10 Review on Trends in the Removal of Pharmaceuticals …
247
Esplugas S, Bila DM, Krause LG, Dezotti M (2007) Ozonation and advanced oxidation technologies
to remove endocrine disrupting chemicals (EDCs) and pharmaceuticals and personal care products
(PPCPs) in water effluents. J Hazard Mater 149:131–142
Feng X, Ding S, Tu J, Wu F, Deng N (2005) Degradation of estrone in aqueous solution by photoFenton system. Sci Total Environ 345:229–237
Feng L, Hullebusch ED, Van Rodrigo MA, Esposito G, Oturan MA (2013) Removal of residual antiinflammatory and analgesic pharmaceuticals from aqueous systems by electrochemical advanced
oxidation processes, a review. Chem Eng J 228:944–964
Fent K, Weston AA (2006) Caminada D. Ecotoxicology of human pharmaceuticals. Aquat Toxicol
76:122–159
Furukawa H, Cordova KE, O’Keeffe M, Yaghi OM (2013) The chemistry and applications of
metal-organic frameworks. Science 341:1230444
Gobel A, Thomsen A, McArdell CS, Joss A, Giger W (2005) Occurrence and sorption behavior of
sulfonamides, macrolides, and trimethoprim in activated sludge treatment. Environ Sci Technol
39:3981–3989
Goi A, Veressinina Y, Trapido M (2008) Degradation of salicylic acid by Fenton and modified
Fenton treatment. Chem Eng J 143:1–9
Halling-Sorensen B, Nors Nielsen S, Lanzky PF, Ingerslev F, Holten Lutzhoft HC, Jorgensen SE
(1998) Occurrence, fate and effects of pharmaceutical substances in the environment–a review.
Chemosphere 36:357–393
Hasan Z, Jhung SH (2015) Removal of hazardous organics from water using metal-organic frameworks (MOFs), plausible mechanisms for selective adsorptions. J Hazard Mater 283:229–239
Hasan Z, Jeon J, Jhung SH (2012) Adsorptive removal of naproxen and clofibric acid from water
using metal-organic frameworks. J Hazard Mater 209:151–157
Hasan Z, Choi EJ, Jhung SH (2013) Adsorption of naproxen and clofibric acid over a metal–organic
framework MIL-101 functionalized with acidic and basic groups. Chem Eng J 219:537–544
He S, Wang J, Ye L, Zhang Y, Yu J (2014) Removal of diclofenac from surface water by electron
beam irradiation combined with a biological aerated filter. Radiat Phys Chem 105:104–108
Heberer T (2002) Occurrence, fate, and removal of pharmaceutical residues in the aquatic
environment, a review of recent research data. Toxicol Lett 131:5–17
Hernando MD, Fernandez-Alba AR, Tauler R, Barcelo D (2005) Toxicity assays applied to
wastewater treatment. Talanta 65:358–366
Ho YS (2006) Review of second-order models for adsorption systems. J Hazard Mater 136:681–689
Hu J, Wang J (2007) Degradation of chlorophenols in aqueous solution by γ-radiation. Radiat Phys
Chem 76:1489–1492
Hwang YK, Hong DY, Chang JS, Jhung SH, Seo YK, Kim J, Vimont A, Daturi M, Serre C, Férey
G (2008) Amine grafting on coordinatively unsaturated metal centers of MOFs, consequences
for catalysis and metal encapsulation. Angew Chemie Int Ed 47:4144–4148
Janex-Habibi ML, Bruchet A, Ternes TA (2004) Effet des traitements d’eau potable et d’e´puration
des eaux use´es sur les re´sidus me´dicamenteux. Re´sultats du projet Poseidon. Tech Sci
Me´thodes 11:59–67
Jhung SH, Khan NA, Hasan Z (2012) Analogous porous metal–organic frameworks, synthesis,
stability and application in adsorption. Cryst Eng Comm 14:7099–7109
Jiang JQ, Yang CX, Yan XP (2013) Zeolitic imidazolate framework-8 for fast adsorption and
removal of benzotriazoles from aqueous solution. ACS Appl Mater Interfaces 5:9837–9842
Jones OA, Voulvoulis N, Lester JN (2004) Potential ecological and human health risks associated
with the presence of pharmaceutically active compounds in the aquatic environment. Crit Rev
Toxicol 34:335–350
Jorgensen SE, Halling-Sorensen B (2000) Drugs in the environment. Chemosphere 40:691–699
Kaczmarek M, Lis S (2009) Chemiluminescence determination of tetracyclines using Fenton system
in the presence europium(III) ions. Anal Chim Acta 639:96–100
Keen OS, Linden KG (2013) Degradation of antibiotic activity during UV/H2O2 advanced oxidation
and photolysis in wastewater effluent. Environ Sci Technol 47:13020–13030
