References
- L. Liao, P. Zhang, Preparation and characterization of polyaluminum
titanium silicate and its performance in the treatment
of low-turbidity water, Processes, 6 (2018) 1–19.
- M. Razali, J.F. Kim, M. Attfield, P.M. Budd, E. Drioli, Y.M. Lee,
G. Szekely, Sustainable wastewater treatment and recycling in
membrane manufacturing, Green Chem., 17 (2015) 5196–5205.
- M.R. Teixeira, F.P. Camacho, V.S. Sousa, R. Bergamasco, Green
technologies for cyanobacteria and natural organic matter
water treatment using natural based products, J. Cleaner Prod.,
162 (2017) 484–490.
- W. Sofińska-Chmiel, D. Kołodyńska, Application of ion
exchangers for the purification of galvanic wastewater from
heavy metals, Sep. Sci. Technol., 53 (2017) 1097–1106.
- M. Thomas, B. Białecka, D. Zdebik, Removal of copper, nickel
and tin from model and real industrial wastewater using
sodium trithiocarbonate. The negative impact of complexing
compounds, Arch. Environ. Prot., 44 (2018) 33–47.
- M. Thomas, B. Białecka, D. Zdebik, Use of sodium trithiocarbonate
for remove of chelated copper ions from industrial
wastewater originating from the electroless copper plating
process, Arch. Environ. Prot., 44 (2018) 32–42.
- G. Crini, Non-conventional low-cost adsorbents for dye
removal, Bioresour. Technol., 97 (2006) 1061–1085.
- A.E. Ghaly, R. Ananthashankar, M. Alhattab, V.V. Ramakrishnan,
Production, characterization and treatment of textile effluents:
a critical review, J. Chem. Eng. Process Technol., 5 (2014) 1–18.
- I. Płonka, B. Pieczykolan, K. Barbusiński, J. Kalka, M. Thomas,
P.J. Piskorz, Investigation of the efficiency of the UV/H2O2
process on the removal of Dye Acid Green 16 from aqueous
solutions: process optimization and toxicity assessment, Fibres
Text. East. Eur., 6 (2017) 103–107.
- M. Thomas, D. Zdebik, Treatment of real textile wastewater
by using potassium ferrate(VI) and Fe(III)/H2O2. Application
of Aliivibrio Fischeri and Brachionus plicatilis tests for toxicity
assessment, Fibres Text. East. Eur., 3 (2019) 78–84.
- C.A. Papadimitriou, X. Dabou, P. Samaras, G.P. Sakellaropoulos,
Coke oven wastewater treatment by two activated sludge
systems, Global NEST J., 8 (2006) 16–22.
- H. Singh, B.K. Mishra, Degradation of cyanide, aniline and
phenol in pre-treated coke oven wastewater by peroxide
assisted electro-oxidation process, Water Sci. Technol., 78 (2018)
2214–2227.
- M. Thomas, D. Zdebik, E. Niewiara, Removing phenols from
post-processing wastewater originating from underground coal
gasification using coagulation-flocculation and the H2O2/UV
process, Pol. J. Environ. Study, 27 (2018) 2757–2763.
- G. Durai, M. Rajasimman, Biological treatment of tannery
wastewater - a review, J. Environ. Sci. Technol., 4 (2011) 1–17.
- N.D. Tzoupanos, A.I. Zouboulis, Coagulation–Flocculation
Processes in Water/Wastewater Treatment: The Application
of New Generation of Chemical Reagents. 6th IASME/
WSEAS International Conference on Heat Transfer, Thermal
Engineering and Environment (HTE’08), Rhodes, Greece,
August 20–22, 2008, pp. 309–317.
- J. Gregory, J. Duan, Hydrolyzing metal salts as coagulants,
Pure Appl. Chem., 12 (2001) 2017–2026.
- A.K. Verma, R.R. Dash, P. Bhunia, A review on chemical
coagulation/flocculation technologies for removal of colour
from textile wastewaters, J. Environ. Manage., 93 (2012)
154–168.
- Y.X. Zhao, B.Y. Gao, H.K. Shon, B.C. Cao, J.-H. Kim, Coagulation
characteristics of titanium (Ti) salt coagulant compared with
aluminum (Al) and iron (Fe) salts, J. Hazard. Mater., 185 (2011)
1536–1542.
- H. Shon, S. Vigneswaran, I.S. Kim, J. Cho, G. Kim, J. Kim,
J.H. Kim, Preparation of titanium dioxide (TiO2) from sludge
produced by titanium tetrachloride (TiCl4) flocculation of
wastewater, Environ. Sci. Technol., 41 (2007) 1372–1377.
- H. Shon, S. Vigneswaran, J. Kandasamy, M. Zareie, J. Kim,
D. Cho, J.H. Kim, Preparation and characterization of titanium
dioxide (TiO2) from sludge produced by TiCl4 flocculation with
FeCl3, Al2(SO4)3 and Ca(OH)2 coagulant aids in wastewater,
Sep. Sci. Technol., 44 (2009) 1525–1543.
- M. Geissdoerfer, P. Savaget, N. Bocken, E. Hultink, The circular
economy - a new sustainability paradigm?, J. Cleaner Prod.,
143 (2017) 757–768.
