References
- M.I. Levinson, Surfactant Production: Present Realities and
Future Perspectives, Vol. 142, U. Zoller, P. Sosis, Ed., Handbook
of Detergents, Part F: Production, Surface Science Series, CRC
Press, Boca Raton, 2008, pp. 1–38.
- CESIO, CESIO Industry Statistics, European Committee of
Surfactants and their Organic Intermediates, 2017, Available at:
https://www.cesio.eu/index.php/information-centre/industrydata
(Accessed June 30, 2019).
- C.L. Yuan, Z.Z. Xu, M.X. Fan, H.Y. Liu, Y.H. Xie, T. Zhu, Study
on characteristics and harm of surfactants, J. Chem. Pharm.
Res., 6 (2014) 2233–2237.
- G.G. Ying, Fate, behavior and effects of surfactants and their
degradation products in the environment, Environ. Int.,
32 (2006) 417–431.
- G. Buttiglieri, T.P. Knepper, Removal of Emerging Contaminants
in Wastewater Treatment: Conventional Activated Sludge
Treatment, D. Barceló, M. Petrovic, Eds., Emerging Contaminants
from Industrial and Municipal Waste, Springer, Berlin,
Heidelberg, 2007, pp. 1–35.
- D. Barceló, M. Petrovic, Emerging Contaminants from Industrial
and Municipal Waste: Removal Technologies, Vol. 5, Part S/2,
Springer, Berlin, Heidelberg, 2008.
- S.K. Khetan, Endocrine Disruptors in the Environment, John
Wiley & Sons, Hoboken, NJ, 2014.
- S. Siddique, C. Kubwabo, S.A. Harris, A review of the role of
emerging environmental contaminants in the development of
breast cancer in women, Emerging Contam., 2 (2016) 204–219.
- M.A.R. Cardenas, I. Ali, F.Y. Lai, L. Dawes, R. Thier, J. Rajapakse,
Removal of micropollutants through a biological wastewater
treatment plant in a subtropical climate, Queensland-Australia,
J. Environ. Health Sci. Eng., 14 (2016) 14.
- N. Bolong, A.F. Ismail, M.R. Salim, T. Matsuura, A review of the
effects of emerging contaminants in wastewater and options for
their removal, Desalination, 239 (2009) 229–246.
- Y. Yu, Y.H. Choi, J. Choi, S. Choi, S.K. Maeng, Multi-barrier
approach for removing organic micropollutants using mobile
water treatment systems, Sci. Total Environ., 639 (2018) 331–338.
- R.I. Eggen, J. Hollender, A. Joss, M. Schärer, C. Stamm, Reducing
the discharge of micropollutants in the aquatic environment:
the benefits of upgrading wastewater treatment plants, Environ.
Sci. Technol., 48 (2014) 7683−7689.
- D. Gologan, M.E. Popescu, The optimization of coagulationflocculation
process in a conventional treatment water plant,
J. Environ. Sci. Toxicol. Food Technol., 10 (2016) 33–39.
- O.M. Rodriguez-Narvaez, J.M. Peralta-Hernandez, A. Goonetilleke,
E.R. Bandala, Treatment technologies for emerging
contaminants in water: a review, Chem. Eng. J., 323 (2017)
361–380.
- R. Tröger, P. Klöckner, L. Ahrens, K. Wiberg, Micropollutants
in drinking water from source to tap-method development
and application of a multiresidue screening method, Sci. Total
Environ., 627 (2018) 1404–1432.
- R.R. Dash, J. Mehrotra, P. Kumar, T. Grischek, Lake bank
filtration at Nainital, India, Hydrol. J., 16 (2008) 1089–1099.
- P.J. Dillon, M. Miller, H. Fallowfield, J. Hutson, The potential
of riverbank filtration for drinking water supplies in relation to
microsystin removal in brackish aquifers, J. Hydrol., 266 (2002)
209–221.
- S. Grünheid, G. Amy, M. Jekel, Removal of bulk dissolved
organic carbon (DOC) and trace organic compounds by bank
filtration and artificial recharge, Water Res., 39 (2005) 3219–3228.
- K. Dragon, J. Górski, R. Kruć, D. Drożdżyński, T. Grischek,
Removal of natural organic matter and organic micropollutants
during riverbank filtration in Krajkowo, Poland, Water, 10 (2018)
1457.
- W.J. Weiss, E.J. Bouwer, R. Aboytes, M.W. LeChevallier,
C.R. O’Melia, B.T. Le, K.J. Schwab, Riverbank filtration for
control of microorganisms: results from field monitoring, Water
Res., 39 (2005) 1990–2001.
- I. Skoczko, J. Piekutin, K. Ignatowicz, Efficiency of manganese
removal from water in selected filter beds, Desal. Water Treat.,
57 (2016) 1611–1619.
- I. Skoczko, Efficiency estimation of water purification with
various filtration materials, Desal. Water Treat., 134 (2018)
99–108.
- S. Kołaska, J. Jeż-Walkowiak, Z. Dymaczewski, Experiment in
infiltration studies as a water treatment process, E3S Web Conf.,
59 (2018) 01004-1–01004-11.
