13 Reigning Technologies and Their Challenges for Antibiotics …
323
Mutiyar PK, Mittal AK (2013) Occurrences and fate of an antibiotic amoxicillin in extended
aeration-based sewage treatment plant in Delhi, India: a case study of emerging pollutant.
Desalination Water Treatment 51(31–33):6158–6164
Mutiyar PK, Mittal AK (2014) Risk assessment of antibiotic residues in different water matrices in
India: key issues and challenges. Environ Sci Pollut Res 21(12):7723–7736
Ötker HM, Akmehmet-Balcıo˘ glu I (2005) Adsorption and degradation of enrofloxacin, a veterinary
antibiotic on natural zeolite. J Hazard Mater 122(3):251–258
Pouretedal HR, Sadegh N (2014) Effective removal of amoxicillin, cephalexin, tetracycline and
penicillin G from aqueous solutions using activated carbon nanoparticles prepared from vine
wood. J Water Process Eng 1:64–73
Prabhasankar VP, Joshua DI, Balakrishna K, Siddiqui IF, Taniyasu S, Yamashita N, Kannan K,
Akiba M, Praveenkumarreddy Y, Guruge KS (2016) Removal rates of antibiotics in four sewage
treatment plants in South India. Environ Sci Pollut Res 23(9):8679–8685
Premarathna KSD, Rajapaksha AU, Sarkar B, Kwon EE, Bhatnagar A, Ok YS, Vithanage M (2019)
Biochar-based engineered composites for sorptive decontamination of water: a review. Chem Eng
J 372:536–550
Putra EK, Pranowo R, Sunarso J, Indraswati N, Ismadji S (2009) Performance of activated carbon
and bentonite for adsorption of amoxicillin from wastewater: mechanisms, isotherms and kinetics.
Water Res 43(9):2419–2430
Qiang Z, Adams C (2004) Potentiometric determination of acid dissociation constants (pKa) for
human and veterinary antibiotics. Water Res 38(12):2874–2890
Rigos G, Nengas I, Alexis M, Troisi GM (2004) Potential drug (oxytetracycline and oxolinic acid)
pollution from Mediterranean sparid fish farms. Aquat Toxicol 69(3):281–288
Sacher F, Lange FT, Brauch HJ, Blankenhorn I (2001) Pharmaceuticals in groundwaters: analytical methods and results of a monitoring program in Baden-Württemberg, Germany. J
Chromatography A 938(1–2):199–210
Sarmah AK, Meyer MT, Boxall AB (2006) A global perspective on the use, sales, exposure
pathways, occurrence, fate and effects of veterinary antibiotics (VAs) in the environment.
Chemosphere 65(5):725–759
Shao L, Wu Z, Zeng L, Chen ZM, Zhou Y, Chen GQ (2013) Embodied energy assessment for
ecological wastewater treatment by a constructed wetland. Ecol Model 252:63–71
Singh A, Patel AK, Kumar M (2020) Mitigating the risk of Arsenic and Fluoride contamination of
groundwater through a multi-model framework of statistical assessment and natural remediation
techniques. In: Kumar M, Snow D, Honda R (eds) Emerging issues in the water environment
during Anthropocene: a South East Asian perspective, Springer Nature. ISBN 978-93-81891-41-4
Singh A, Patel AK, Deka JP, Das A, Kumar A, Kumar M (2019) Prediction of Arsenic vulnerable
zones in groundwater environment of rapidly urbanizing setup, Guwahati, India. Geochemistry
125590. https://doi.org/10.1016/j.chemer.2019.125590
Southgate R, Osborne NF (2000) Carbapenems and penems. Kirk-Othmer Encyclopedia of
Chemical Technology
Tao CW, Hsu BM, Ji WT, Hsu TK, Kao PM, Hsu CP, Shen SM, Shen TY, Wan TJ, Huang YL
(2014) Evaluation of five antibiotic resistance genes in wastewater treatment systems of swine
farms by real-time PCR. Sci Total Environ 496:116–121
Underwood JC, Harvey RW, Metge DW, Repert DA, Baumgartner LK, Smith RL, Roane TM, Barber
LB (2011) Effects of the antimicrobial sulfamethoxazole on groundwater bacterial enrichment.
Environ Sci Technol 45(7):3096–3101
Von Gunten U (2003a) Ozonation of drinking water: Part I. Oxidation kinetics and product
formation. Water Res 37(7):1443–1467
Von Gunten U (2003b) Ozonation of drinking water: Part II. Disinfection and by-product formation
in presence of bromide, iodide or chlorine. Water Res 37(7):1469–1487
Wang CJ, Li Z, Jiang WT (2011) Adsorption of ciprofloxacin on 2: 1 dioctahedral clay minerals.
