References

  1. M. Remberger, P. Wiklund, A. Woldegiorgis, T. Viktor, L. Kaj, E. Brorström-Lundén, Anti-inflammatory and Analgesic Drugs in WWTP Influent and Effluent Streams and the Occurrence in the Aquatic Environment, IVL Swedish Environmental Research Institute Report, 2009.
  2. D. Lapworth, N. Baran, M. Stuart, R. Ward, Emerging organic contaminants in groundwater: a review of sources, fate and occurrence, Environ. Pollut., 163 (2012) 287–303.
  3. E. Vulliet, C. Cren-Olive, M.-F. Grenier-Loustalot, Occurrence of pharmaceuticals and hormones in drinking water treated from surface waters, Environ. Chem. Lett., 9 (2011) 103–114.
  4. B. Lopez, P. Ollivier, A. Togola, N. Baran, J.-P. Ghestem, Screening of French groundwater for regulated and emerging contaminants, Sci. Total Environ., 518 (2015) 562–573.
  5. V. Yargeau, A. Lopata, C. Metcalfe, Pharmaceuticals in the Yamaska River, Quebec, Canada, Water Qual. Res. J. Can., 42 (2007) 231–239.
  6. N. Gottschall, E. Topp, C. Metcalfe, M. Edwards, M. Payne, S. Kleywegt, P. Russell, D. Lapen, Pharmaceutical and personal care products in groundwater, subsurface drainage, soil, and wheat grain, following a high single application of municipal biosolids to a field, Chemosphere, 87 (2012) 194–203.
  7. E. Topp, S.C. Monteiro, A. Beck, B.B. Coelho, A.B. Boxall, P.W. Duenk, S. Kleywegt, D.R. Lapen, M. Payne, L. Sabourin, Runoff of pharmaceuticals and personal care products following application of biosolids to an agricultural field, Sci. Total Environ., 396 (2008) 52–59.
  8. M. Skoumal, P.L. Cabot, F. Centellas, C. Arias, R.M. Rodriguez, J.A. Garrido, E. Brillas, Mineralization of paracetamol by ozonation catalyzed with Fe2+, Cu2+ and UVA light, Appl. Catal., B, 66 (2006) 228–240.
  9. A.J. Al-Rajab, L. Sabourin, R. Chapman, D.R. Lapen, E. Topp, Fate of the antiretroviral drug tenofovir in agricultural soil, Sci. Total Environ., 408 (2010) 5559–5564.
  10. L. Sabourin, A.J. Al‐Rajab, R. Chapman, D.R. Lapen, E. Topp, Fate of the antifungal drug clotrimazole in agricultural soil, Environ. Toxicol. Chem., 30 (2011) 582–587.
  11. A.J. Al-Rajab, L. Sabourin, D.R. Lapen, E. Topp, Dissipation of triclosan, triclocarban, carbamazepine and naproxen in agricultural soil following surface or sub-surface application of dewatered municipal biosolids, Sci. Total Environ., 512 (2015) 480–488.
  12. T.A. Ternes, Occurrence of drugs in German sewage treatment plants and rivers, Water Res., 32 (1998) 3245–3260.
  13. A. Togola, H. Budzinski, Multi-residue analysis of pharmaceutical compounds in aqueous samples, J. Chromatogr. A, 1177 (2008) 150–158.
  14. A. Boxall, Report on environmental impact and health effects of PPs, Knowledge and Need Assessment on Pharmaceutical Products in Environmental Waters, D4 2, 2008, pp. 1–28.
  15. L. Santos-Juanes Jorda, M.M. Ballesteros Martin, E.O. Gomez, A.C. Reina, I.M.R. Sanchez, J.L.C. Lopez, J.A.S. Perez, Economic evaluation of the photo-Fenton process. mineralization level and reaction time: the keys for increasing plant efficiency, J. Hazard. Mater., 186 (2011) 1924–1929.
  16. R. Andreozzi, V. Caprio, R. Marotta, D. Vogna, Paracetamol oxidation from aqueous solutions by means of ozonation and H2O2/UV system, Water Res., 37 (2003) 993–1004.
  17. E. Brillas, I. Sires, C. Arias, P.L. Cabot, F. Centellas, R.M. Rodriguez, J.A. Garrido, Mineralization of paracetamol in aqueous medium by anodic oxidation with a boron-doped diamond electrode, Chemosphere, 58 (2005) 399–406.
