References

  1. R. Cheng, M. Kang, S. Zhuang, S. Wang, X. Zheng, X. Pan, L. Shi, J. Wang, Removal of bacteriophage F2 in water by Fe/Ni nanoparticles: optimization of Fe/Ni ratio and influencing factors, Sci. Total Environ., 649 (2019) 995–1003.
  2. O.S. Bello, B.M. Lasisi, O.J. Adigun, V. Ephraim, Scavenging Rhodamine B dye using Moringa oleifera seed pod, Chem. Speciation Bioavailability, 29 (2017) 120–134.
  3. A.N. Jones, J. Bridgeman, Disinfection ability of hibiscus seeds in water treatment, Proc. Inst. Civ. Eng. Water Manage., 171 (2018) 216–222.
  4. B. Xiong, B. Piechowicz, Z. Wang, R. Marinaro, E. Clement, T. Carlin, A. Uliana, M. Kumar, S.B. Velegol, Moringa oleifera f-sand filters for sustainable water purification, Environ. Sci. Technol. Lett., 5 (2018) 38–42.
  5. F.O. Ajibade, J.R. Adewumi, A.M. Oguntuase, Sustainable approach to wastewater management in the Federal University of Technology, Akure, Nigeria, Niger. J. Technol. Res., 9 (2014) 27‑36.
  6. S. Ali, S.A.U. Rehman, H.Y. Luan, M.U. Farid, H. Huang, Challenges and opportunities in functional carbon nanotubes for membrane-based water treatment and desalination, Sci. Total Environ., 646 (2019) 1126–1139.
  7. H. Faghihian, E. Bahramian, Synthesis of polymeric Al-bentonite and polymeric Fe-bentonite for simultaneous removal of turbidity, Sr2+, and Pb2+ from colloidal aqueous wastes, Chem. Eng. Commun., 201 (2014) 1417–1430.
  8. P.K. Gkotsis, E.L. Batsari, E.N. Peleka, A.K. Tolkou, A.I. Zouboulis, Fouling control in a lab-scale MBR system: comparison of several commercially applied coagulants, J. Environ. Manage., 203 (2017) 838–846.
  9. W. Chen, H. Zheng, H. Teng, Y. Wang, Y. Zhang, C. Zhao, Y. Liao, Enhanced coagulation-flocculation performance of ironbased coagulants: effects of PO43– and SiO32– modifiers, PLoS One, 10 (2015) 1–20.
  10. L. Liao, P. Zhang, Preparation and characterization of polyaluminum titanium silicate and its performance in the treatment of low-turbidity water, Processes, 6 (2018) 125.
  11. L. Semerjian, G.M. Ayoub, High pH-magnesium coagulationflocculation in wastewater treatment, Adv. Environ. Res., 7 (2003) 389–403.
  12. J. Keeley, P. Jarvis, S.J. Judd, Coagulant recovery from water treatment residuals: a review of applicable technologies, Crit. Rev. Env. Sci. Technol., 44 (2014) 2675–2719.
  13. F. Ghafar, A. Mohtar, N. Sapawe, N.N. Hadi, M.R.M. Salleh, Chemically modified Moringa oleifera seed husks as low cost adsorbent for removal of copper from aqueous solution, AIP Conference Proceedings, 1901 (2017), https://doi.org/10.1063/1.5010524.
  14. V. Rondeau, H. Jacqmin-Gadda, D. Commenges, C. Helmer, J.F. Dartigues, Aluminum and silica in drinking water and the risk of Alzheimer’s disease or cognitive decline: findings from 15-year follow-up of the PAQUID cohort, Am. J. Epidemiol., 169 (2009) 489–496.
  15. G.A.P. Mateus, M.P. Paludo, T.R.T. dos Santos, M.F. Silva, L. Nishi, M.R. Fagundes-Klen, R.G. Gomes, R. Bergamasco, Obtaining drinking water using a magnetic coagulant composed of magnetite nanoparticles functionalized with Moringa oleifera seed extract, J. Environ. Chem. Eng., 6 (2018) 4084–4092.
  16. F.P. Camacho, V.S. Sousa, R. Bergamasco, M.R. Teixeira, The use of Moringa oleifera as a natural coagulant in surface water treatment, Chem. Eng. J., 313 (2017) 226–237.
