Das I, NooriMd T, Bhowmick GD, Ghangrekar MM (2018) Synthesis of bimetallic iron ferrite
CoO.5ZnO.5Fe 2 O 4 as a superior catalyst for oxygen reduction reaction to replace noble metal
catalysts in microbial fuel cell. Int J Hydrog Energy 43(41):19196–19205. https://doi.org/10.
1016/j.ijhydene.2018.08.113
Dawas-Massalha A, Gur-Reznik S, Lerman S, Sabbah I, Dosoretz CG (2014) Co-metabolic
oxidation of pharmaceutical compounds by a nitrifying bacterial enrichment. Bioresour Technol
167:336–342. https://doi.org/10.1016/j.biortech.2014.06.003
de Luna MDG, Veciana ML, Su C-C, Lu M-C (2012) Acetaminophen degradation by electroFenton and photoelectro-Fenton using a double cathode electrochemical cell. J Hazard Mater
217–218:200–207. https://doi.org/10.1016/j.jhazmat.2012.03.018
Deegan AM, Shaik B, Nolan K, Urell K, Oelgemöller M, Tobin J, Morrissey A (2011) Treatment
options for wastewater effluents from pharmaceutical companies. Int J Environ Sci Technol 8
(3):649–666. https://doi.org/10.1007/BF03326250
Di Domenico EG, Petroni G, Mancini D, Geri A, Palma LD, Ascenzioni F (2015) Development of
electroactive and anaerobic ammonium-oxidizing (anammox) biofilms from digestate in microbial fuel cells. Biomed Res Int 2015:351014. https://doi.org/10.1155/2015/351014
Dialynas E, Mantzavinos D, Diamadopoulos E (2008) Advanced treatment of the reverse osmosis
concentrate produced during reclamation of municipal wastewater. Water Res 42
(18):4603–4608. https://doi.org/10.1016/j.watres.2008.08.008
Esplugas S, Bila DM, Krause LGT, 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(3):631–642. https://doi.org/10.1016/j.
jhazmat.2007.07.073
Fernandez-Fontaina E, Omil F, Lema JM, Carballa M (2012) Influence of nitrifying conditions on
the biodegradation and sorption of emerging micropollutants. Water Res 46(16):5434–5444.
https://doi.org/10.1016/j.watres.2012.07.037
Ferrentino R, Ferraro A, Mattei MR, Esposito G, Andreottola G (2018) Process performance
optimization and mathematical modelling of a SBR-MBBR treatment at low oxygen concentration. Process Biochem 75:230–239. https://doi.org/10.1016/j.procbio.2018.08.023
Fu Z, Zhao J (2015) Impact of quinoline on activity and microbial culture of partial nitrification
process. Bioresour Technol 197:113–119
Gao F, Zhang H, Yang F, Li H, Zhang R (2014) The effects of zero-valent iron (ZVI) and ferroferric
oxide (Fe 3 O 4 ) on anammox activity and granulation in anaerobic continuously stirred tank
reactors (CSTR). Process Biochem 49(11):1970–1978. https://doi.org/10.1016/j.procbio.2014.
07.019
Garcia-Segura S, Ocon JD, Chong MN (2018) Electrochemical oxidation remediation of real
wastewater effluents – a review. Process Saf Environ 113:48–67. https://doi.org/10.1016/j.
psep.2017.09.014
Ge X, Yang L, Sheets JP, Yu Z, Li Y (2014) Biological conversion of methane to liquid fuels: status
and opportunities. Biotechnol Adv 32(8):1460–1475. https://doi.org/10.1016/j.biotechadv.
2014.09.004
Ghayur A, Verheyen TV, Meuleman E (2019) Biological and chemical treatment technologies for
waste amines from CO 2 capture plants. J Environ Manag 241:514–524. https://doi.org/10.1016/
j.jenvman.2018.07.033
Hanson RS, Hanson TE (1996) Methanotrophic bacteria. Microbiol Rev 60(2):439–471
Hasson D, Drak A, Semiat R (2001) Inception of CaSO 4 scaling on RO membranes at various water
recovery levels. Desalination 139(1):73–81. https://doi.org/10.1016/S0011-9164(01)00296-X
Hatamoto M, Miyauchi T, Kindaichi T, Ozaki N, Ohashi A (2011) Dissolved methane oxidation
and competition for oxygen in down-flow hanging sponge reactor for post-treatment of anaerobic wastewater treatment. Bioresour Technol 102(22):10299–10304. https://doi.org/10.1016/j.
biortech.2011.08.099
168
P. Chawley et al.
CoO.5ZnO.5Fe 2 O 4 as a superior catalyst for oxygen reduction reaction to replace noble metal
catalysts in microbial fuel cell. Int J Hydrog Energy 43(41):19196–19205. https://doi.org/10.
