References

  1. S.U. Khan, A. Noor, I.H. Farooqi, GIS application for groundwater management and quality mapping in rural areas of District Agra, India, Int. J. Water Res. Arid Env., 4 (2015) 89–96.
  2. S.U. Khan, I.H. Farooqi, S. Ayub, Studies on application of Fe based binary oxide nanoparticles for treatment of lead (Pb2+) contaminated water-A batch study, Materials Today: Proc., 4 (2017) 9650–9655.
  3. M. Afzal, G. Shabir, I. Hussain, Z.M. Khalid, Paper and board mill effluent treatment with the combined biological-coagulation-filtration pilot scale reactor, Bioresour. Technol., 99 (2008) 7383–7387.
  4. A.H. Khan, I. Khan, N. Ahmad, M. Islam, A. Husain, Reduction of COD of pulp and paper mill effluent using sequencing batch reactor, J. Ind. Res. Technol., 3 (2016) 19–22.
  5. G. Thompson, C. Forster, Bulking in activated sludge plants treating paper mill wastewaters, Water Res., 37 (2003) 2636–2644.
  6. G. Thompson, J. Swain, M. Kay, C.F. Forster, The treatment of pulp and paper mill effluent: A review, Bioresour. Technol., 77 (2001) 275–286.
  7. Y.F. Tsang, F.L. Hua, H. Chua, S.N. Sin, Y.J. Wang, Optimization of biological treatment of paper mill effluent in a sequencing batch reactor, Biochem. Eng. J., 34 (2007) 193–199.
  8. F. Clauss, C. Balavoine, D. Hélaine, G. Martin, Controlling the settling of activated sludge in pulp and paper wastewater treatment plants, Water Sci. Technol., 40 (1999) 223–229.
  9. Ö. Aktaş, F. Çeçen, Bioregeneration of activated carbon: A review, Int. Biodeterior. Biodegrad., 59 (2007) 257–272.
  10. J.P. Wang, Y.Z. Chen, Y. Wang, S.J. Yuan, H.Q. Yu, Optimization of the coagulation-flocculation process for pulp mill wastewater treatment using a combination of uniform design and response surface methodology, Water Res., 45 (2011) 5633–5640.
  11. M.A.A. Razali, Z. Ahmad, M.S.B. Ahmad, A. Ariffin, Treatment of pulp and paper mill wastewater with various molecular weight of poly DADMAC induced flocculation, Chem. Eng. J., 166 (2011) 529–535.
  12. I.H. Farooqi, F. Basheer, Treatment of adsorbable organic halide (AOX) from pulp and paper industry wastewater using aerobic granules in pilot scale SBR, J. Water Process Eng., 19 (2017) 60–66.
  13. M.H. Muhamad, S.R. Sheikh Abdullah, A.B. Mohamad, R. Abdul Rahman, A.A. Hasan Kadhum, Application of response surface methodology (RSM) for optimisation of COD, NH3-N and 2,4-DCP removal from recycled paper wastewater in a pilot-scale granular activated carbon sequencing batch biofilm reactor (GAC-SBBR), J. Environ. Manage., 121 (2013) 179–190.
  14. M. Ali, T.R. Sreekrishnan, Aquatic toxicity from pulp and paper mill effluents: A review, Adv. Environ. Res., 5 (2001) 175–196.
  15. D. Pokhrel, T. Viraraghavan, Treatment of pulp and paper mill wastewater - A review, Sci. Total Environ., 333 (2004) 37–58.
  16. X. Zhu, J. Wang, Y. Jiang, Y. Cheng, F. Chen, S. Ding, Feasibility study on satisfying standard of water pollutants for pulp and paper industry, J. Appl. Mech. Mater., 181 (2012) 637–640.
  17. M. Rodgers, X.-M. Zhan, Moving-medium biofilm reactors, J. Rev. Environ. Sci. Biotechnol., 2 (2003) 213–224.
  18. B.J. Ni, Granulation of activated sludge in a pilot-scale sequencing batch reactor for the treatment of low-strength municipal wastewater, Water Res., 43 (2009) 751–761.