  17. A.T.A. Baptista, M.O. Silva, R.G. Gomes, R. Bergamasco, M.F. Vieira, A.M.S. Vieira, Protein fractionation of seeds of Moringa oleifera lam and its application in superficial water treatment, Sep. Purif. Technol., 180 (2017) 114–124.
  18. K.A. Ghebremichael, K.R. Gunaratna, H. Henriksson, H. Brumer, G. Dalhammar, A simple purification and activity assay of the coagulant protein from Moringa oleifera seed, Water Res., 39 (2005) 2338–2344.
  19. M. Daba, Miracle tree: a review on multi-purposes of Moringa oleifera and its implication for climate change mitigation, J. Earth Sci. Clim. Change, 7 (2016) 3–8.
  20. S.D. Young, E.J. Joy, E.L. Ander, M.R. Broadley, D.W. Odee, D.B. Kumssa, Variation in the mineral element concentration of Moringa oleifera Lam. and M. stenopetala (Bak. f.) Cuf.: role in human nutrition, PLoS One, 12 (2017) e0175503.
  21. U.H. Joshi, T.H. Ganatra, P.N. Bhalodiya, T.R. Desai, P.R. Tirgar, Comparative review on harmless herbs with allopathic remedies as anti-hypertensive, Res. J. Pharm. Biol. Chem. Sci. Rev., 3 (2012) 673–687.
  22. A. Ndabigengesere, K.S. Narasiah, B.G. Talbot, Active agents and mechanism of coagulation of turbid waters using Moringa oleifera, Water Res., 29 (1995) 703–710.
  23. E. Arnoldsson, M. Bergman, N. Matsinhe, K. Persson, Assessment of drinking water treatment using Moringa oleifera natural coagulant, J. Water Manage. Resour., 64 (2008) 137–150.
  24. A.P. Meneghel, A.C. Gonçalves, F. Rubio, D.C. Dragunski, C.A. Lindino, L. Strey, Biosorption of cadmium from water using moringa (Moringa oleifera Lam.) seeds, Water Air Soil Pollut., 224 (2013) 1–13.
  25. V. Nand, M. Maata, K. Koshy, S. Sotheeswaran, Water purification using Moringa oleifera and other locally available seeds in Fiji for heavy metal removal, Int. J. Appl. Sci. Technol., 2 (2012) 125–129.
  26. S.M. Mangale, S.G. Chonde, P.D. Raut, Use of Moringa oleifera (drumstick) seed as natural absorbent and an antimicrobial agent for ground water treatment, Res. J. Recent Sci., 1 (2012) 31–40.
  27. J. Sánchez-Martín, J. Beltrán-Heredia, J.A. Peres, Improvement of the flocculation process in water treatment by using Moringa oleifera seeds extract, Braz. J. Chem. Eng., 29 (2012) 495–501.
  28. S.A. Muyibi, L.M. Evison, Optimizing physical parameters affecting coagulation of turbid water with Morninga oleifera seeds, Water Res., 29 (1995) 2689–2695.
  29. N.A. Eman, C.S. Tan, E.A. Makky, N.A. Eman, Impact of Moringa oleifera cake residue application on waste water treatment: a case study, J. Water Resour. Prot., 6 (2014) 677–687.
  30. T.C. Shan, Manaf Al Matar, E. A. Makky, E.N. Ali, The use of Moringa oleifera seed as a natural coagulant for wastewater treatment and heavy metals removal, Appl. Water Sci., 7 (2017) 1369–1376.
  31. A.M.S. Vieira, M.F. Viera, G.F. Silva, Á.A. Araújo, M.R. Fagunles-Klen, M.T. Veit, R. Bergamasco, Use of Moringa oleifera seed as a natural adsorbent for wastewater treatment, Water Air Soil Pollut., 206 (2010) 273–281.
  32. J.O. Ademiluyi, Sludge conditioning with Moringa seed, Environ. Int., 14 (1988) 59–63.
  33. B.S. dos Santos, E. Eyng, P.R.S. Bittencourt, L.M. Frare, É.L. de M. Flores, M.B. Costa, Electro-flocculation associated with the extract of Moringa oleifera Lam as natural coagulant for the removal of reactive blue 5G dye, Acta Sci. Technol., 38 (2016) 483.
  34. C.M.L.L. Teixeira, F.V. Kirsten, P.C.N. Teixeira, Evaluation of Moringa oleifera seed flour as a flocculating agent for potential biodiesel producer microalgae, J. Appl. Phycol., 24 (2012) 557–563.
