References

  1. A.R. Rahmani, F. Zamani, Y. Tahmasebi Birgani, S. Jorfi, H. Almasi, Activated persulfate by chelating agent Fe/complex for in situ degradation of phenol: intermediate identification and optimization study, Res. Chem. Intermed., 44 (2018) 5501–5519.
  2. A.R. Rahmani, H. Rezaei-Vahidian, H. Almasi, F. Donyagard, Modeling and optimization of ciprofloxacin degradation by hybridized potassium persulfate/zero-valent-zinc/ultrasonic process, Environ. Process., 4 (2017) 563–572.
  3. S. Jorfi, S. Pourfadakari, M. Ahmadi, H. Akbari, Thermally activated persulfate treatment and mineralization of a recalcitrant high TDS petrochemical wastewater, Pol. J. Chem. Technol., 19 (2017) 72–77.
  4. S. Akbari, M.A. Seid, J. FaradmaL, G. Asgari, An investigation of the performance of electrochemical process in simulated phenolic saline wastewater treatment, J. Sabzevar Univ. Med. Sci., 22 (2015) 870–878.
  5. M. Ahmadi, S. Jorfi, R. Kujlu, S. Ghafari, R.D.C. Soltani, N.J. Haghighifard, A novel salt-tolerant bacterial consortium for biodegradation of saline and recalcitrant petrochemical wastewater, J. Environ. Manage., 191 (2017) 198–208.
  6. A.D. Galgale, N.B. Shah, N.G. Shah, Treatment of wastewater containing high concentration of phenol and total dissolved solids in moving bed biofilm reactor, Int. J. Innovative Res. Sci. Eng. Technol., 3 (2014) 10924–10930.
  7. L. Hu, G. Zhang, M. Liu, Q. Wang, P. Wang, Enhanced degradation of Bisphenol A (BPA) by peroxymonosulfate with Co3O4–Bi2O3 catalyst activation: effects of pH, inorganic anions, and water matrix, Chem. Eng. J., 338 (2018) 300–310.
  8. K. Sakai, H. Yamanaka, K. Moriyoshi, T. Ohmoto, T. Ohe, Biodegradation of bisphenol A and related compounds by Sphingomonas sp. strain BP-7 isolated from seawater, Biosci. Biotechnol., Biochem., 71 (2007) 51–57.
  9. Y. Kalmykova, N. Moona, A.-M. Strömvall, K. Björklund, Sorption and degradation of petroleum hydrocarbons, polycyclic aromatic hydrocarbons, alkylphenols, bisphenol A and phthalates in landfill leachate using sand, activated carbon and peat filters, Water Res., 56 (2014) 246–257.
  10. X. Jiang, Y. Wu, P. Wang, H. Li, W. Dong, Degradation of bisphenol A in aqueous solution by persulfate activated with ferrous ion, Environ. Sci. Pollut. Res., 20 (2013) 4947–4953.
  11. R.-H. Peng, A.-S. Xiong, Y. Xue, X.-Y. Fu, F. Gao, W. Zhao, Y.-S. Tian, Q.-H. Yao, Microbial biodegradation of polyaromatic hydrocarbons, FEMS Microbiol. Ecol., 32 (2008) 927–955.
  12. R. Boopathy, C. Bonvillain, Q. Fontenot, M. Kilgen, Biological treatment of low-salinity shrimp aquaculture wastewater using sequencing batch reactor, Int. Biodeterior. Biodegrad., 59 (2007) 16–19.
  13. M. Jemli, F. Karray, F. Feki, S. Loukil, N. Mhiri, F. Aloui, S. Sayadi, Biological treatment of fish processing wastewater: a case study from Sfax City (Southeastern Tunisia), J. Environ. Sci., 30 (2015) 102–112.
  14. S.I. Abou-Elela, M.M. Kamel, M.E. Fawzy, Biological treatment of saline wastewater using a salt-tolerant microorganism, Desalination, 250 (2010) 1–5.
  15. X. Zhuang, Z. Han, Z. Bai, G. Zhuang, H. Shim, Progress in decontamination by halophilic microorganisms in saline wastewater and soil, Environ. Pollut., 158 (2010) 1119–1126.
  16. S. Jorfi, A. Rezaee, G.-A. Mobeh-Ali, N.A. Jaafarzadeh, Application of biosurfactants produced by Pseudomonas aeruginosa SP4 for bioremediation of soils contaminated by pyrene, Soil Sediment Contam. Int. J., 22 (2013) 890–911.
  17. W.G. Weisburg, S.M. Barns, D.A. Pelletier, D.J. Lane, 16S ribosomal DNA amplification for phylogenetic study, J. Bacteriol., 173 (1991) 697–703.
