References

  1. N.M. Al-Ananzeh, Treatment of wastewater from a dairy plant by adsorption using synthesized copper oxide nanoparticles: kinetics and isotherms modeling optimization, Water Sci. Technol., 83 (2021) 1591–1604.
  2. D. Karadag, O.E. Köroğlu, B. Ozkaya, M. Cakmakci, A review on anaerobic biofilm reactors for the treatment of dairy industry wastewater, Process Biochem., 50 (2015) 262–271.
  3. B. Mohebrad, Gh. Ghods, A. Rezaee, Dairy wastewater treatment using immobilized bacteria on calcium alginate in a microbial electrochemical system, J. Water Process Eng., 46 (2022) 102609, doi: 10.1016/j.jwpe.2022.102609.
  4. A. Kusmayadi, P.-H. Lu, C.-Y. Huang, Y.K. Leong, H.-W. Yen, J.-S. Chang, Integrating anaerobic digestion and microalgae cultivation for dairy wastewater treatment and potential biochemicals production from the harvested microalgal biomass, Chemosphere, 291 (2022) 133057, doi: 10.1016/j.chemosphere.2021.133057.
  5. N. Amaly, P. Pandey, A.Y. El-Moghazy, G. Sun, P.K. Pandey, Cationic microcrystalline cellulose – montmorillonite composite aerogel for preconcentration of inorganic anions from dairy wastewater, Talanta, 242 (2022) 123281, doi: 10.1016/j.talanta.2022.123281.
  6. E. O’Connor, O.N. Kavanagh, D. Chovan, D.G. Madden, P. Cronin, A.B. Albadarin, G.M. Walker, A. Ryan, Highly selective trace ammonium removal from dairy wastewater streams by aluminosilicate materials, J. Ind. Eng. Chem., 86 (2020) 39–46.
  7. S. Wang, N. Chandrasekhara Rao, R. Qiu, R. Moletta, Performance and kinetic evaluation of anaerobic moving bed biofilm reactor for treating milk permeate from dairy industry, Bioresour. Technol.,100 (2009) 5641–5647.
  8. B.S. Shete, N.P. Shinkar, Dairy industry wastewater sources, characteristics and its effects on environment, Int. J. Curr. Eng. Technol., 3 (2013) 1611–1615.
  9. Y. Shi, T. Liu, S. Chen, X. Quan, Accelerating anaerobic hydrolysis acidification of dairy wastewater in integrated floating-film and activated sludge (IFFAS) by using zero-valent iron (ZVI) composite carriers, Biochem. Eng. J., 177 (2022) 108226, doi: 10.1016/j.bej.2021.108226.
  10. P. Kumar Sharma, K. Rausa, A. Rani, S. Mukherjee, M. Kumar, Biopurification of dairy farm wastewater through hybrid constructed wetland system: groundwater quality and health implications, Environ. Res., 200 (2021) 111426, doi: 10.1016/j.envres.2021.111426.
  11. G.J. Miito, P. Ndegwa, F.P. Alege, S.S. Coulibaly, R. Davis, J. Harrison, A vermifilter system for reducing nutrients and organic-strength of dairy wastewater, Environ. Technol. Innovation, 23 (2021) 101648, doi: 10.1016/j.eti.2021.101648.
  12. W. Finnegan, J. Goggins, E. Clifford, X. Zhan, Global warming potential associated with dairy products in the Republic of Ireland, J. Cleaner Prod., 163 (2017) 262–273.
  13. A. Essekri, A. Hsini, Y. Naciri, M. Laabd, Z. Ajmal, M. El Ouardi, A.A. Addi, A. Albourine, Novel citric
    acid-functionalized brown algae with a high removal efficiency of crystal violet dye from colored wastewaters: insights into equilibrium, adsorption mechanism, and reusability. Int. J. Phytorem., 23 (2021) 336–346.
  14. S. Alimoradi, R. Faraj, A. Torabian, Effects of residual aluminum on hybrid membrane bioreactor
    (coagulation-MBR) performance, treating dairy wastewater, Chem. Eng. Process. Process Intensif., 133 (2018) 320–324.
  15. M. Jabari, Kinetic mass transfer adsorption model for treating dairy wastewater with stone cutting solid waste, Environ. Technol. Innovation, 7 (2017) 21–29.
  16. M. Sharma, M. Joshi, S. Nigam, D.K. Avasthi, R. Adelungc, S.K. Srivastava, Y.K. Mishra, Efficient oil removal from wastewater based on polymer coated superhydrophobic tetrapodal magnetic nanocomposite adsorbent, Appl. Mater. Today, 17 (2019) 130–141.
  17. K. Wang, J. Fu, Sh. Wang, M. Gao, J. Zhu, Z. Wang, Q. Xu, Polydopamine-coated magnetic nanochains as efficient dye adsorbent with good recyclability and magnetic separability, J. Colloid Interface Sci., 516 (2018) 263–273.
  18. L. Yu, G. Hao, J. Gu, S. Zhou, N. Zhang, W. Jiang, Fe3O4/PS magnetic nanoparticles: synthesis, characterization and their application as sorbents of oil from wastewater, J. Magn. Magn. Mater., 394 (2015) 14–21.
