. R. Davarnejad, S. Arpanahzadeh, A. Karimi, M. Pirhadi, Landfill leachate treatment using an electrochemical technique: an optimized process, Int. J. Eng. Trans. A: Basics, 28(1) (2015) 7–15.
  8. S. Renou, J.G. Givaudan, S. Poulain, F. Dirassouyan, P. Moulin, Landfill leachate treatment: review and opportunity, J. Hazard. Mater., 150 (2008) 468–493.
  9. H.A. Aziz, A.A. Foul, M.H. Isa, Y.T. Hung, Physico-chemical treatment of anaerobic landfill leachate using activated carbon and zeolite-batch and column studies, Int. J. Env. Wast. Manage., 5(3–4) (2010) 269–285.
  10. O.A. Adeleke, M.R. Saphira, Z. Daud, N. Ismail, A. Ahsan, N.A. Ab Aziz, M. Hijab, Locally Derived Activated Carbon From Domestic, Agricultural and Industrial Wastes for the Treatment of Palm Oil Mill Effluent. In Nanotechnology in Water and Wastewater Treatment. Elsevier, 2019, pp. 35–62.
  11. A.A. Halim, H.A. Aziz, M.A. Johari, K.S. Ariffin, M.J. Bashir, Semi-aerobic landfill leachate treatment using carbon–minerals composite adsorbent, Environ. Eng. Sci., 29(5) (2012) 306–312.
  12. P. Champagne, M. Khalekuzzaman, A semi-passive peat biofilter system for the treatment of landfill leachate, J. Water Sustain., 4(2) (2014) 63–76.
  13. M. Heavey, Low-cost treatment of landfill leachate using peat, Waste Manage., 23(5) (2003) 447–454.
  14. B.B.K. Huat, Organic and peat soil engineering, Malaysia, Universiti Putra Malaysia Press, 2004.
  15. A. Zainorabidin, S.H. Mansor, Investigation on the shear strength characteristic at Malaysian peat, ARPN J. Eng. Appl. Sci. 11(3) (2016) 1600–1606.
  16. S.J. Allen, G. McKay, J.F. Porter, Adsorption isotherm models for basic dye adsorption by peat in single and binary component systems, J. Colloid Interface Sci., 280(2) (2004) 322–333.
  17. J. Li, X. Wang, G. Zhao, C. Chen, Z. Chai, A. Alsaedi, X. Wang, Metal–organic framework-based materials: superior adsorbents for the capture of toxic and radioactive metal ions, Chem. Soc. Rev., 47(7) (2018) 2322–2356.
  18. P. Gu, S. Zhang, X. Li, X. Wang, T. Wen, R. Jehan, X. Wang, Recent advances in layered double hydroxide-based nanomaterials for the removal of radionuclides from aqueous solution, Environ. Pollut., 240 (2018) 493–505.
  19. G. Zhao, X. Huang, Z. Tang, Q. Huang, F. Niu, X. Wang, Polymer-based nanocomposites for heavy metal ions removal from aqueous solution: a review, Polym. Chem., 9(26) (2018) 3562–3582.
  20. H. Wang, Z. Zeng, P. Xu, L. Li, G. Zeng, R. Xiao, D. Jiang, Recent progress in covalent organic framework thin films: fabrications, applications and perspectives, Chem. Soc. Rev., 48(2) (2019) 488–516.
  21. T. Xiong, X. Yuan, X. Chen, Z. Wu, H. Wang, L. Leng, G. Zeng, Insight into highly efficient removal of cadmium and methylene blue by eco-friendly magnesium silicate-hydrothermal carbon composite, Appl. Surf. Sci., 427 (2018) 1107–1117.
  22. Y. Kalmykova, N. Moona, A.M. Strömvall, K. Björklund, Sorption and degradation of petroleum hydrocarbons, polycyclic aromatic hydrocarbons, alkylphenols, bisphenol A and phthalates in landfill leachate using sand, activated carbon and peat filters, Water Res., 56 (2014) 246–257.
