References

  1. S.R.R. Esteves, S.I. Wilcox, C.O. Neill, F.R. Hawkes, D.L. Hawkes, On-line monitoring of anaerobic-aerobic bio treatment of a simulated textile effluent for selection of control parameters, Environmental Technology, 21 (2000) 927–936.
  2. M.T. Vives, M.D. Balaguer, S. Garcia, R. Garcia, J. Colprim, Textile dyeing wastewater treatment in a sequencing batch reactor system J. Environ. Sci. Health. Part A Toxic/Hazard. Subst. Environ. Eng., 38 (2003) 2089–2099.
  3. A. Al-Kdasi, A. Idris, K. Saed, C.T. Guanl, Treatment of textile wastewater by advanced oxidation processes—a review, Global Nest Int. J., 6 (2004) 222–230.
  4. M. Hanafy, O.A. Elbary, Effluent Wastewater Treatment for a Resin-Based Paints Plant (Case Study), Ninth International Water Technology Conference, IWTC9, 2005, pp. 85–103.
  5. R. Baskar, K.M. Meera Sheriffa Begum, S. Sundaram, Characterization and reuse of textile effluent treatment plant waste sludge in clay bricks, J. Univ. Chem. Technol. Metall., 41 (2006) 473–478.
  6. T.U. Yifeng, A sensitive dissolved oxygen sensor based on a charge-transfer complex modified electrode, Sens. Transducers Magazine (S&T e-Digest), 64 (2006) 483–489.
  7. N. Lina, A. Ghunmi, A.I. Jamrah, Biological treatment of textile wastewater using sequencing batch reactor technology, Environ. Model. Assess., 11 (2006) 333–343.
  8. P.K. Tewari, V.S. Batra, M. Balakrishnan, Water management initiatives in sugarcane based molasses based distilleries in India, Resour. Conserv. Recycl., 52 (2007) 351–367.
  9. M. Sandip, A. Kaustav, H. Gopinath, Optimization of ranitidine hydrochloride removal from simulated pharmaceutical waste by activated charcoal from mung bean husk using response surface methodology and artificial neural network, Desal. Water Treat., 57 (2016) 18366–18378.
  10. K. Bahadr Körbahti, N. Akta, T. Abdurrahman, Optimization of electrochemical treatment of industrial paint wastewater with response surface methodology, J. Hazard. Mater., 148 (2007) 83–90.
  11. B. Ramesh Babu, A.K. Parande, S. Raghu, T. Prem Kumar, Textile technology, J. Cotton Sci., 11 (2007) 141–153.
  12. C. Fersi, M. Dhahbi, Treatment of textile plant effluent by ultrafiltration and/or nanofiltration for water reuse, Bioresour. Technol., 222 (2008) 263–271.
  13. R. Sowmeyan, G. Swaminathan, Effluent treatment process in molasses based distillery industries—a review, J. Hazard. Mater., 152 (2008) 453–462.
  14. Y. Satyavali, M. Balakrishnan, Waste water treatment in molasses-based alcohol distilleries for COD and color removal—a review, J. Environ. Manage., 86 (2008) 481–497.
  15. A.M. Saravanan, C. Karthikeyan, T. Hariharan, International Conference on Environmental Research and Technology, ICERT, 2008.
  16. A. Kannan, R.K. Upreti, Influence of distillery effluent on germination and growth of mung bean (Vigna ratiata) seeds, J. Hazard. Mater., 153 (2008) 609–615.
  17. M.R. Samarghandi, D. Nemattollahi, G. Asgari, R. Shokoohi, A. Ansari, A. Dargahi, Electrochemical process for 24-D herbicide removal from aqueous solutions using stainless steel 316 and graphite anodes: optimization using response surface methodology, Sep. Sci. Technol., 54 (2019) 478–493.
  18. D.S. Badkar, K.S. Pandey, G. Buvanashekaran, Development of RSM- and ANN-based models to predict and analyze the effects of process parameters of laser-hardened commercially pure titanium on heat input and tensile strength, Int. J. Adv. Manuf. Technol., 65 (2013) 1319–1338.
  19. D.N. Thoai, C. Tongurai, K. Prasertsit, A. Kumar, Predictive capability evaluation of RSM and ANN in modeling and optimization of biodiesel production from palm (Elaeisguineensis) oil, International J. Appl. Eng. Res., 13 (2018) 7529–7540.