  18. S.-H. Yoon, S.-M. Ha, S. Kwon, J. Lim, Y. Kim, H. Seo, J. Chun, Introducing EzBioCloud: a taxonomically united database of 16S rRNA gene sequences and whole-genome assemblies, Int. J. Syst. Evol. Microbiol., 67 (2017) 1613–1617.
  19. K. Tamura, D. Peterson, N. Peterson, G. Stecher, M. Nei, S. Kumar, MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods, Mol. Biol. Evol., 28 (2011) 2731–2739.
  20. R.C. Martins, A.F. Rossi, R.M. Quinta-Ferreira, Fenton’s oxidation process for phenolic wastewater remediation and biodegradability enhancement, J. Hazard. Mater., 180 (2010) 716–721.
  21. R.C. Martins, R.M. Quinta-Ferreira, Phenolic wastewaters depuration and biodegradability enhancement by ozone over active catalysts, Desalination, 270 (2011) 90–97.
  22. A.A. Telke, D.C. Kalyani, U.U. Jadhav, G.K. Parshetti, S.P. Govindwar, Purification and characterization of an extracellular laccase from a Pseudomonas sp. LBC1 and its application for the removal of bisphenol A, J. Mol. Catal. B: Enzym., 61 (2009) 252–260.
  23. G. Miner, Standard methods for the examination of water and wastewater, J. Am. Water Works Assn., 98 (2006) 130.
  24. X. Qin, J. Tang, D. Li, Q. Zhang, Effect of salinity on the bioremediation of petroleum hydrocarbons in a saline-alkaline soil, Lett. Appl. Microbiol., 55 (2012) 210–217.
  25. J.G. Leahy, R.R. Colwell, Microbial degradation of hydrocarbons in the environment, Microbiol. Rev., 54 (1990) 305–315.
  26. M. Børresen, A. Rike, Effects of nutrient content, moisture content and salinity on mineralization of hexadecane in an Arctic soil, Cold Reg. Sci. Technol., 48 (2007) 129–138.
  27. A. Fouda, Biodegradation of Bisphenol A by some bacterial species and significance role of plasmids, Int. J. Adv. Res. Biol. Sci., 2 (2015) 93–108.
  28. E. Abadie, K. Lamia, T. Berteaux, P. Hess, V. Sechet, E. Masseret, J.L. Rolland, M. Laabir, Effect of nitrate, ammonium, and urea on growth and pinnatoxin G production of Vulcanodinium rugosum, Mar. Drugs, 13 (2015) 5642–5656.
  29. K. Kassim, B.S. Rahal, M.M. Mohamed, Biodegradation of phenol by Pseudomonas aeruginosa isolated from soil contaminated with diesel fuel, Biosci. Res., 14 (2017) 713–720.
  30. J. Rousk, F.K. Elyaagubi, D.L. Jones, D.L. Godbold, Bacterial salt tolerance is unrelated to soil salinity across an arid agroecosystem salinity gradient, Soil Biol. Biochem., 43 (2011) 1881–1887.
  31. S.J.T.Pollard, S.E. Hrudey, P.M. Fedorak, Bioremediation of petroleum- and creosote-contaminated soils: a review of constraints, Waste Manage. Res., 12 (1994) 173–194.
  32. M. Ibrahim, E.A. Makky, N.S. Azmi, J. Ismail, Optimization Parameters for Mycobacteria confluentis Biodegradation of PAHs, MATEC Web of Conferences, Malaysia Technical Universities Conference on Engineering and Technology, EDP Sciences, 2018, pp. 06035.
  33. R. Shokoohi, H. Almasi, M. Sedighi, Z. Daraee, S. Akbari, Application of a moving bed biofilm reactor in removal of ciprofloxacin from real hospital effluent: effect of operational conditions, Avicenna J. Environ. Health Eng., 4 (2017) 19–23.
  34. M.D. Adjei, Y. Ohta, Factors affecting the biodegradation of cyanide by Burkholderia cepacia strain C-3, J. Biosci. Bioeng., 89 (2000) 274–277.
  35. K.-L. Ho, B. Lin, Y.-Y. Chen, D.-J. Lee, Biodegradation of phenol using Corynebacterium sp. DJ1 aerobic granules, Bioresour. Technol., 100 (2009) 5051–5055.
  36. M.H. El-Naas, S.A. Al-Muhtaseb, S. Makhlouf, Biodegradation of phenol by Pseudomonas putida immobilized in polyvinyl alcohol (PVA) gel, J. Hazard. Mater., 164 (2009) 720–725.
  37. H. Atacag Erkurt, Biodegradation and detoxification of BPA: involving laccase and a mediator, CLEAN–Soil Air Water, 43 (2015) 932–939.