  19. M. Pronk, M.K. de Kreuk, B. de Bruin, P. Kamminga, R. Kleerebezem, M.C.M. van Loosdrecht, Full scale performance of the aerobic granular sludge process for sewage treatment, Water Res., 84 (2015) 207–217.
  20. H. Fernandes, M.K. Jungles, H. Hoffmann, R.V. Antonio, R.H.R. Costa, Full-scale sequencing batch reactor (SBR) for domestic wastewater: Performance and diversity of microbial communities, Bioresource Tech., 132 (2013) 262–268.
  21. W.H.W. Osman, S.R.S. Abdullah, A.B. Mohamad, A.A.H. Kadhum, R.A. Rahman, Simultaneous removal of AOX and COD from real recycled paper wastewater using GAC-SBBR, J. Environ. Manage., 121 (2013) 80–86.
  22. S. Mohajeri, H.A. Aziz, M.H. Isa, M.A. Zahed, M.J.K. Bashir, M. Adlan, Application of the central composite design for condition optimization for semi-aerobic landfill leachate treatment using electrochemical oxidation, Water Sci. Tech., 61 (2010) 1257–1266.
  23. S.U. Khan, D.T. Islam, I.H. Farooqi, S. Ayub, F. Basheer, Hexavalent chromium removal in an electrocoagulation column reactor: process optimisation using CCD, adsorption kinetics and pH modulated sludge formation, Proc. Saf. Env. Prot., 122 (2019) 118–130.
  24. M.O. Saeed, K. Azizli, M.H. Isa, M.J.K. Bashir, Application of CCD in RSM to obtain optimize treatment of POME using Fenton oxidation process, J. Water Pro. Engg., 8 (2015) 7–16.
  25. S. Kavitha, P. Karthika, J. Rajesh Banu, I.T. Yeom, S. Adish Kumar, Enhancement of waste activated sludge reduction potential by amalgamated solar photo-Fenton treatment, Desal. Water Treat., 57 (2016) 13144–13156.
  26. S. Adishkumar, S. Sivajothi, J. Rajesh Banu, Coupled solar photo-Fenton process with aerobic sequential batch reactor for treatment of pharmaceutical wastewater, Desal. Water Treat., 48 (2012) 89–95.
  27. S.U. Khan, R. Zaidi, S.Z. Hassan, I.H. Farooqi, A. Azam, Application of Fe-Cu binary oxide nanoparticles for the removal of hexavalent chromium from aqueous solution, Water Sci. Technol., 74 (2016) 165–175.
  28. M. Faridnasr, B. Ghanbari, A. Sassani, Optimization of the moving-bed biofilm sequencing batch reactor (MBSBR) to control aeration time by kinetic computational modeling: Simulated sugar-industry wastewater treatment, Bioresour. Technol., 208 (2016) 149–160.
  29. J. Kreuter, Nanoparticles and microparticles for drug and vaccine delivery, J. Anatomy, 189 (1996) 503–505.
  30. C. Jayashree, P. Arulazhagan, S. Adish Kumar, S. Kaliappan, I. T. Yeom, J. Rajesh Banu, Bioelectricity generation from coconut husk retting wastewater in fed batch operating microbial fuel cell by phenol degrading microorganism, Biomass Bioenergy, 69 (2014) 249–254.
  31. G. Gopalakrishnan, A. Somanathan, R.B. Jeyakumar, Fenton’s reagent augmented with TiO2 for photocatalytic degradation of pulp and paper mill wastewater by plug flow baffle reactor under visible and sunlight irradiation, Desal. Water Treat., 116 (2018) 195–204.
  32. L.S. Clescerl, A.E. Greenberg, A.D. Eaton, 5220 - Chemical Oxygen Demand (COD),Stand. Methods Exam. Water Wastewater, 1999, pp. 514–519.
  33. Y. Dai, X. Song, C. Gao, S. He, S. Nie, C. Qin, Xylanase-aided chlorine dioxide bleaching of bagasse pulp to reduce AOX formation, J. BioResources, 11 (2016) 3204–3214.
  34. S. Niea, S. Wang, C. Qin, S. Yao, J.F. Ebonka, X. Song, K. Li, Removal of hexenuronic acid by xylanase to reduce adsorbable organic halides formation in chlorine dioxide bleaching of bagasse pulp, Bioresour. Technol., 196 (2015) 413–417.