  20. C.E. Onu, J.T. Nwabanne, P.E. Ohale, C.O. Asadu, Comparative analysis of RSM, ANN and ANFIS and the mechanistic modeling in Eriochrome black-T dye adsorption using modified clay, S. Afr. J. Chem. Eng., 36 (2021) 24–42.
  21. M. Heidari, M. Vosoughi, H. Sadeghi, A. Dargahi, S.A. Mokhtari, Degradation of diazinon from aqueous solutions by electro-Fenton process: effect of operating parameters, intermediate identification, degradation pathway, and optimization using response surface methodology RSM, Sep. Sci. Technol., 56 (2021) 2287–2299.
  22. J. Sumathi, M. Arulmozhi, S. Sundaram, RSM and ANN modeling of dissolved oxygen response using paper industry effluent in semi batch fermenter, Desal. Water Treat., 188 (2020) 140–150.
  23. N. Saravani, M. Arulmozhi, Influence of various process parameters on the biosorptive foam separation performance of o-cresol onto Bacillus cereus and cetyltrimethyl ammonium bromide, J. Taiwan Inst. Chem. Eng., 67 (2016) 263–270.
  24. A. Almasi, M. Mahmoudi, M. Mohammadi, A. Dargahi, H. Biglari, Optimizing biological treatment of petroleum industry wastewater in a facultative stabilization pond for simultaneous removal of carbon and phenol, Toxin Rev., 40 (2021) 189–197.
  25. M.R. Samarghandi, A. Dargahi, A. Shabanloo, H.Z. Nasab, Y. Vaziri, A. Ansari, Electrochemical degradation of methylene blue dye using a graphite doped PbO2 anode: optimization of operational parameters, degradation pathway and improving the biodegradability of textile wastewater, Arabian J. Chem., 13 (2020) 6847–6864.
  26. M.R. Samarghandi, A. Ansari, A. Dargahi, A. Shabanloo, D. Nematollahi, M. Khazaei, H.Z. Nasab, Y. Vaziri, Enhanced electrocatalytic degradation of bisphenol A by graphite/β-PbO2 anode in a three-dimensional electrochemical reactor, J. Environ. Chem. Eng., 9 (2021) 106072, doi: 10.1016/j.jece.2021.106072.
  27. A. Dargahi, K. Hasani, S. Ahmad Mokhtari, M. Vosoughi, M. Moradi, Y. Vaziri, Highly effective degradation of 2,4-dichlorophenoxyacetic acid herbicide in a three-dimensional sono-electro-Fenton (3D/SEF) system using powder activated carbon (PAC)/Fe3O4 as magnetic particle electrode, J. Environ. Chem. Eng., 9 (2021) 105889, doi: 10.1016/j.jece.2021.105889.
  28. S. Afshin, Y. Rashtbari, M. Vosough, A. Dargahi, M. Fazlzadeh, A. Behzad, M. Yousefi, Application of Box–Behnken design for optimizing parameters of hexavalent chromium removal from aqueous solutions using Fe3O4 loaded on activated carbon prepared from alga: kinetics and equilibrium study, J. Water Process Eng., 42 (2021) 102113, doi: 10.1016/j.jwpe.2021.102113.
  29. K. Hasani, S. Hosseini, H. Gholizadeh, A. Dargahi, M. Vosoughi, Enhancing the efficiency of electrochemical, Fenton, and electro- Fenton processes using SS316 and SS316/β-PbO2 anodes to remove oxytetracycline antibiotic from aquatic environments, Biomass Convers. Biorefin., 150 (2021) 1–18.
  30. A. Dargahi, M. Moradi, R. Marafat, M. Vosoughi, S.A. Mokhtari, K. Hasani, S.M. Asl, Applications of advanced oxidation processes (electro-Fenton and sono-electro-Fenton) for degradation of diazinon insecticide from aqueous solutions: optimization and modeling using RSM-CCD, influencing factors, evaluation of toxicity, and degradation pathway, Biomass Convers. Biorefin., 205 (2021) 1–18.
  31. A. Dargahi, A. Ansari, D. Nematollahi, G. Asgari, R. Shokoohi, M.R. Samarghandi, Parameter optimization and degradation mechanism for electrocatalytic degradation of 2,4-diclorophenoxyacetic acid (2,4-D) herbicide by lead dioxide electrodes, RSC Adv., 9 (2019) 5064–5075.
