References
- Regulation of the Minister of Health of 7 December 2017 on the
Quality of Water Intended for Human Consumption, Journal
of Laws Item 2294.
- J.M. Montgomery, Water Treatment Principles and Design,
John Wiley and Sons Ltd., New York, NY, 2012.
- J.P. Ritson, N.J.D. Grahamb, M.R. Templeton, M.R. Clark,
R. Gough, C. Freemand, The impact of climate change on the
treatability of dissolved organic matter (DOM) in upland water
supplies: a UK perspective, Sci. Total Environ., 473–474 (2014)
714–730.
- E.T. Urbansky, M.L. Magnuson, Analyzing drinking water for
disinfection byproducts, Anal. Chem., 74 (2014) 260A–267A.
- J. Świetlik, U. Raczyk-Stanisławiak, J. Nawrocki, The influence
of disinfection on aquatic biodegradable organic carbon
formation, Water Res., 43 (2009) 463–473.
- J.P. Chandy, M.L. Angles, Determination of nutrients limiting
biofilm formation and the subsequent impact on disinfectant
decay, Water Res., 35 (2001) 2677–2682.
- C.H. Chu, C. Lu, Effects of oxalic acid on the regrowth of
heterotrophic bacteria in the distributed drinking water,
Chemosphere, 57 (2004) 531–539.
- Y. Pan, H. Li, X. Zhang, A. Li, Characterization of natural organic
matter in drinking water: sample preparation and analytical
approaches, Trends Environ. Anal. Chem., 12 (2016) 23–30.
- M. Wolska, Biological stability of water in water distribution
systems. The effect of water treatment trials, Environ. Prot.
Eng., 41 (2015)147–157.
- P.M. Huck, Measurement of biodegradable organic matter
and bacterial growth potential in drinking water, J. Am. Water
Works Assoc., 82 (1990) 78–86.
- H.Y. Hu, Y. Du, Q.Y. Wu, X. Zhao, X. Tang, Z. Chen, Differences
in dissolved organic matter between reclaimed water source
and drinking water source, Sci. Total. Environ., 551–552 (2016)
133–142.
- K. Lautenschlager, C. Hwang, W.T. Liu, N. Boon, O. Köster,
H. Vrouwenvelder, T. Egli, F. Hammess, A microbiologybased
multi-parametric approach towards assessing biological
stability in drinking water distribution networks, Water Res.,
47 (2013) 3015–3025.
- Q.H. Wang, T. Tao, K.L. Xin, S.P. Li, W.F. Zhang, A review
research of assimilable organic carbon bioassay, Desal. Water
Treat., 52 (2014) 2734–2740.
- W.Z. Yu, J. Gregory, T. Liu, Y.L. Yang, M. Sun, G.B. Li, Effect of
enhanced coagulation by KMnO4 on the fouling of ultrafiltration
membranes, Water Sci. Technol., 64 (2011) 1497–1502.
- I.C. Escobar, A. Randall, Assimilable organic carbon (AOC)
and biodegradable dissolved organic carbon (BDOC):
complementary measurements, Water Res., 35 (2001) 4444–4454.
- M. Polańska, K. Huysman, C. van Keer, Investigation of
assimilable organic carbon (AOC) in flemish drinking water,
Water Res., 39 (2005) 2259–2266.
- F. Hammes, C. Berger, O. Köster, T. Egli, Assessing biological
stability of drinking water without disinfectant residuals in a
full-scale water supply system, J. Water Supply Res. Technol.
Aqua, 59 (2010) 31–40.
- Y. Ohkouchi, B.T. Ly, S. Ishikawa, Y. Kawano, S. Itoh,
Determination of an acceptable assimilable organic carbon
(AOC) level for biological stability in water distribution systems
with minimized chlorine residual, Environ. Monit. Assess.,
185 (2013) 1427–1436.
- A. Nesticò, Risk-Analysis Techniques for the Economic
Evaluation of Investment Projects, G. Mondini, E. Fattinnanzi,
A. Oppio, M. Bottero, S. Stanghellini, Eds., Integrated Evaluation
for the Management of Contemporary Cities, Part of the Green
Energy and Technology Book Series (GREEN), Springer, Cham,
2018, pp. 617–629.