- M. Koga, Y. Yamamichi, Y. Nomoto, M. Irie, T. Tanimura,
T. Yoshinaga, Rapid determination of anionic surfactants by
improved spectrophotometric method using methylene blue,
Anal. Sci., 15 (1999) 563–568.
- E. Jurado, M. Fernández-Serrano, J. Núñez-Olea, G. Luzón,
M. Lechuga, Simplified spectrophotometric method using
methylene blue for determining anionic surfactants: applications
to the study of primary biodegradation in aerobic screening
tests, Chemosphere, 65 (2006) 278–285.
- B. Wyrwas, Methodological Aspects of Surfactant Biodegradation
Under Laboratory and Environmental Conditions, PUT
Publisher, Poznań, 2012.
- K. Huszla, D. Cierniak, M. Wysokowski, B. Wyrwas, Nonbiological
methods for degradation nonionic surfactants in the
aquatic environment, Chem. Ind. (London), 97 (2018) 2022–2025.
- B. Wyrwas, A. Zgoła-Grześkowiak, A new iodobismuthate
method with a low volume filtration device as a new tool for
the determination of microgram oxyethylate amounts, Tenside
Surf. Deterg., 52 (2015) 213–218.
- B. Wyrwas, Ł. Chrzanowski, Ł. Ławniczak, A. Szulc,
P. Cyplik, W. Białas, A. Szymański, A. Hołderna-Odachowska,
Utililization of Triton X-100 and polyethylene glycols during
surfactant-mediated biodegradation of diesel fuel, J. Hazard.
Mater., 197 (2011) 97–103.
- I. Skoczko, Water Filtration in Theory and Practice, PAN
Publishing, Series of Monographs of Environmental Engineering
Committee, Warsaw, 2019.
- A. Hoffmann, G. Gunkel, Bank filtration in the sandy littoral zone
of Lake Tegel (Berlin): structure and dynamics of the biological
active filter zone and clogging processes, Limnologica, 14 (2011)
10–19.
- B. Wyrwas, I. Kruszelnicka, D. Ginter-Kramarczyk, Effects of
selected anionic and nonionic surfactants on the operation of
activated sludge, Przem. Chem., 90 (2011) 613–619.
- B. Wyrwas, I. Kruszelnicka, D. Ginter-Kramarczyk, Effect
of concentration of anionic surfactant on the morphology of
activated sludge, Przem. Chem., 90 (2011) 1743–1748.
- D. Cierniak, M. Woźniak-Karczewska, A. Parus, B. Wyrwas,
A.P. Loibner, H.J. Heipieper, Ł. Ławniczak, Ł. Chrzanowski,
How to accurately assess surfactant biodegradation - impact of
sorption on the validity of results, Appl. Microbiol. Biotechnol.,
(2019), doi: 10.1007/s00253–019–10202–9.
- A. Tahar, J.M. Choubert, C. Miège, M. Esperanza, K. Le
Menach, H. Budzinski, C. Wisniewski, M. Coquery, Removal
of xenobiotics from effluent discharge by adsorption on zeolite
and expanded clay: an alternative to activated carbon?, Environ.
Sci. Pollut. Res. Int., 21 (2014) 5660–5668.
- T. Thiebault, R. Guégan, M. Boussafir, Adsorption mechanisms
of emerging micro-pollutants with a clay mineral: case of
tramadol and doxepine pharmaceutical products, J. Colloid
Interface Sci., 453 (2015) 1–8.
- M. Grassi, G. Kazkioglu, V. Belgiorno, G. Lofrano, Removal
of Emerging Contaminants from Water and Wastewater by
Adsorption Process, Published in: Emerging Compounds
Removal from Wastewater, Netherlands, Springer, 2012,
pp. 15–37.
- S.C. Azimi, A. Pendashteh, Green Technologies for Wastewater
Treatment, Second International Conference in New Research
on Chemistry & Chemical Engineering, Iran, 2016.
- A.C. Sophia, E.C. Lima, Removal of emerging contaminants
from the environment by adsorption, Ecotoxicol. Environ. Saf.,
150 (2018) 1–17.
- K. McDonough, K. Casteel, N. Itrich, J. Menzies, S. Belanger,
K. Wehmeyer, T. Federle, Evaluation of anionic surfactant
concentrations in US effluents and probabilistic determination
of their combined ecological risk in mixing zones, Sci. Total.
Environ., 572 (2016) 434–441.
- J. Šíma, V. Holcová, Removal of nonionic surfactants from
wastewater using a constructed wetland, Chem. Biodivers.,
8 (2011) 1819–1832.
- F. Riva, S. Castiglioni, E. Fattore, A. Manenti, E. Davoli,
E. Zuccato, Monitoring emerging contaminants in the drinking
water of Milan and assessment of the human risk, Int. J. Hyg.
Environ. Health, 221 (2018) 451–457.
- M. Palmer, H. Hatley, The role of surfactants in wastewater
treatment: impact, removal and future techniques: a critical
review, Water Res., 147 (2018) 60–72.