Appl Clay Sci 53(4):723–728
323
Mutiyar PK, Mittal AK (2013) Occurrences and fate of an antibiotic amoxicillin in extended
aeration-based sewage treatment plant in Delhi, India: a case study of emerging pollutant.
Desalination Water Treatment 51(31–33):6158–6164
Mutiyar PK, Mittal AK (2014) Risk assessment of antibiotic residues in different water matrices in
India: key issues and challenges. Environ Sci Pollut Res 21(12):7723–7736
Ötker HM, Akmehmet-Balcıo˘ glu I (2005) Adsorption and degradation of enrofloxacin, a veterinary
antibiotic on natural zeolite. J Hazard Mater 122(3):251–258
Pouretedal HR, Sadegh N (2014) Effective removal of amoxicillin, cephalexin, tetracycline and
penicillin G from aqueous solutions using activated carbon nanoparticles prepared from vine
wood. J Water Process Eng 1:64–73
Prabhasankar VP, Joshua DI, Balakrishna K, Siddiqui IF, Taniyasu S, Yamashita N, Kannan K,
Akiba M, Praveenkumarreddy Y, Guruge KS (2016) Removal rates of antibiotics in four sewage
treatment plants in South India. Environ Sci Pollut Res 23(9):8679–8685
Premarathna KSD, Rajapaksha AU, Sarkar B, Kwon EE, Bhatnagar A, Ok YS, Vithanage M (2019)
Biochar-based engineered composites for sorptive decontamination of water: a review. Chem Eng
J 372:536–550
Putra EK, Pranowo R, Sunarso J, Indraswati N, Ismadji S (2009) Performance of activated carbon
and bentonite for adsorption of amoxicillin from wastewater: mechanisms, isotherms and kinetics.
Water Res 43(9):2419–2430
Qiang Z, Adams C (2004) Potentiometric determination of acid dissociation constants (pKa) for
human and veterinary antibiotics. Water Res 38(12):2874–2890
Rigos G, Nengas I, Alexis M, Troisi GM (2004) Potential drug (oxytetracycline and oxolinic acid)
pollution from Mediterranean sparid fish farms. Aquat Toxicol 69(3):281–288
Sacher F, Lange FT, Brauch HJ, Blankenhorn I (2001) Pharmaceuticals in groundwaters: analytical methods and results of a monitoring program in Baden-Württemberg, Germany. J
Chromatography A 938(1–2):199–210
Sarmah AK, Meyer MT, Boxall AB (2006) A global perspective on the use, sales, exposure
pathways, occurrence, fate and effects of veterinary antibiotics (VAs) in the environment.
Chemosphere 65(5):725–759
Shao L, Wu Z, Zeng L, Chen ZM, Zhou Y, Chen GQ (2013) Embodied energy assessment for
ecological wastewater treatment by a constructed wetland. Ecol Model 252:63–71
Singh A, Patel AK, Kumar M (2020) Mitigating the risk of Arsenic and Fluoride contamination of
groundwater through a multi-model framework of statistical assessment and natural remediation
techniques. In: Kumar M, Snow D, Honda R (eds) Emerging issues in the water environment
during Anthropocene: a South East Asian perspective, Springer Nature. ISBN 978-93-81891-41-4
Singh A, Patel AK, Deka JP, Das A, Kumar A, Kumar M (2019) Prediction of Arsenic vulnerable
zones in groundwater environment of rapidly urbanizing setup, Guwahati, India. Geochemistry
125590. https://doi.org/10.1016/j.chemer.2019.125590
Southgate R, Osborne NF (2000) Carbapenems and penems. Kirk-Othmer Encyclopedia of
Chemical Technology
Tao CW, Hsu BM, Ji WT, Hsu TK, Kao PM, Hsu CP, Shen SM, Shen TY, Wan TJ, Huang YL
(2014) Evaluation of five antibiotic resistance genes in wastewater treatment systems of swine
farms by real-time PCR. Sci Total Environ 496:116–121
Underwood JC, Harvey RW, Metge DW, Repert DA, Baumgartner LK, Smith RL, Roane TM, Barber
LB (2011) Effects of the antimicrobial sulfamethoxazole on groundwater bacterial enrichment.
Environ Sci Technol 45(7):3096–3101
Von Gunten U (2003a) Ozonation of drinking water: Part I. Oxidation kinetics and product
formation. Water Res 37(7):1443–1467
Von Gunten U (2003b) Ozonation of drinking water: Part II. Disinfection and by-product formation
in presence of bromide, iodide or chlorine. Water Res 37(7):1469–1487
Wang CJ, Li Z, Jiang WT (2011) Adsorption of ciprofloxacin on 2: 1 dioctahedral clay minerals.
Appl Clay Sci 53(4):723–728
