References
- H. Armand, I.I. Stoianov, N.J.D. Graham, A holistic assessment
of discolouration processes in water distribution networks,
Urban Water J., 14 (2017) 263–277.
- R.F. Service, Desalination freshens up, Science, 313 (2006)
1088–1090.
- P. Zhao, Development of iron release, turbidity, and dissolved
silica integrated models for desalinated water in drinking water
distribution systems, Desal. Water Treat., 57 (2016) 398–407.
- L. Zhang, L. Xie, H.L. Chen, C.J. Gao, Progress and prospects of
seawater desalination in China, Desalination, 182 (2005) 13–18.
- B. Appenzeller, M. Batte, L. Mathieu, J.C. Block, V. Lahoussine,
J. Cavard, D. Gatel, Effect of adding phosphate to drinking
water on bacterial growth in slightly and highly corroded pipes,
Water Res., 35 (2001) 1100–1105.
- M. Woszczynski, J. Bergese, S.J. Payne, G.A. Gagnon,
Comparison of sodium silicate and phosphate for controlling
lead release from copper pipe rigs, Can. J. Civil Eng., 42 (2015)
953–959.
- M. Mobin, H. Shabnam, Studies on the effect of Zn ions on the
corrosion behavior of iron-base alloys relevant to desalination
and power plant conditions, Desal. Water Treat., 51 (2013)
3389–3397.
- L. Yohai, W.H. Schreiner, M. Vazquez, M.B. Valcarce, Brass
corrosion in chlorinated tap water inhibited by phosphate ions,
J. Solid State Electrochem., 19 (2015) 1559–1568.
- P.H. Hsu, Comparison of iron(III) and aluminum in precipitation
of phosphate from solution, Water Res., 10 (1976) 903–907.
- W. Stumm, B. Sulzberger, The cycling of iron in natural
environments: considerations based on laboratory studies of
heterogeneous redox processes, Geochim. Cosmochim. Acta,
56 (1992) 3233–3257.
- D.A. Lytle, V.L. Snoeyink, Effect of ortho- and polyphosphates
on the properties of iron particles and suspensions, J. Am. Water
Works Assoc., 94 (2002) 87–99.
- L.S. McNeill, M. Edwards, Phosphate inhibitors and red water
in stagnant iron pipes, J. Environ. Eng., 126 (2000) 1096–1102.
- A.A. Alshehri, S.J. Duranceau, J.S. Taylor, E.D. Stone,
Investigating iron release in distribution systems with blend
variations of source waters and phosphate inhibitors, Desal.
Water Treat., 8 (2009) 211–220.
- X. Zhang, Z. Mi, Y. Wang, S. Liu, Z. Niu, P. Lu, J. Wang, J. Gu,
C. Chen, A red water occurrence in drinking water distribution
systems caused by changes in water source in Beijing, China:
mechanism analysis and control measures, Front. Environ. Sci.
Eng., 8 (2014) 417–426.
- P.H.Y. Li, R.L. Bruce, M.D. Hobday, A pseudo first order rate
model for the adsorption of an organic adsorbate in aqueous
solution, J. Chem. Technol. Biotechnol., 74 (1999) 55–59.
- L. Manjie, L. Zhaowei, C. Yongcan, H. Yang, Characteristics of
iron corrosion scales and water quality variations in drinking
water distribution systems of different pipe materials., Water
Res., 106 (2016) 593–603.
- P. Sarin, V.L. Snoeyink, J. Bebee, K.K. Jim, M.A. Beckett,
W.M. Kriven, J.A. Clement, Iron release from corroded iron
pipes in drinking water distribution systems: effect of dissolved
oxygen, Water Res., 38 (2004) 1259–1269.
- H.Q. Tan, W.J. He, H.D. Han, Effect of seasonal variation on iron
release in drinking water distribution systems, Adv. Mater. Res.,
955–959 (2014) 3381–3384.
- S. Masters, G.J. Welter, M. Edwards, Seasonal variations in
lead release to potable water, Environ. Sci. Technol., 50 (2016)
5269–5277.