  35. Z. Shirani, C. Santhosh, J. Iqbal, A. Bhatnagar, Waste Moringa oleifera seed pods as green sorbent for efficient removal of toxic aquatic pollutants, J. Environ. Manage., 227 (2018) 95–106.
  36. I.M. Reck, R.M. Paixão, R. Bergamasco, M.F. Vieira, A.M.S. Vieira, Removal of tartrazine from aqueous solutions using adsorbents based on activated carbon and Moringa oleifera seeds, J. Cleaner Prod., 171 (2018) 85–97.
  37. F.O. Tavares, L.A. de M. Pinto, F. de J. Bassetti, M.F. Vieira, R. Bergamasco, A.M.S. Vieira, Environmentally friendly biosorbents (husks, pods and seeds) from Moringa oleifera for Pb(II) removal from contaminated water, Environ. Technol., 38 (2017) 3145–3155.
  38. M.H. Alhaji, K. Sanaullah, S.F. Lim, A.R.H. Rigit, A. Hamza, A. Khan, Modeling and optimization of photocatalytic treatment of pre-treated palm oil mill effluent (POME) in a UV/TiO2 system using response surface methodology (RSM), Cogent Eng., 4 (2017) 1–17.
  39. I.R. Eri, W. Hadi, A. Slamet, Clarification of pharmaceutical wastewater with Moringa oleifera: optimization through response surface methodology, J. Ecol. Eng., 19 (2018) 126–134.
  40. H.M. de Paula, M.S. de Oliveira Ilha, A.P. Sarmento, L.S. Andrade, Dosage optimization of Moringa oleifera seed and traditional chemical coagulants solutions for concrete plant wastewater treatment, J. Cleaner Prod., 174 (2018) 123–132.
  41. P.A. Bedekar, B.N. Bhalkar, S.M. Patil, S.P. Govindwar, Moringa oleifera-mediated coagulation of textile wastewater and its biodegradation using novel consortium-BBA grown on agricultural waste substratum, Environ. Sci. Pollut. Res., 23 (2016) 20963–20976.
  42. J. Beltrán-Heredia, J. Sánchez-Martín, A. Muñoz-Serrano, J.A. Peres, Towards overcoming TOC increase in wastewater treated with Moringa oleifera seed extract, Chem. Eng. J., 188 (2012) 40–46.
  43. K. Thirugnanasambandham, V. Sivakumar, J.P. Maran, S. Kandasamy, Chitosan based grey wastewater treatment — a statistical design approach, Carbohydr. Polym., 99 (2014) 593–600.
  44. M.I. Aguilar, J. Sáez, M. Llorens, A. Soler, J.F. Ortuño, V. Meseguer, A. Fuentes, Improvement of coagulation-flocculation process using anionic polyacrylamide as coagulant aid, Chemosphere, 58 (2005) 47–56.
  45. A. Delelegn, S. Sahile, A. Husen, Water purification and antibacterial efficacy of Moringa oleifera Lam, Agric. Food Secur., 7 (2018) 1–10.
  46. S.A. Muyibi, M.J.M.M. Noor, T.K. Leong, L. H. Loon, Effects of oil extraction from Moringa oleifera seeds on coagulation of turbid water, Int. J. Environ. Stud., 59 (2002) 243–254.
  47. APHA, Standard Methods for the Examination of Water and Wastewater, 22nd ed., APHA, AWWA, Water Environment Federation, Washington, D.C., 2012.
  48. Z. Salehi, F. Vahabzadeh, M. Sohrabi, S. Fatemi, H.T. Znad, Statistical medium optimization and biodegradative capacity of Ralstonia eutropha toward p-nitrophenol, Biodegradation, 21 (2010) 645–657.
  49. A.S. Dawood, Y. Li, Modeling and optimization of new flocculant dosage and pH for flocculation: removal of pollutants from wastewater, Water (Switzerland), 5 (2013) 342–355.
  50. M.M. Alam, M.Z. Alam, M.S. Jami, M.K. Amosa, M. Iwata, Study of the effects of process parameters on electroforced sedimentation in solid–liquid separation using response surface methodology, Waste Biomass Valorization, 7 (2016) 583–591.