  35. S. Sathian, M. Rajasimman, G. Radha, V. Shanmugapriya, C. Karthikeyan, Performance of SBR for the treatment of textile dye wastewater: Optimization and kinetic studies, Alexandria Eng. J., 53 (2014) 417–426.
  36. V. Zeynali, J. Sargolzaei, A. Hedayati Moghaddam, Optimization of several hydrodynamic and non-hydrodynamic operating parameters in treatment of synthetic wastewater containing wheat starch in a sequencing batch reactor (SBR) using response surface methodology, Desal. Water Treat., 57(51) (2016) 24240–24256.
  37. C. Thakur, I.D. Mall, V.C. Srivastava, Effect of hydraulic retention time and filling time on simultaneous biodegradation of phenol, resorcinol and catechol in a sequencing batch reactor, Arch. Environ. Prot., 39 (2013) 69–80.
  38. A. Sladka, V. Ottová, The most common fungi in biological treatment plants, Hydrobiologia, 31 (1968) 350–362.
  39. J.W. Deacon, J.W. Deacon, Fungal biology. Blackwell Pub, 2006.
  40. N.S. Deshmukh et al., Upflow anaerobic filter for the degradation of adsorbable organic halides (AOX) from bleach composite wastewater of pulp and paper industry, Chemosphere, 75 (2009) 1179–1185.
  41. W. Rempel, J.E.G. Sikes, Side-by-Side Activated Sludge Pilot Plant Investigations Focusing on Organochlorines, 18 (1992) 5–18.
  42. W. Hailei, Y. Guangli, L. Guosheng, P. Feng, Short communication a new way to cultivate aerobic granules in the process of papermaking wastewater treatment, J. Biochem. Engg., 28 (2006) 99–103.
  43. V.K. Purnima Dhall, Biological approach for the treatment of pulp and paper industry effluent in sequence batch reactor, J. Bioremediation Biodegrad., 05 (2014) 512–518.
  44. R. Framework, F. Insurance, An International Journal, 3 (2013) 71–79.
  45. K.V. Krishna, O. Sarkar, S.V. Mohan, Bioelectrochemical treatment of paper and pulp wastewater in comparison with anaerobic process : Integrating chemical coagulation with simultaneous power production, Bioresour. Technol., 174 (2014) 142–151.
  46. L. Fernandes, M.S. Lucas, M.I. Maldonado, I. Oller, A. Sampaio, Treatment of pulp mill wastewater by Cryptococcus podzolicus and solar photo-Fenton : A case study, Chem. Eng. J., 245 (2014) 158–165.
  47. S.R. Hassan, H.M. Zwain, N.Q. Zaman, I. Dahlan, Recycled paper mill effluent treatment in a modified anaerobic baffled reactor: Start-up and steady-state performance, Environ. Technol., 35 (2014) 294–299.
  48. Y. Bennani, K. Košutić, E. Dražević, M. Rožiić, Wastewater from wood and pulp industry treated by combination of coagulation, adsorption on modified clinoptilolite tuff and membrane processes, Environ. Technol., 33 (2012) 1159–1166.
  49. N. Yusoff, S. Ong, L. Ho, Y. Wong, F.N.M. Saad, W. Khalik, S. Lee, Performance of the hybrid growth sequencing batch reactor (HG-SBR) for biodegradation of phenol under various toxicity conditions, J. Environ. Sci., (2018) 1–9.
  50. S. Shi, C. Wang, S. Fang, M. Jia, X. Li, Removal performance and water quality analysis of paper machine white water in a full-scale wastewater treatment plant, Environ. Technol., 38 (2017) 1443–1451.
  51. F. Basheer, I.H. Farooqi, Biodegradation of m-cresol by aerobic granules in a sequencing batch reactor, Environ. Technol. (United Kingdom), 33 (2012) 1847–1856.
  52. I.H. Farooqi, F. Basheer, P. Tiwari, Biodegradation of methylene blue dye by sequential treatment using anaerobic hybrid reactor and submerged aerobic fixed film bioreactor, J. Inst. Eng. Ser. A, 98 (2017) 397–403.