- Y.Y. Omar, A. Parker, J.A. Smith, S.J.T. Pollard, Risk
management for drinking water safety in low and middle
income countries - cultural influences on water safety plan
(WSP) implementation in urban water utilities, Sci. Total
Environ., 576 (2017) 895–906.
- C. Summerill, S.J.T. Pollard, J.A. Smith, B. Breach, T. Williams,
Securing executive buy-in for preventative risk management
— lessons from water safety plans, Water Supply, 11 (2011)
682–691.
- K. Rakocz, A. Rosińska, Changes in the content of biodegradable
organic matter in tap water in the city of Częstochowa, Civ.
Environ. Eng. Rep., 20 (2016) 89–99.
- A.D. Eaton, L.S. Clesceri, E.W. Rice, A.E. Greenberg,
M.A.H. Franson, Standard Methods for the Examination of
Water and Wastewater, 21st ed., American Public Health
Association (APHA), American Water Works Association
(AWWA), Water Environment Federation (WEF), Washington,
DC, 2005.
- G.Q. Li, T. Yu, Q.Y. Wu, Y. Lu, H.Y. Hu, Development of an ATP
luminescence-based method for assimilable organic carbon
determination in reclaimed water, Water Res., 123 (2017)
345–352
- W. Liu, H. Wu, Z. Wang, S.L. Ong, J.Y. Hu, W.J. Ng, Investigation
of assimilable organic carbon (AOC) and bacterial regrowth
in drinking water distribution system, Water Res., 36 (2002)
891–898.
- X. Zhao, H. Hu, S. Liu, F. Jiang, X. Shi, M. Li, X. Xu, Improvement
of the assimilable organic carbon (AOC) analytical method for
reclaimed water, Front. Environ. Sci., 7 (2013) 483–491.
- R. Lamsal, M.E. Walsh, G.A. Gagnon, Comparison of advanced
oxidation processes for the removal of natural organic matter,
Water Res., 45 (2011) 3263–3269.
- M. Świderska-Bróż, Threats associated with the presence of
biofilm in drinking water distribution systems, Environ. Prot.,
32 (2010) 7–13 (in Polish).
- M. Świderska-Bróż, M. Wolska, Causes underlying the free
chlorine in the water distribution system, Environ. Prot.,
29 (2007) 19–24 (in Polish).
- M. Świderska-Bróż, M. Wolska, Efficiency of surface water
treatment processes at removing biodegradable organic
substances, Environ. Prot., 33 (2011) 77–80 (in Polish).
- J.C. Lou, C.Y. Lin, J.Y. Han, W.B. Tseng, K.L. Hsu, T.W. Chang,
Comparing removal of trace organic compounds and assimilable
organic carbon (AOC) at advanced and traditional water
treatment plants, Environ. Monit. Assess., 184 (2012) 3491–3501.
- C. Charnock, O. Kjønnø, Assimilable organic carbon and
biodegradable dissolved organic carbon in Norwegian raw and
drinking waters, Water Res., 34 (2000) 2629–2642.
- M.W. LeChevallier, C.D. Lowry, R.G. Lee, Disinfecting biofilms
in a model distribution system, J. Am. Water Works Assoc.,
82 (1990) 87–99.
- D. van der Kooij, Biological stability: a multidimensional quality
aspect of treated water, Water Air Soil Pollut., 123 (2000) 25–34.
- L.A. Weinrich, P.K. Jjemba, E. Giraldo, M.W. Lechevallier,
Implications of organic carbon in the deterioration of water
quality in reclaimed water distribution systems, Water Res.,
44 (2010) 5367–5375.
- W. Tabtong, S.K. Boontanon, N. Boontanon, Fate and risk
assessment of perfluoroalkyl substances (PFASs) in water
treatment plants and tap water in Bangkok, Thailand, Procedia
Environ. Sci., 28 (2015) 750–757.
- W. Wang, B. Ye, L. Yang, Y. Li, Y. Wang, Corrigendum to “Risk
assessment on disinfection by-products of drinking water of
different water sources and disinfection processes”, Environ.
Int., 33 (2007) 716–717.