247
Esplugas S, Bila DM, Krause LG, Dezotti M (2007) Ozonation and advanced oxidation technologies
to remove endocrine disrupting chemicals (EDCs) and pharmaceuticals and personal care products
(PPCPs) in water effluents. J Hazard Mater 149:131–142
Feng X, Ding S, Tu J, Wu F, Deng N (2005) Degradation of estrone in aqueous solution by photoFenton system. Sci Total Environ 345:229–237
Feng L, Hullebusch ED, Van Rodrigo MA, Esposito G, Oturan MA (2013) Removal of residual antiinflammatory and analgesic pharmaceuticals from aqueous systems by electrochemical advanced
oxidation processes, a review. Chem Eng J 228:944–964
Fent K, Weston AA (2006) Caminada D. Ecotoxicology of human pharmaceuticals. Aquat Toxicol
76:122–159
Furukawa H, Cordova KE, O’Keeffe M, Yaghi OM (2013) The chemistry and applications of
metal-organic frameworks. Science 341:1230444
Gobel A, Thomsen A, McArdell CS, Joss A, Giger W (2005) Occurrence and sorption behavior of
sulfonamides, macrolides, and trimethoprim in activated sludge treatment. Environ Sci Technol
39:3981–3989
Goi A, Veressinina Y, Trapido M (2008) Degradation of salicylic acid by Fenton and modified
Fenton treatment. Chem Eng J 143:1–9
Halling-Sorensen B, Nors Nielsen S, Lanzky PF, Ingerslev F, Holten Lutzhoft HC, Jorgensen SE
(1998) Occurrence, fate and effects of pharmaceutical substances in the environment–a review.
Chemosphere 36:357–393
Hasan Z, Jhung SH (2015) Removal of hazardous organics from water using metal-organic frameworks (MOFs), plausible mechanisms for selective adsorptions. J Hazard Mater 283:229–239
Hasan Z, Jeon J, Jhung SH (2012) Adsorptive removal of naproxen and clofibric acid from water
using metal-organic frameworks. J Hazard Mater 209:151–157
Hasan Z, Choi EJ, Jhung SH (2013) Adsorption of naproxen and clofibric acid over a metal–organic
framework MIL-101 functionalized with acidic and basic groups. Chem Eng J 219:537–544
He S, Wang J, Ye L, Zhang Y, Yu J (2014) Removal of diclofenac from surface water by electron
beam irradiation combined with a biological aerated filter. Radiat Phys Chem 105:104–108
Heberer T (2002) Occurrence, fate, and removal of pharmaceutical residues in the aquatic
environment, a review of recent research data. Toxicol Lett 131:5–17
Hernando MD, Fernandez-Alba AR, Tauler R, Barcelo D (2005) Toxicity assays applied to
wastewater treatment. Talanta 65:358–366
Ho YS (2006) Review of second-order models for adsorption systems. J Hazard Mater 136:681–689
Hu J, Wang J (2007) Degradation of chlorophenols in aqueous solution by γ-radiation. Radiat Phys
Chem 76:1489–1492
Hwang YK, Hong DY, Chang JS, Jhung SH, Seo YK, Kim J, Vimont A, Daturi M, Serre C, Férey
G (2008) Amine grafting on coordinatively unsaturated metal centers of MOFs, consequences
for catalysis and metal encapsulation. Angew Chemie Int Ed 47:4144–4148
Janex-Habibi ML, Bruchet A, Ternes TA (2004) Effet des traitements d’eau potable et d’e´puration
des eaux use´es sur les re´sidus me´dicamenteux. Re´sultats du projet Poseidon. Tech Sci
Me´thodes 11:59–67
Jhung SH, Khan NA, Hasan Z (2012) Analogous porous metal–organic frameworks, synthesis,
stability and application in adsorption. Cryst Eng Comm 14:7099–7109
Jiang JQ, Yang CX, Yan XP (2013) Zeolitic imidazolate framework-8 for fast adsorption and
removal of benzotriazoles from aqueous solution. ACS Appl Mater Interfaces 5:9837–9842
Jones OA, Voulvoulis N, Lester JN (2004) Potential ecological and human health risks associated
with the presence of pharmaceutically active compounds in the aquatic environment. Crit Rev
Toxicol 34:335–350
Jorgensen SE, Halling-Sorensen B (2000) Drugs in the environment. Chemosphere 40:691–699
Kaczmarek M, Lis S (2009) Chemiluminescence determination of tetracyclines using Fenton system
in the presence europium(III) ions. Anal Chim Acta 639:96–100
Keen OS, Linden KG (2013) Degradation of antibiotic activity during UV/H2O2 advanced oxidation
and photolysis in wastewater effluent. Environ Sci Technol 47:13020–13030
