References
- M. Rak, M. Świderska-Bróż, Minimizing the adverse effects of
alum coagulation, Ochr. Srod., 3 (2001) 13–16 (in Polish).
- R.D. Letterman, C.T. Driscollch, Survey of residual aluminum
in filtered water, J. Am. Water Works Assn., 80 (1988) 154–158.
- S.M. Rybicki, I. Wiewiórska, Minimalizing the concentration
of aluminum in tap water after coagulation, Przem. Chem.,
96 (2017) 1719–1722 (in Polish).
- Z. Tong, L. Fu, J. Li, C. Kang, Z. Wu, C. Zhong, Research on
enhanced coagulation test for sludge water recycling in
water treatment plant in Ganjiang River Nanchang section,
Desal. Water Treat., 232 (2021) 9–15.
- E. Wysowska, I. Wiewiórska, A. Kicińska, The impact of
different stages of water treatment process on the number
of selected bacteria, Water Res. Ind., 26 (2021) 100167,
doi: 10.1016/j.wri.2021.100167.
- M. Włodarczyk-Makuła, A. Popenda, E. Wiśniowska,
Removal of emerging contaminants and endocrine disrupting
compounds from wastewater in the aspect of water protection,
Int. J. Cons. Sci., 12 (2021) 731–744.
- J.L. Strauber, T. Florence, C. Davies, M. Adams, S.J. Buchanan,
Bioavailability of Al in alum treated drinking water, J. Am.
Water Works Assn., 11 (1999) 84–91.
- T. Ahmad, K. Ahmad, A. Alam, Sustainable management of
water treatment sludge through 3’R’ concept, J. Cleaner Prod.,
124 (2016) 1–13.
- A. Zouboulis, G. Traskas, P. Samaras, Comparison of efficiency
between poly‐aluminium chloride and aluminium sulphate
coagulants during full‐scale experiments in a drinking water
treatment plant, Sep. Sci. Technol., 43 (2008) 1507–1519.
- D.J. Pernitsky, J.K. Edzwald, Selection of alum and
polyaluminum coagulants: principles and applications, J. Water
Supply Res. Technol. AQUA, 55 (2006) 121–141.
- N. Muisa, I. Nhapi, W. Ruziwa, M.M. Manyuchi, Utilization of
alum sludge as adsorbent for phosphorus removal in municipal
wastewater: a review, J. Water Process Eng., 35 (2020) 101187,
doi:10.1016/j.jwpe.2020.101187.
- K.-Y. Chiang, P.-H. Chou, C.-R. Hua, K.-L. Chien, C. Cheeseman,
Lightweight bricks manufactured from water treatment sludge
and rice husks, J. Hazard. Mater., 171 (2009) 76–82.
- Y. Yang, Y.Q. Zhao, P. Kearney, Influence of ageing on the
structure and phosphate adsorption capacity of dewatered
alum sludge, Chem. Eng. J., 145 (2008) 276–284.
- L.Y. Wang, D.S. Tong, L.Z. Zhao, F.G. Liu, N. An, W.H. Yu,
C.H. Zhou, Utilization of alum sludge for producing aluminum
hydroxide and layered double hydroxide, Ceram. Int., 40 (2014)
15503–15514.
- J. Ciuła, Modeling the migration of anthropogenic pollution
from active municipal landfill in groundwaters, J. Arch. Civ.
Eng. Environ., 14 (2021) 81–90.
- E. Wysowska, A. Kicińska, G. Nikiel, Analysis of natural
vulnerability of groundwater intakes to migration of surface
pollutants based on a selected part of the Dunajec River Basin,
Pol. J. Environ. Stud., 29 (2020) 2925–2934.
- K.C. Makris, G.H. Willie, G.A. O’Connor, T.A. Obreza,
H.A. Elliott, Physicochemical properties related to long-term
phosphorus retention by drinking-water treatment residuals,
Environ. Sci. Technol., 39 (2005) 4280–4289.