  23. Z. Daud, M.H. Abubakar, A.A. Kadir, A.A.A. Latiff, H. Awang, A.A. Halim, A. Marto, Adsorption studies of leachate on cockle shells, Int. J. Geomate, 12(29) (2017) 46–52.
  24. W.E. Federation, Standard Methods for the Examination of Water and Wastewater, Washington, DC, USA, American Public Health Association (APHA), (2012).
  25. M.A. Rosli, Z. Daud, A.A.A. Latiff, S.E.A. Rahman, A.A. Oyekanmi, A. Zainorabidin, H. Awang, A.A. Halim, The effectiveness of peat-ac composite adsorbent in removing color and fe from landfill leachate, Int. J. Integ. Eng., 9(3) (2017) 35–38.
  26. R. Mohamed, A. Al-Gheethi, A. Abdulrahman, M.S. Bin Sainudin, S.A. Bakar, A.H.M. Kassim, Optimization of ceramic waste filter for bathroom greywater treatment using central composite design (CCD), J. Environ. Chem. Eng., 6(2) (2018) 1578–1588.
  27. H. Radnia, A.A. Ghoreyshi, H. Younesi, M. Masomi, K. Pirzadeh, Adsorption of Fe(II) from aqueous phase by chitosan: application of physical models and artificial neural network for prediction of breakthrough, Int. J. Eng. Trans. B: Appl., 26(8) (2013) 845–858.
  28. M. Masomi, A. Ghoreyshi, G. Najafpour, A. Mohamed, Adsorption of phenolic compounds onto the activated carbon synthesized from pulp and paper mill sludge: Equilibrium isotherm, kinetics, thermodynamics and mechanism studies, Int. J. Eng. Trans. A: Basics, 27(10) (2014) 1485–1494.
  29. Z. Daud, M.H. Abubakar, A.A. Kadir, A.A.A. Latiff, H. Awang, A.A. Halim, A. Marto, Batch study on COD and ammonia nitrogen removal using granular activated carbon and cockle shells, Int. J. Eng. Trans. A: Basics, 30(7) (2015) 937–944.
  30. B. Meroufel, O. Benali, M. Benyahia, Y. Benmoussa, M.A. Zenasni, Adsorptive removal of anionic dye from aqueous solutions by Algerian kaolin: Characteristics, isotherm, kinetic and thermodynamic studies, J. Mater. Env. Sci., 4(3) (2013) 482–491.
  31. A.A. Inyinbor, F.A. Adekola, G.A. Olatunji, Kinetics, isotherms and thermodynamic modeling of liquid phase adsorption of Rhodamine B dye onto Raphia hookerie fruit epicarp, Water Resour. Ind., 15 (2016) 14–27.
  32. A.S. Bhatt, P.L. Sakaria, M. Vasudevan, R.R. Pawar, N. Sudheesh, H.C. Bajaj, H.M. Mody, Adsorption of an anionic dye from aqueous medium by organoclays: equilibrium modeling, kinetic and thermodynamic exploration, RSC Adv., 2(3) (2012) 8663–8671.
  33. A. Menichi, N. Chagraoui, Nadi, A. Moussaoui, A. Tairi, O. Ait Sidi Ahmed, L. Loubbidi, L. Bourja, Kinetic and thermodynamic studies on adsorption of copper (II) ions onto the olive pomace lignocellulosic in the region of Beni Mellal (MOROCCO), J. Mater. Env. Sci., 6(12) (2015) 3443–3451.
  34. A.A. Halim, M.T. Latif, A. Ithnin, Ammonia removal from aqueous solution using organic acid modified activated carbon, World Appl. Sci. J., 24(1) (2013) 1–6.
  35. R. Bhaumik, N.K. Mondal, B. Das, C.K. Pal, C. Das, A. Baneerjee, J.K. Datta, Eggshell powder as an adsorbent for removal of fluoride from aqueous solution: equilibrium, kinetic and thermodynamic studies, E- J. Chem., 9(3) (2012) 1457–1480.