  19. H. Heidari, H. Razmi, A. Jouyban, Preparation and characterization of ceramic/carbon coated Fe3O4 magnetic nanoparticle nanocomposite as a solid-phase microextraction adsorbent, J. Chromatogr. A, 1245 (2012) 1–7.
  20. B. Ekka, I. Mieriņa, T. Juhna, K. Kokina, M. Turks, Synergistic effect of activated charcoal and chitosan on treatment of dairy wastewaters, Mater. Today Commun., 31 (2022) 103477, doi: 10.1016/j.mtcomm.2022.103477.
  21. U. Pathak, P. Das, P. Banerjee, S. Datta, Treatment of wastewater from a dairy industry using rice husk as adsorbent: treatment efficiency, isotherm, thermodynamics, and kinetics modelling, Int. J. Thermodyn., 2 (2016) 1–7.
  22. F. Falahati, M. Baghdadi, B. Aminzadeh, Treatment of dairy wastewater by graphene oxide nanoadsorbent and sludge separation, using in situ sludge magnetic impregnation (ISSMI), Pollution, 4 (2018) 29–41.
  23. N. Al-Ananzeh, Treatment of wastewater from a dairy plant by adsorption using synthesized copper oxide nanoparticles: kinetics and isotherms modeling optimization, Water Sci. Technol., 83 (2021) 1591–1604.
  24. M.D.G. de Luna, E.D. Flores, M.C.B. Cenia, M.C. Lu, Removal of copper ions from aqueous solution by adlai shell (Coixlacryma-jobi L.) adsorbents, Bioresour. Technol., 192 (2015) 841–844.
  25. L. Giraldo, J.C. Moreno-Piraján, Study on the adsorption of heavy metal ions from aqueous solution on modified SBA-15, Mater. Res., 16 (2013) 745–754.
  26. S. Baharin, N. Muhamad Sarih, S. Mohamad, S. Shahabuddin, K. Sulaiman, A. Ma’amor, Removal of endocrine disruptor di-(2-ethylhexyl) phthalate by modified polythiophene-coated magnetic nanoparticles: characterization, adsorption isotherm, kinetic study, thermodynamics, RSC Adv., 6 (2016) 44655–44667.
  27. Y. Yao, S. Miao, S. Liu, L.P. Ma, H. Sun, S. Wang, Synthesis, characterization, and adsorption properties of magnetic Fe3O4@graphene nanocomposite, Chem. Eng. J., 184 (2012) 326–332.
  28. C.H. Weng, Y.T. Lin, T.W. Tzeng, Removal of methylene blue from aqueous solution by adsorption onto pineapple leaf powder, J. Hazard. Mater., 170 (2009) 417–424.
  29. H. Qiu, L. Lv, B. Pan, Q.J. Zhang, W. Zhang, Q.X. Zhang, Critical review in adsorption kinetic models, J. Zhejiang Univ. A, 10 (2009) 716–724.
  30. V.V.C. Lima, F.B.D. Nora, E.C. Peres, G.S. Reis, É.C. Lima, M.L.S. Oliveira, G.L. Dotto, Synthesis and characterization of biopolymers functionalized with APTES (3–aminopropyltriethoxysilane) for the adsorption of sunset yellow dye, J. Environ. Chem. Eng., 7 (2019) 103410, doi: 10.1016/j.jece.2019.103410.
  31. G.S. dos Reis, B.G. Cazacliu, C.R. Correa, E. Ovsyannikova, A. Kruse, C.H. Sampaio, E.C. Lima, G.L. Dotto, Adsorption and recovery of phosphate from aqueous solution by the construction and demolition wastes sludge and its potential use as phosphate-based fertiliser, J. Environ. Chem. Eng., 8 (2020) 103605, doi: 10.1016/j.jece.2019.103605.
  32. I.H. Khalaf, F.T. Al-Sudani, A.A. Abdul Razak, T. Aldahri, S. Rohani, Optimization of Congo red dye adsorption from wastewater by a modified commercial zeolite catalyst using response surface modeling approach, Water Sci. Technol., 83 (2021) 1369–1383.
  33. Saruchi, V. Kumar, Adsorption kinetics and isotherms for the removal of Rhodamine B dye and Pb2+ ions from aqueous solutions by a hybrid ion-exchanger, Arabian J. Chem., 12 (2019) 316–329.
  34. H.A. Alalwan, M.M. Mohammed, A.J. Sultan, M.N. Abbas, T.A. Ibrahim, H.A.S. Aljaafari, A.A. Alminshid, Adsorption of methyl green stain from aqueous solutions using nonconventional adsorbent media: isothermal kinetic and thermodynamic studies, Bioresour. Technol., Rep., 14 (2021) 100680, doi: 10.1016/j.biteb.2021.100680.
  35. M. Ponnuchamy, A. Kapoor, B. Pakkirisamy, P. Sivaraman, K. Ramasamy, Optimization, equilibrium, kinetic and thermodynamic studies on adsorptive remediation of phenol onto natural guava leaf powder, Environ. Sci. Pollut. Res., 27 (2020) 20576–20597.
  36. H.L. Chieng, L.B.L. Lim, N. Priyantha, Sorption characteristics of peat from Brunei Darussalam for the removal of Rhodamine B dye from aqueous solution: adsorption isotherms, thermodynamics, kinetics and regeneration studies, Desal. Water Treat., 55 (2015) 664–677.