References
- D. Fatta-Kassinos, S. Meric, A. Nokolau, Pharmaceutical residues
in environmental waters and wastewater: current state
of knowledge and future research, Anal. Bioanal. Chem., 399
(2011) 251–275.
- A. Molino, A. Erto, F. Di Natale, A. Donatelli, P. Iovane, D.
Musmarra, Gasification of granulated scrap tires for the production
of syngas and a low-cost adsorbent for Cd(II) removal
from wastewaters, Ind. Eng. Chem. Res., 52 (34) (2013) 12154–
12160.
- F. Yuan, C. Hu, X. Hu, J. Qu, M. Yang, Degradation of selected
pharmaceuticals in aqueous solution with UV and UV/H2O22,
Water Res., 43 (2009) 1766–1774.
- I. Bortone, A.Di Nardo, M. Di Natale, A. Erto, D. Musmarra,
G.F. Santonastaso, Remediation of an aquifer polluted with
dissolved tetrachloroethylene by an array of wells filled with
activated carbon, J. Hazard. Mater., 260 (2013) 914–920.
- L. Araujo, M.E. Troconis, M.B. Espina, A. Prieto, Persistence of
ibuprofen, ketoprofen, diclofenac and clofibric acid in natural
waters, J. Environ. Human., 1 (2014) 32–38.
- I. Georgaki, E. Vasilaki, N. Katsarakis, A study on the degradation
of carbamazepine and ibuprofen by TiO2 and ZnO photocatalysis
upon UV/visible-light irradiation, Am. J. Anal. Chem.,
5 (2014) 518–534.
- J. Rivera-Utrilla, M. Sánchez-Polo, M.A. Ferro-García, G. Prados-Joya, R. Ocampo-Pérez, Pharmaceuticals as emerging
contaminants and their removal from water. A review, Chemosphere,
93 (2013) 1268–1287.
- M. Capocelli, M. Prisciandaro, A. Lancia, D. Musmarra, Chemical
effect of hydrodynamic cavitation: simulation and experimental
comparison, AIChE J., 60 (2014) 2566–2572.
- M. Capocelli, M. Prisciandaro, A. Lancia, D. Musmarra,
Hydrodynamic cavitation of p-nitrophenol: a theoretical and
experimental insight, Chem. Eng. J., 254 (2014) 1–8.
- D. Karatza, M. Prisciandaro, A. Lancia, D. Musmarra, Reaction
rate of sulfite oxidation catalyzed by cuprous, Chem. Eng. J.,
145(2)(2008) 285–289.
- D. Karatza, M. Prisciandaro, A. Lancia, D. Musmarra, Sulfite
oxidation catalyzed by cobalt ions in flue gas desulfurization
processes, J. Air Waste Manage. Assoc., 60(6) (2010) 675–680.
- M. Prisciandaro, E. Olivieri, A. Lancia, D. Musmarra, Gypsum
precipitation from aqueous solution in the presence of
nitrilotrimethylenephosphonic Acid, Ind. Eng. Chem. Res., 45
(2006) 2070–2076.
- Z. Shu, J.R. Bolton, M. Belosevic, M.G. El Din, Photodegradation
of emerging micropollutants using the medium-pressure
UV/H2O2 advanced oxidation process, Water Res., 47 (2013)
2881–2889.
- S. Chianese, P. Iovino, S. Canzano, M. Prisciandaro, D.
Musmarra, Ibuprofen degradation in aqueous solution
by using UV light, Desal. Water Treat., 57(48-49) (2016) 22878-22886.
- P. Iovino, S. Chianese, S. Canzano, M. Prisciandaro, D.
Musmarra, Degradation of ibuprofen in aqueous solution with
UV light: the effect of reactor volume and pH, Water, Air, Soil
Pollut., 227(6) (2016) 194.
- D. Fatta-Kassinos, M.I. Vasquez, K. Kümmerer, Transformation
products of pharmaceuticals in surface waters and wastewater
formed during photolysis and advanced oxidation processes
– Degradation, elucidation of by products and assessment of
their biological potency, Chemosphere, 85 (2011) 693–709.
- G.V. Buxton, Q.G. Mulazzani, A.B. Ross, Critical review of rate
constants for reactions of transients from metal ions and metal-complexes in aqueous solution, J. Phys. Chem. Ref. Data, 24
(1995) 1055–1349.
- J.L. Packer, J.J. Werner, D.E. Latch, K. McNeill, W.A. Arnold,
Photochemical fate of pharmaceuticals in the environment:
Naproxen, diclofenac, clofibric acid, and ibuprofen, Aquat. Sci.,
65 (2003) 342– 351.
- R.R. Giri, H. Ozaki, S. Ota, R. Takanami, S. Taniguchi, Degradation
of common pharmaceuticals and personal care products
in mixed solutions by advanced oxidation techniques, Int.
J. Environ. Sci. Tech., 7(2)(2010) 251–260.
- M. Bedner, W.A. MacCrehan, Transformation of acetaminophen
by chlorination produces the toxicants 1,4-benzoquinone
and n-acetyl-p-benzoquinone imine, Environ. Sci. Technol., 40
(2006) 516–522.
- K. Lekkerkerker-Teunissen, E.T. Chekol, S.K. Maeng, K. Ghebremichael,
C.J. Houtman, A.R.D. Verliefde, J.Q.J.C. Verberk,
G.L. Amy and J.C. van Dijk, Pharmaceutical removal during
managed aquifer recharge with pre treatment by advanced
oxidation, Water Sci. Technol.: Water Supply, 12(6) (2012) 755–
767.
- O.S. Keen, E.M. Thurman, I. Ferrer, A.D. Dotson, K.G. Linden,
Dimer formation during UV photolysis of diclofenac, Chemosphere,
93 (2013) 1948–1956.
- H. Yu, E. Nie, J. Xu, S. Yan, W.J. Cooper, W. Song, Degradation
of diclofenac by advanced oxidationand reduction processes:
kinetic studies, degradation pathways and toxicity assessments,
Water Res., 47 (2013) 1909–1918.
- D. Kanakaraju, C.A. Motti, B.D. Glass and M. Oelgemoller,
Photolysis and TiO2-catalysed degradation of diclofenac in
surface and drinking water using circulating batch photoreactors,
Environ. Chem., 11 (2014), 51–62.
- K.A.K. Musa, L.A. Eriksson, Photodegradation mechanism of
the common non-steroid anti-inflammatory drug diclofenac
and its carbazole photoproduct, Phys. Chem. Chem. Phys.,
11(22) (2009) 4601–4610.
- A. Agüera, L.A. Pérez Estrada, I. Ferrer, E.M. Thurman, S.
Malato, A.R. Fernández-Alba, Application of time-of-flight
mass spectrometry to the analysis of phototransformation
products of diclofenac in water under natural sunlight, J. Mass
Spectrum, 40 (2005) 908–915.
- P. Calza, V.A. Sakkas, C. Medana, C. Baiocchi, A. Dimou, E.
Pelizzetti, T. Albanis, Photocatalytic degradation study of
diclofenac over aqueous TiO2 suspensions, Appl. Catal. B, 67
(2006) 197–205.