  32. A. Dargahia, M. Mohammadi, F. Amirianc, A. Karami, A. Almasi, Phenol removal from oil refinery wastewater using anaerobic stabilization pond modeling and process optimization using response surface methodology (RSM), Desal. Water Treat., 87 (2017) 199–208.
  33. K. Hasania, A. Peyghamia, A. Moharramia, M. Vosoughib, A. Dargahi, The efficacy of sono-electro-Fenton process for removal of cefixime antibiotic from aqueous solutions by response surface methodology (RSM) and evaluation of toxicity of effluent by microorganisms, Arabian J. Chem., 13 (2020) 6122–6139.
  34. P. Arulmathi, G. Elangovan, A.F. Begum, Optimization of electrochemical treatment process conditions for distillery effluent using response surface methodology, The Sci. World J., 2015 (2015) 581463, doi:10.1155/2015/581463.
  35. N. Barrak, R. Mannai, M. Zaidi, M. Kechida, A.N. Helal, Experimental design approach with response surface methodology for removal of indigo dye by electrocoagulation, J. Geosci. Environ. Prot., 4 (2016) 50–61.
  36. S. Reza, A.J. Jafari, A. Dargahia, T. Zahra, Study of the efficiency of bio-filter and activated sludge (BF/AS) combined process in phenol removal from aqueous solution: determination of removing model according to response surface methodology (RSM), Desal. Water Treat., 77 (2017) 256–263.
  37. V. Elateroma, R.M. Sillanpaa, M.C.M. Bolte, V. Jurate, Optimization of pulp mill effluent treatment with catalytic adsorbent using orthogonal second-order (Box–Behnken) experimental design, J. Environ. Monit., 10 (2008) 1304–1312.
  38. G. Shu, C. Dai, H. Chen, X. Wang, Application of Box–Behnken design in optimization for crude polysaccharides from fruits of Tribulus terristris L, J. Chem. Pharm. Res., 5 (2013) 342–350.
  39. A. Azizi, A. Dargahi, A. Almasi, Biological removal of diazinon in a moving bed biofilm reactor – process optimization with central composite design, Toxin Rev., 40 (2020) 1–11.
  40. M.M. Mahmoudi, R. Khaghani, A. Dargahi, G.M. Tehrani, Electrochemical degradation of diazinon from aqueous media using graphite anode: effect of parameters, mineralisation, reaction kinetic, degradation pathway and optimisation using central composite design, Int. J. Environ. Anal. Chem., 102 (2022) 1709–1734.
  41. P. Qiu, M. Cui, K. Kang, B. Park, Y. Son, E. Khim, M. Jang, J. Khim, Application of Box–Behnken design with response surface methodology for modeling and optimizing ultrasonic oxidation of arsenite with H2O2, Cent. Eur. J. Chem, 12 (2014) 164–172.
  42. S. Alizadeh, H. Sadeghi, M. Vosoughi, A. Dargahi, S.A. Mokhtari, Removal of humic acid from aqueous media using sonopersulphate process: optimization and modelling with response surface methodology (RSM), Int. J. Environ. Anal. Chem., (2020) 1–14, doi: 10.1080/03067319.2020.1772777.
  43. K. Thirugnanasambandham, V. Sivakumar, J.P. Maran, S. Kandasamy, Application of response surface methodology for optimization of chemical coagulation process to treat rice mill wastewater, Environ. Sci., ESAHJ, 9 (2014) 237–247.
  44. Y. Yang, Z. Zhou, C. Lu, Y. Chen, H. Ge, L. Wang, C. Cheng, Treatment of chemical cleaning wastewater and cost optimization by response surface methodology coupled nonlinear programming, J. Environ. Manage., 198 (2017) 12–20.
  45. A. Dargahi, M.R. Samarghandi, A. Shabanloo, M.M. Mahmoudi, H.Z. Nasab, Statistical modeling of phenolic compounds adsorption onto low-cost adsorbent prepared from Aloe vera leaves wastes using CCD-RSM optimization: effect of parameters, isotherm, and kinetic studies, Biomass Convers. Biorefin., 311 (2021) 1–15.