References

  1. H. Kamyab, M.F.M. Din, A. Keyvanfar, M.Z.A. Majid, A. Talaiekhozani, A. Shafaghat, Efficiency of microalgae Chlamydomonas on the removal of pollutants from palm oil mill effluent (POME), Energy Procedia, 75 (2015) 2400–2408.
  2. P. Rupani, R. Singh, Review of current palm oil mill effluent (POME) treatment methods: vermicomposting as a sustainable practice, World Appl. Sci. J., 11 (2010) 70–81.
  3. M.A. Hassan, S. Yacob, Y. Shirai, Y.T. Hung, Treatment of Palm Oil Wastewaters, L.K. Wang, Y.T. Hung, H.H. Lo, C. Yapijakis, K.H. Li, Eds., Handbook of Industrial and Hazardous Waste Treatment, Marcel Dekker Inc., New York, NY, 2012, pp. 776–796.
  4. N.M. Huzir, M.M.A. Aziz, S.B. Ismail, N.A.N. Mahmood, N.A. Umor, S.A. Faua’ad Syed Muhammad, Optimization of coagulation-flocculation process for the palm oil mill effluent treatment by using rice husk ash, Ind. Crops Prod., 139 (2019) 111482.
  5. N.F.M. Hussein, C.Z.A. Abidin, F.M. Ridwan, S.N. Sabri, N.A. Razali, Comparative study on palm oil mill effluent (POME) treatment by electro-oxidation using catalyst and electrode, AIP Conf. Proc., Kampar, Malaysia, 2157 (2019) 020018-1–020018-7.
  6. S.S. Mahmod, A.M. Azahar, J.P. Tan, J.M. Jahim, P.M. Abdul, M.S. Mastar, Operation performance of up-flow anaerobic sludge blanket (UASB) bioreactor for biohydrogen production by self-granulated sludge using pre-treated palm oil mill effluent (POME) as carbon source, Renewable Energy, 134 (2019) 1262–1272.
  7. M.T. Chong, Bio-chem POME Tertiary Treatment System, Seminar and Workshop on Palm Oil Mill Effluent Tertiary Treatment Technologies (POMET), Kota Kinabalu, Malaysia, 2010.
  8. N.A. Hadi, Y. Hawari, M. Ngatiman, N.F. Jalani, N.A.A. Wahab, R.M. Halim, Assessment of the effluent polishing plant using a ultrafiltration membrane installed at a palm oil mill, Environ. Prot. Eng., 45 (2019) 155–170.
  9. I.A.W. Tan, N.S. Jamali, W.H.T. Ting, Phytoremediation of palm oil mill effluent (POME) using Eichhornia crassipes, J. Appl. Sci. Process Eng., 6 (2019) 340–354.
  10. Q. Emparan, Y.S. Jye, M.K. Danquah, R. Harun, Cultivation of Nannochloropsis sp. microalgae in treated palm oil mill effluent (TPOME) media for phycoremediation and biomass production: effect of microalgae cells with and without beads, J. Water Process Eng., 33 (2020) 101043.
  11. Q. Emparan, R. Harun, Y.S. Jye, Phycoremediation of treated palm oil mill effluent (TPOME) using Nannochloropsis sp. cells immobilized in the biological sodium alginate beads: effect of TPOME concentration, BioResources, 14 (2019) 9429–9443.
  12. H.B. Hariz, M.S. Takriff, N.H. Mohd Yasin, M.M. Ba-Abbad, N.I.N. Mohd Hakimi, Potential of the microalgae-based integrated wastewater treatment and CO2 fixation system to treat palm oil mill effluent (POME) by indigenous microalgae; Scenedesmus sp. and Chlorella sp., J. Water Process Eng., 32 (2019) 100907.
  13. A.A.H. Khalid, Z. Yaakob, S.R.S. Abdullah, M.S. Takriff, Analysis of the elemental composition and uptake mechanism of Chlorella sorokiniana for nutrient removal in agricultural wastewater under optimized response surface methodology (RSM) conditions, J. Cleaner Prod., 210 (2019) 673–686.
  14. M. Huy, G. Kumar, H.W. Kim, S.H. Kim, Photoautotrophic cultivation of mixed microalgae consortia using various organic waste streams towards remediation and resource recovery, Bioresour. Technol., 247 (2018) 576–581.
  15. Q. Emparan, R. Harun, M.K. Danquah, Role of phycoremediation for nutrient removal from wastewaters: a review, Appl. Ecol. Environ. Res., 17 (2019) 889–915.
  16. A. Ashfaq, A. Buang, A.H. Bhat, Renewable and sustainable bioenergy production from microalgae co-cultivation with palm oil mill effluent (POME): a review, Renewable Sustainable Energy Rev., 65 (2016) 214–234.
  17. L. Barsanti, P. Gualtieri, Algae: Anantomy, Biochemistry, and Biotechnology, 2nd ed., CRC Press Taylor & Francis Group, Boca Raton, FL, 2006.
  18. H. Kamyab, M. Soltani, M. Ponraj, M. Fadhil, M. Din, E.V. Putri, A review on microalgae as potential lipid container with wastewater treating functions, J. Environ. Treat. Tech., 1 (2013) 76–80.
  19. F.A. Lahin, R. Sarbatly, E. Suali, Polishing of POME by Chlorella sp. in suspended and immobilized system, Int. Conf. Chem. Eng. Bioprocess Eng., 36 (2016) 1–10.
  20. O. Komolafe, O. Sharon B. Velasquez, I. Monje-Ramirez, I.Y. Noguez, A.P. Harvey, M.T.O. Ledesma, Biodiesel production from indigenous microalgae grown in wastewater, Bioresour. Technol., 154 (2014) 297–304.
