52. Rasala BA, Mayfield SP (2015) Photosynthetic biomanufacturing in green algae; production
of recombinant proteins for industrial, nutritional, and medical uses. Photosynth Res 123
(3):227–239
53. Chiaiese P, Palomba F, Tatino F, Lanzillo C, Pinto G, Pollio A, Filippone E (2011) Engineered
tobacco and microalgae secreting the fungal laccase POXA1b reduce phenol content in olive
oil mill wastewater. Enzym Microb Technol 49(6–7):540–546
54. Matamoros V, Gutiérrez R, Ferrer I, García J, Bayona JM (2015) Capability of microalgaebased wastewater treatment systems to remove emerging organic contaminants: a pilot-scale
study. J Hazard Mater 288:34–42
55. Norvill ZN, Shilton A, Guieysse B (2016) Emerging contaminant degradation and removal in
algal wastewater treatment ponds: Identifying the research gaps. J Hazard Mater 313:291–309
56. Villar-Navarro E, Baena-Nogueras RM, Paniw M, Perales JA, Lara-Martín PA (2018)
Removal of pharmaceuticals in urban wastewater: high rate algae pond (HRAP) based
technologies as an alternative to activated sludge based processes. Water Res 139:19–29
57. Cajthaml T, Křesinová Z, Svobodová K, Möder M (2009) Biodegradation of endocrinedisrupting compounds and suppression of estrogenic activity by ligninolytic fungi.
Chemosphere 75:745–750
58. Azbar N, Yonar T, Kestioglu K (2004) Comparison of various advanced oxidation processes
and chemical treatment methods for COD and color removal from a polyester and acetate fiber
dyeing effluent. Chemosphere 55(1):35–43
59. Andreozzi R, Campanella L, Fraysse B, Garric J, Gonnella A, Giudice RL, Marotta R, Pinto G,
Pollio A (2004) Effects of advanced oxidation processes (AOPs) on the toxicity of a mixture of
pharmaceuticals. Water Sci Technol 50(5):23–28
60. Contreras S, Rodríguez M, Momani FA, Sans C, Esplugas S (2003) Contribution of the
ozonation pre-treatment to the biodegradation of aqueous solutions of 2,4-dichlorophenol.
Water Res 37(13):3164–3171
61. Esplugas S, Giménez J, Contreras S, Pascual E, Rodríguez M (2002) Comparison of different
advanced oxidation processes for phenol degradation. Water Res 36(4):1034–1042
62. Klavarioti M, Mantzavinos D, Kassinos D (2009) Removal of residual pharmaceuticals from
aqueous systems by advanced oxidation processes. Environ Int 35(2):402–417
63. Ternes TA, Stüber J, Herrmann N, McDowell D, Ried A, Kampmann M, Teiser B (2003)
Ozonation: a tool for removal of pharmaceuticals, contrast media and musk fragrances from
wastewater? Water Res 37(8):1976–1982
64. Rizzo L, Malato S, Antakyali D, Beretsou VG, Đolić MB, Gernjak W, Heath E, IvancevTumbas I, Karaolia P, Lado Ribeiro AR, Mascolo G, McArdell CS, Schaar H, Silva AMT,
Fatta-Kassinos D (2019) Consolidated vs new advanced treatment methods for the removal of
contaminants of emerging concern from urban wastewater. Sci Total Environ 655:986–1008
65. Lee Y, Gerrity D, Lee M, Bogeat AE, Salhi E, Gamage S, Trenholm RA, Wert EC, Snyder SA,
von Gunten U (2013) Prediction of micropollutant elimination during ozonation of municipal
wastewater effluents: use of kinetic and water specific information. Environ Sci Technol 47
(11):5872–5881
66. Fujioka T, Khan SJ, McDonald JA, Nghiem LD (2014) Ozonation of N-nitrosamines in the
reverse osmosis concentrate from water recycling applications. Ozone Sci Eng 36(2):174–180
67. Wert EC, Rosario-Ortiz FL, Snyder SA (2009) Effect of ozone exposure on the oxidation of
trace organic contaminants in wastewater. Water Res 43(4):1005–1014
68. Maldonado MI, Malato S, Pérez-Estrada LA, Gernjak W, Oller I, Doménech X, Peral J (2006)
Partial degradation of five pesticides and an industrial pollutant by ozonation in a pilot-plant
scale reactor. J Hazard Mater 138(2):363–369
69. Yuan F, Hu C, Hu X, Qu J, Yang M (2009) Degradation of selected pharmaceuticals in
aqueous solution with UV and UV/H 2 O 2 . Water Res 43(6):1766–1774
70. Comninellis C, Kapalka A, Malato S, Parsons SA, Poulios I, Mantzavinos D (2008) Advanced
oxidation processes for water treatment: advances and trends for R&D. J Chem Technol