  18. R.M. Briones, M.D.G. de Luna, M.C. Lu, Optimization of acetaminophen degradation by fluidized-bed Fenton process, Desal. Wat. Treat., 45 (2012) 100–111.
  19. L. Yang, L.E. Yu, M.B. Ray, Photocatalytic oxidation of paracetamol: dominant reactants, intermediates, and reaction mechanisms, Environ. Sci. Technol., 43 (2009) 460–465.
  20. E. Moctezuma, E. Leyva, C.A. Aguilar, R.A. Luna, C. Montalvo, Photocatalytic degradation of paracetamol: intermediates and total reaction mechanism, J. Hazard. Mater., 243 (2012) 130–138.
  21. D. Vogna, R. Marotta, A. Napolitano, M. d’Ischia, Advanced oxidation chemistry of paracetamol. UV/H2O2-induced hydroxylation/degradation pathways and 15N-aided inventory of nitrogenous breakdown products, J. Org. Chem., 67 (2002) 6143–6151.
  22. I. Panorel, S. Preis, I. Kornev, H. Hatakka, M. Louhi-Kultanen, Oxidation of aqueous paracetamol by pulsed corona discharge, Ozone Sci. Eng., 35 (2013) 116–124.
  23. R. Ono, T. Oda, Measurement of hydroxyl radicals in pulsed corona discharge, J. Electrostat., 55 (2002) 333–342.
  24. J. Kornev, N. Yavorovsky, S. Preis, M. Khaskelberg, U. Isaev, B.N. Chen, Generation of active oxidant species by pulsed dielectric barrier discharge in water-air mixtures, Ozone Sci. Eng., 28 (2006) 207–215.
  25. I. Panorel, S. Preis, I. Kornev, H. Hatakka, M. Louhi-Kultanen, Oxidation of aqueous pharmaceuticals by pulsed corona discharge, Environ. Technol., 34 (2013) 923–930.
  26. H. Lee, D.-H. Lee, Y.-H. Song, W.C. Choi, Y.-K. Park, D.H. Kim, Synergistic effect of non-thermal plasma–catalysis hybrid system on methane complete oxidation over Pd-based catalysts, Chem. Eng. J., 259 (2015) 761–770.
  27. S. Ding, W. Chua, T. Bond, Q. Wang, N. Gao, B. Xu, E. Du, Formation and estimated toxicity of trihalomethanes, haloacetonitriles, and haloacetamides from the chlor(am) ination of acetaminophen, J. Hazard. Mater., 341 (2018) 112–119.
  28. M.S. Fram, K. Belitz, Occurrence and concentrations of pharmaceutical compounds in groundwater used for public drinking-water supply in California, Sci. Total Environ., 409 (2011) 3409–3417.
  29. C. Liang, Z. Lan, X. Zhang, Y. Liu, Mechanism for the primary transformation of acetaminophen in a soil/water system, Water Res., 98 (2016) 215–224.
  30. L. Mai, B.V.D. Akker, J. Du, R.S. Kookana, H. Fallowfield, Impact of exogenous organic carbon on the removal of chemicals of concern in the high rate nitrifying trickling filters, J. Environ. Manage., 174 (2016) 7–13.
  31. H. Wang, Y. Liu, J.-Q. Jiang, Reaction kinetics and oxidation product formation in the degradation of acetaminophen by ferrate (VI), Chemosphere, 155 (2016) 583–590.
  32. Y. Liu, Y. Sun, J. Hu, J. He, S. Mei, G. Xue, S. Ognier, Removal of iopromide from an aqueous solution using dielectric barrier discharge, J. Chem. Technol. Biotechnol., 88 (2013) 468–473.
  33. Y. Liu, S. Mei, D. Iya-Sou, S. Cavadias, S. Ognier, Carbamazepine removal from water by dielectric barrier discharge: comparison of ex situ and in situ discharge on water, Chem. Eng. Process., 56 (2012) 10–18.
  34. A.M. Salehi, G. Moussavi, Removal of acetaminophen from the contaminated water using adsorption onto carbon activated with NH4Cl, Desal. Wat. Treat., 57 (2016) 12861–12873.
  35. C.-C. Su, L. M. Bellotindos, A.-T. Chang, M.-C. Lu, Degradation of acetaminophen in an aerated Fenton reactor, J. Taiwan Inst. Chem. Eng., 44 (2013) 310–316.