  21. Z. Yaakob, K. Fakir, E. Ali, S.R.S. Abdullah, M.S. Takriff, An Overview of Microalgae as a Wastewater Treatment, Jordan International Energy Conference, Amman, Jordan, 2011, pp. 1–10.
  22. Metcalf and Eddy, Wastewater Engineering: Treatment and Reuse, 4th ed., McGraw-Hill, New York, NY, 1991.
  23. M.M. Bello, M.M. Nourouzi, L.C. Abdullah, T.S.Y. Choong, Y.S. Koay, S. Keshani, POME is treated for removal of color from biologically treated POME in fixed bed column: applying wavelet neural network (WNN), J. Hazard. Mater., 262 (2013) 106–113.
  24. J. Vanags, L. Kunga, K. Dubencovs, V. Galvanauskas, M. Balode, O. Grigs, The effect of shaking, CO2 concentration and light intensity on biomass g of green microalgae Desmodesmus communis, Environ. Res. Eng. Manage., 70 (2015) 73–79.
  25. M.S.A. Hameed, Effect of algal density in bead, bead size and bead concentrations on wastewater nutrient removal, Afr. J. Biotechnol., 6 (2007) 1185–1191.
  26. N.F.Y. Tam, Y.S. Wong, Effect of immobilized microalgae bead concentrations on wastewater nutrient removal, Environ. Pollut., 107 (2000) 145–151.
  27. A. Zainal, Z. Yaakob, M.S. Takriff, R. Rajkumar, J.A. Ghani, Phycoremediation in anaerobically digested palm oil mill effluent using Cyanobacterium, Spirulina platensis, J. Biobased Mater. Bioenergy, 6 (2012) 704–709.
  28. K.F. Kamarudin, Z. Yaakob, R. Rajkumar, M.S. Takriff, S.M. Tasirin, Bioremediation of palm oil mill effluents (POME) using Scenedesmus dimorphus and Chlorella vulgaris, Adv. Sci. Lett., 19 (2013) 2914–2918.
  29. N. Selmani, M.E.S. Mirghani, M.Z. Alam, Study the Growth of Microalgae in Palm Oil Mill Effluent Waste Water, 4th International Conference on Energy and Environment (ICEE), Putrajaya, Malaysia, 2013, pp. 1–4.
  30. S. Elystia, R.S. Muria, L. Anggraini, Removal of COD and total nitrogen from palm oil mill effluent in flatphotobioreactor using immobilised microalgae Chlorella sp., Food Res., 3 (2018) 123–127.
  31. S.K. Singh, A. Bansal, M.K. Jha, A. Dey, An integrated approach to remove Cr(VI) using immobilized Chlorella minutissima grown in nutrient rich sewage wastewater, Bioresour. Technol., 104 (2012) 257–265.
  32. H.B. Hariz, M.S. Takriff, Palm oil mill effluent treatment and CO2 sequestration by using microalgae - Sustainable strategies for environmental protection, Environ. Sci. Pollut. Res., 24 (2017) 20209–20240.
  33. G.T. Ding, Z. Yaakob, M.S. Takriff, J. Salihon, M.S. Abd Rahaman, Biomass production and nutrients removal by a newly-isolated microalgae strain Chlamydomonas sp. in palm oil mill effluent (POME)., Int. J. Hydrogen Energy, 41 (2016) 4888–4895.
  34. H.J. Choi, S.M. Lee, Effects of microalgae on the removal of nutrients from wastewater: various concentrations of Chlorella vulgaris, Environ. Eng. Res., 17 (2012) 3–8.
  35. S. Thongtha, P. Teamkao, N. Boonapatcharoen, S. Tripetchkul, S. Techkarnjararuk, P. Thiravetyan, Phosphorus removal from domestic wastewater by Nelumbo nucifera Gaertn and Cyperus alternifolius L., J. Environ. Manage., 137 (2014) 54–60.
  36. M. Kotteswari, S. Murugesan, R. Ranjith Kumar, Phycoremediation of dairy effluent by using the microalgae Nostoc sp., Int. J. Environ. Res. Dev., 2 (2012) 35–43.
  37. R. Rajkumar, M.S. Takriff, Nutrient removal from anaerobically treated palm oil mill effluent by Spirulina platensis and Scenedesmus dimorphus, Der Pharm. Lett., 7 (2015) 416–421.
  38. M. Min, B. Hu, M.J. Mohr, A. Shi, J. Ding, Y. Sun, Swine manurebased pilot-scale algal biomass production system for fuel production and wastewater treatment—a case study, Appl. Biochem. Biotechnol., 172 (2014) 1390–1406.
  39. A.R.M. Nasir, N. Morad, N. Ismail, W.M.W. Omar, R.M. Razali, Utilization of Chlorella vulgaris in the removal of ammoniacal nitrogen and phosphorus from palm oil mill effluent, J. Ind. Res. Technol., 3 (2013) 6–11.
  40. A. Richmond, Q. Hiang, Handbook of Microalgae Culture: Biotechnology and Applied Phycology, 2nd ed., John Wiley and Sons, USA, 2013.
  41. J. Shen, L. Yuan, J. Zhang, H. Li, Z. Bai, X. Chen, Phosphorus dynamics: from soil to plant, Plant Physiol., 156 (2011) 997–1005.
  42. I. de Godos, V.A. Vargas, S. Blanco, M.C.G. Gonzalez, R. Soto, P.A. Garcia-Encina, A comparative evaluation of microalgae for the degradation of piggery wastewater under photosynthetic oxygenation, Bioresour. Technol., 101 (2010) 5150–5158.