Biotechnol 83(6):769–776
236
L. N. Nguyen et al.
of recombinant proteins for industrial, nutritional, and medical uses. Photosynth Res 123
(3):227–239
53. Chiaiese P, Palomba F, Tatino F, Lanzillo C, Pinto G, Pollio A, Filippone E (2011) Engineered
tobacco and microalgae secreting the fungal laccase POXA1b reduce phenol content in olive
oil mill wastewater. Enzym Microb Technol 49(6–7):540–546
54. Matamoros V, Gutiérrez R, Ferrer I, García J, Bayona JM (2015) Capability of microalgaebased wastewater treatment systems to remove emerging organic contaminants: a pilot-scale
study. J Hazard Mater 288:34–42
55. Norvill ZN, Shilton A, Guieysse B (2016) Emerging contaminant degradation and removal in
algal wastewater treatment ponds: Identifying the research gaps. J Hazard Mater 313:291–309
56. Villar-Navarro E, Baena-Nogueras RM, Paniw M, Perales JA, Lara-Martín PA (2018)
Removal of pharmaceuticals in urban wastewater: high rate algae pond (HRAP) based
technologies as an alternative to activated sludge based processes. Water Res 139:19–29
57. Cajthaml T, Křesinová Z, Svobodová K, Möder M (2009) Biodegradation of endocrinedisrupting compounds and suppression of estrogenic activity by ligninolytic fungi.
Chemosphere 75:745–750
58. Azbar N, Yonar T, Kestioglu K (2004) Comparison of various advanced oxidation processes
and chemical treatment methods for COD and color removal from a polyester and acetate fiber
dyeing effluent. Chemosphere 55(1):35–43
59. Andreozzi R, Campanella L, Fraysse B, Garric J, Gonnella A, Giudice RL, Marotta R, Pinto G,
Pollio A (2004) Effects of advanced oxidation processes (AOPs) on the toxicity of a mixture of
pharmaceuticals. Water Sci Technol 50(5):23–28
60. Contreras S, Rodríguez M, Momani FA, Sans C, Esplugas S (2003) Contribution of the
ozonation pre-treatment to the biodegradation of aqueous solutions of 2,4-dichlorophenol.
Water Res 37(13):3164–3171
61. Esplugas S, Giménez J, Contreras S, Pascual E, Rodríguez M (2002) Comparison of different
advanced oxidation processes for phenol degradation. Water Res 36(4):1034–1042
62. Klavarioti M, Mantzavinos D, Kassinos D (2009) Removal of residual pharmaceuticals from
aqueous systems by advanced oxidation processes. Environ Int 35(2):402–417
63. Ternes TA, Stüber J, Herrmann N, McDowell D, Ried A, Kampmann M, Teiser B (2003)
Ozonation: a tool for removal of pharmaceuticals, contrast media and musk fragrances from
wastewater? Water Res 37(8):1976–1982
64. Rizzo L, Malato S, Antakyali D, Beretsou VG, Đolić MB, Gernjak W, Heath E, IvancevTumbas I, Karaolia P, Lado Ribeiro AR, Mascolo G, McArdell CS, Schaar H, Silva AMT,
Fatta-Kassinos D (2019) Consolidated vs new advanced treatment methods for the removal of
contaminants of emerging concern from urban wastewater. Sci Total Environ 655:986–1008
65. Lee Y, Gerrity D, Lee M, Bogeat AE, Salhi E, Gamage S, Trenholm RA, Wert EC, Snyder SA,
von Gunten U (2013) Prediction of micropollutant elimination during ozonation of municipal
wastewater effluents: use of kinetic and water specific information. Environ Sci Technol 47
(11):5872–5881
66. Fujioka T, Khan SJ, McDonald JA, Nghiem LD (2014) Ozonation of N-nitrosamines in the
reverse osmosis concentrate from water recycling applications. Ozone Sci Eng 36(2):174–180
67. Wert EC, Rosario-Ortiz FL, Snyder SA (2009) Effect of ozone exposure on the oxidation of
trace organic contaminants in wastewater. Water Res 43(4):1005–1014
68. Maldonado MI, Malato S, Pérez-Estrada LA, Gernjak W, Oller I, Doménech X, Peral J (2006)
Partial degradation of five pesticides and an industrial pollutant by ozonation in a pilot-plant
scale reactor. J Hazard Mater 138(2):363–369
69. Yuan F, Hu C, Hu X, Qu J, Yang M (2009) Degradation of selected pharmaceuticals in
aqueous solution with UV and UV/H 2 O 2 . Water Res 43(6):1766–1774
70. Comninellis C, Kapalka A, Malato S, Parsons SA, Poulios I, Mantzavinos D (2008) Advanced
oxidation processes for water treatment: advances and trends for R&D. J Chem Technol
Biotechnol 83(6):769–776
236
L. N. Nguyen et al.