1016/j.ijhydene.2018.08.113
Dawas-Massalha A, Gur-Reznik S, Lerman S, Sabbah I, Dosoretz CG (2014) Co-metabolic
oxidation of pharmaceutical compounds by a nitrifying bacterial enrichment. Bioresour Technol
167:336–342. https://doi.org/10.1016/j.biortech.2014.06.003
de Luna MDG, Veciana ML, Su C-C, Lu M-C (2012) Acetaminophen degradation by electroFenton and photoelectro-Fenton using a double cathode electrochemical cell. J Hazard Mater
217–218:200–207. https://doi.org/10.1016/j.jhazmat.2012.03.018
Deegan AM, Shaik B, Nolan K, Urell K, Oelgemöller M, Tobin J, Morrissey A (2011) Treatment
options for wastewater effluents from pharmaceutical companies. Int J Environ Sci Technol 8
(3):649–666. https://doi.org/10.1007/BF03326250
Di Domenico EG, Petroni G, Mancini D, Geri A, Palma LD, Ascenzioni F (2015) Development of
electroactive and anaerobic ammonium-oxidizing (anammox) biofilms from digestate in microbial fuel cells. Biomed Res Int 2015:351014. https://doi.org/10.1155/2015/351014
Dialynas E, Mantzavinos D, Diamadopoulos E (2008) Advanced treatment of the reverse osmosis
concentrate produced during reclamation of municipal wastewater. Water Res 42
(18):4603–4608. https://doi.org/10.1016/j.watres.2008.08.008
Esplugas S, Bila DM, Krause LGT, 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(3):631–642. https://doi.org/10.1016/j.
jhazmat.2007.07.073
Fernandez-Fontaina E, Omil F, Lema JM, Carballa M (2012) Influence of nitrifying conditions on
the biodegradation and sorption of emerging micropollutants. Water Res 46(16):5434–5444.
https://doi.org/10.1016/j.watres.2012.07.037
Ferrentino R, Ferraro A, Mattei MR, Esposito G, Andreottola G (2018) Process performance
optimization and mathematical modelling of a SBR-MBBR treatment at low oxygen concentration. Process Biochem 75:230–239. https://doi.org/10.1016/j.procbio.2018.08.023
Fu Z, Zhao J (2015) Impact of quinoline on activity and microbial culture of partial nitrification
process. Bioresour Technol 197:113–119
Gao F, Zhang H, Yang F, Li H, Zhang R (2014) The effects of zero-valent iron (ZVI) and ferroferric
oxide (Fe 3 O 4 ) on anammox activity and granulation in anaerobic continuously stirred tank
reactors (CSTR). Process Biochem 49(11):1970–1978. https://doi.org/10.1016/j.procbio.2014.
07.019
Garcia-Segura S, Ocon JD, Chong MN (2018) Electrochemical oxidation remediation of real
wastewater effluents – a review. Process Saf Environ 113:48–67. https://doi.org/10.1016/j.
psep.2017.09.014
Ge X, Yang L, Sheets JP, Yu Z, Li Y (2014) Biological conversion of methane to liquid fuels: status
and opportunities. Biotechnol Adv 32(8):1460–1475. https://doi.org/10.1016/j.biotechadv.
2014.09.004
Ghayur A, Verheyen TV, Meuleman E (2019) Biological and chemical treatment technologies for
waste amines from CO 2 capture plants. J Environ Manag 241:514–524. https://doi.org/10.1016/
j.jenvman.2018.07.033
Hanson RS, Hanson TE (1996) Methanotrophic bacteria. Microbiol Rev 60(2):439–471
Hasson D, Drak A, Semiat R (2001) Inception of CaSO 4 scaling on RO membranes at various water
recovery levels. Desalination 139(1):73–81. https://doi.org/10.1016/S0011-9164(01)00296-X
Hatamoto M, Miyauchi T, Kindaichi T, Ozaki N, Ohashi A (2011) Dissolved methane oxidation
and competition for oxygen in down-flow hanging sponge reactor for post-treatment of anaerobic wastewater treatment. Bioresour Technol 102(22):10299–10304. https://doi.org/10.1016/j.
biortech.2011.08.099
168
P. Chawley et al.