  51. S. Demim, N. Drouiche, A. Aouabed, T. Benayad, O. Dendene-Badache, S. Semsari, Cadmium and nickel: assessment of the physiological effects and heavy metal removal using a response surface approach by L. gibba, Ecol. Eng., 61 (2013) 426–435.
  52. A.O.J. Cramer, D. van Ravenzwaaij, D. Matzke, H. Steingroever, R. Wetzels, R.P.P.P. Grasman, L.J. Waldorp, E. Wagenmakers, Hidden multiplicity in exploratory multiway ANOVA: prevalence and remedies, Psychon. Bull. Rev., 23 (2016) 640–647.
  53. S. Pal, S. Mukherjee, S. Ghosh, Optimum phenol sorption in peat by the response surface method, Environ. Geotech., 1 (2014) 142–151.
  54. K. Thirugnanasambandham, V. Sivakumar, J.P. Maran, Performance evaluation and optimization of electrocoagulation process to treat grey wastewater, Desal. Wat. Treat., 55 (2015) 1703–1711.
  55. L.O.R. Moreti, P.F. Coldebella, F.P. Camacho, M.C. Bongiovani, A.H.P. de Souza, A.K. Gohara, M. Matsushita, M.F. Silva, L. Nishi, R. Bergamasco, Removal of Anabaena flos-aquae in water treatment process using Moringa oleifera and assessment of fatty acid profile of generated sludge, Environ. Technol. (United Kingdom), 37 (2016) 1408–1417.
  56. K.A. Adeniran, T.D. Akpenpuun, B.A. Akinyemi, R.A. Wasiu, Effectiveness of Moringa oleifera seed as a coagulant in domestic wastewater treatment, Afr. J. Sci. Technol. Innovation Dev., 9 (2017) 323–328.
  57. S. Boulaadjoul, H. Zemmouri, Z. Bendjama, N. Drouiche, A novel use of Moringa oleifera seed powder in enhancing the primary treatment of paper mill effluent, Chemosphere, 206 (2018) 142–149.
  58. M.F. Hamoda, I. Al-Ghusain, N.Z. AL-Mutairi, Sand filtration of wastewater for tertiary treatment and water reuse, Desalination, 164 (2004) 203–211.
  59. J. Dotto, M.R. Fagundes-Klen, M.T. Veit, S.M. Palácio, R. Bergamasco, Performance of different coagulants in the coagulation/flocculation process of textile wastewater, J. Cleaner Prod., 208 (2019) 656–665.
  60. M. Dehghani, M.H. Alizadeh, The effects of the natural coagulant Moringa oleifera and alum in wastewater treatment at the Bandar Abbas Oil Refinery, Environ. Health Eng. Manage., 3 (2016) 225–230.
  61. N.T. Hoa, C.T. Hue, Enhanced water treatment by Moringa oleifera seeds extract as the bio-coagulant: role of the extraction method, J. Water Supply Res. Technol. AQUA, 67 (2018) 634–647.
  62. A. Al-gheethi, R. Mohamed, A. Wurochekke, N. Nurulainee, J.M. Rahayu, M.A. Hashim, Efficiency of Moringa oleifera water, MATEC Web of Conferences, EDP Sci., 103 (2017) 1–8.
  63. S.A. Muyibi, M.J.M.M. Noor, D.T. Ong, K.W. Kai, Moringa oleifera seeds as a flocculant in waste sludge treatment, Int. J. Environ. Stud., 58 (2001) 185–195.
  64. M. Mourabet, A. El Rhilassi, H. El Boujaady, M. Bennani-Ziatni, A. Taitai, Use of response surface methodology for optimization of fluoride adsorption in an aqueous solution by Brushite, Arabian J. Chem., 10 (2017) S3292–S3302.
  65. C. Kane, A. Bâ, S.A.M. Mahamat, N. Ayessou, M.K. Mbacké, C.G. Mar Diop, Combination of alum and extracted Moringa oleifera bioactive molecules powder for municipal wastewater treatment, Int. J. Biol. Chem. Sci., 10 (2017) 1918–1929.
  66. T.R.T. dos Santos, M.F. Silva, M.B. de Andrade, M.F. Vieira, R. Bergamasco, Magnetic coagulant based on Moringa oleifera seeds extract and super paramagnetic nanoparticles: optimization of operational conditions and reuse evaluation, Desal. Wat. Treat., 106 (2018) 226–237.