References
- K. Pholkern, K. Srisuk, T. Grischek, M. Soares, S. Schäfer,
L. Archwichai, P. Saraphirom, P. Pavelic, W. Wirojanagud,
Riverbed clogging experiments at potential river bank filtration
sites along the Ping River, Chiang Mai, Thailand, Environ.
Earth Sci., 73 (2015) 7699–7709.
- Q. Liu, M. Li, F. Zhang, H. Yu, Q. Zhang, X. Liu, The removal of
trimethoprim and sulfamethoxazole by a high infiltration rate
artificial composite soil treatment system, Front. Environ. Sci.
Eng., 11 (2017) 12.
- X. Wang, H. Yang, Z. Li, S. Yang, Y. Xie, Pilot study for the
treatment of sodium and fluoride-contaminated groundwater
by using high-pressure membrane systems, Front. Environ. Sci.
Eng., 9 (2015) 155–163.
- T. Heberer, G. Massmann, B. Fanck, T. Taute, U. Dünnbier,
Behaviour and redox sensitivity of antimicrobial residues
during bank filtration, Chemosphere, 73 (2008) 451–460.
- W. Back, R.A. Freeze, Chemical Hydrogeology, Hutchinson
Ross Publishing Company, USA, 1983.
- V.B. Singh, A.L. Ramanathan, J.G. Pottakkal, P. Sharma, A.
Linda, M.F. Azam, C. Chatterjee, Chemical characterisation of
meltwater draining from Gangotri Glacier, Garhwal Himalaya,
India, J. Earth Syst. Sci., 121 (2012) 625–636.
- V.B. Singh, A. Ramanathan, T. Kuriakose, Hydrogeochemical
assessment of meltwater quality using major ion chemistry:
a case study of Bara Shigri Glacier, Western Himalaya, India,
Natl. Acad. Sci. Lett., 38 (2015) 147–151.
- M.B. Ahmed, J.L. Zhou, H.H. Ngo, W. Guo, Adsorptive removal
of antibiotics from water and wastewater: progress and
challenges, Sci. Total Environ., 523 (2015) 112–126.
- A.M. Roussel, R.A. Anderson, A.E. Favrier, Determination of
Heavy Metals in Calcium and Herbal Supplements Utilizing
Inductively Coupled Plasma Mass Spectrometry (ICP-MS), Trace
Elements in Man and Animals 10, Springer US, Boston, MA, 2000.
- P.R. Haddad, Ion chromatography, Anal. Bioanal. Chem., 379
(2004) 341–343.
- B. Baumgarten, J. Jährig, T. Reemtsma, M. Jekel, Long term
laboratory column experiments to simulate bank filtration:
factors controlling removal of sulfamethoxazole, Water Res., 45
(2011) 211–220.
- S.K. Maeng, S.K. Sharma, K. Lekkerkerker-Teunissen, G.L.
Amy, Occurrence and fate of bulk organic matter and
pharmaceutically active compounds in managed aquifer
recharge: a review, Water Res., 45 (2011) 3015–3033.
- V.A. Tzanakakis, N.V. Paranychianakis, A.N. Angelakis,
Nutrient removal and biomass production in land treatment
systems receiving domestic effluent, Ecol. Eng., 35 (2009)
1485–1492.
- A. Dan, Y. Yang, Y. Dai, C. Chen, S. Wang, R. Tao, Removal and
factors influencing removal of sulfonamides and trimethoprim
from domestic sewage in constructed wetlands, Bioresour.
Technol., 146 (2013) 363–370.
- K.S. Jewell, S. Castronovo, A. Wick, P. Falås, A. Joss, T.A.
Ternes, New insights into the transformation of trimethoprim
during biological wastewater treatment, Water Res., 88 (2016)
550–557.
- S. Chidambaram, P. Anandhan, M.V. Prasanna, K.
Srinivasamoorthy, M. Vasanthavigar, Major ion chemistry
and identification of hydrogeochemical processes
controlling groundwater in and around Neyveli Lignite
Mines, Tamil Nadu, South India, Arab. J. Geosci., 6 (2013)
3451–3467.
- A.P. Barker, R.J. Newton, S.H. Bottrell, J.H. Tellam, Processes
affecting groundwater chemistry in a zone of saline intrusion
into an urban sandstone aquifer, Appl. Geochem., 13 (1998)
735–749.