- B.Ch. Lee, S.D. Kim, H.K. Shon, S. Vigneswaran, J. Cho, I.S. Kim,
K.H. Choi, B.J. Kim, H.J. Park, J.H. Kim, Park Aquatic toxicity
evaluation of TiO2 nanoparticle produced from sludge of TiCl4
flocculation of wastewater and seawater, J. Nanopart. Res.,
11 (2009) 2087–2096.
- X. Chen, S.S. Mao, Titanium dioxide nanomaterials: synthesis,
properties, modifications and applications, Chem. Rev.,
107 (2007) 2891–2959.
- A.J. Haider, Z.N. Jameel, I.H.M. Al-Hussaini, Review on:
titanium dioxide application, Energy Procedia, 157 (2019)
17–29.
- Ch.W. Lai, J.Ch. Juan, W.B. Ko, S.B.A. Hamid, An overview:
recent development of titanium oxide nanotubes as
photocatalyst for dye degradation, Int. J. Photoenergy, (2014)
1–14, http://dx.doi.org/10.1155/2014/524135.
- H.J. Oh, J.H. Lee, Y.J. Kim, S.J. Suh, J.H. Lee, C.S. Chi, Synthesis
of effective titania nanotubes for wastewater purification, Appl.
Catal. B, 84 (2008) 142–147.
- M.A. Lazar, S. Vraghese, S.S. Nair, Photocatalytic water
treatment by titanium dioxide: recent updates, Catalysis,
2 (2012) 572–601.
- WHO, Environmental Health Criteria, 24, 1982. Available at:
http://www.inchem.org/documents/ehc/ehc/ehc24.htm#Sub
SectionNumber:4.1.3 (Accessed on 1 August 2019).
- Y.X. Zhao, B.Y. Gao, G.Z. Zhang, Q.B. Qi, Y. Wang, S. Phuntsho,
J.H. Kim, H.K. Shon, Q.Y. Yue, Q. Li, Coagulation and sludge
recovery using titanium tetrachloride as coagulant for real
water treatment: a comparison against traditional aluminum
and iron salts, Sep. Purif. Technol., 130 (2014) 19–27.
- V.V. Muliak, V.P. Rodak, G.M. Isaev, European Patent Application,
13.03.2013, EP2567943A1. Available at: https://patentimages.storage.googleapis.com/de/48/12/182c13a448c594/EP2567943A1.pdf.
- T. Nyzhnyk, High efficiency titanium coagulants for water
treatment, Technol. Transfer: Fundam. Principles Innovative
Tech. Solutions, (2017) 54–56. http://dx.doi.org/10.21303/2585–
6847.2017.00486.
- V. Rondeau, D. Commenges, H. Jacqmin-Gadda, J.F. Dartigues,
Relation between aluminum concentrations in drinking water
and Alzheimer’s disease: an 8-year follow-up study, Am.
J. Epidemiol., 152 (2000) 59–66.
- WHO, Iron in Drinking Water, Background document for
development of WHO Guidelines for Drinking water Quality,
2003 WHO/SDE/WSH/03.04/08. Available at: https://www.who.
int/water_sanitation_health/dwq/chemicals/iron.pdf.
- S.Z. Dong, C.Z. Chen, D.M. Li, Y.S. Sun, A study of hygienic
standard for titanium in the source of drinking water, Chin. J.
Preventive Med., 27 (1993) 26–28. Available at: https://www.
ncbi.nlm.nih.gov/pubmed/8325174 (in Chinese).
- JSC Sittec, 2020, Available at: http://sittec-titan.com/production/
production-technology.php (Accessed on 20 April 2020).
- G.B. Sadykhov, Yu.V. Zablotskaya, K.G. Anisonyan, D. Yu.
Kop’ev, T.V. Olyunina, Extraction of High-Quality Titanium
Raw Materials from Leucoxene Concentrates of the Yarega
Deposit, Russ. Metall. (Metally), 11 (2018) 1015–1019.
- Y.X. Zhao, S. Phuntsho, B.Y. Gao, X. Huang, Q.B. Qi, Q.Y. Yue,
Y. Wang, J.H. Kim, H.K. Shon, Preparation and characterization
of novel polytitanium tetrachloride coagulant for water
purification, Environ. Sci. Technol., 47 (2013) 12966–12975.
- D.Z. Yu, T.T. Xin, H. Zhao, Preparation of novel poly titanium
coagulants and their properties for removal of chromium (VI),
J. Wuhan Inst. Technol., 39 (2017) 211–215 (in Chinese).
- B. Xu, Y. Zhang, X. Li, Y. Yao, X. Huang, S. Xia, P. Dong, A simple
preparation route for polysilicate titanium salt from spent
titanium solutions, Water Sci. Technol., 80 (2019) 1347–1356.
- Y. Okour, H.K. Shon, I. El Saliby, Characterisation of titanium
tetrachloride and titanium sulfate flocculation in wastewater
treatment, Water Sci. Technol., 59 (2009) 2463–2473.
- Y.H. Okour, S.S. Ahmed, An effective method of wastewater
treatment using titanium salt and a coagulant aid of chitosan,
Water Environ. J., 33 (2019) 418–426.
- W.S. Atikah, O. Djamaluddin, R. Manggala, The Potential
Use of Titanium Tetrachloride (TiCl4) as an Alternative
for Coagulant in Textile Wastewater Treatment, Fourth
International Conference on Sustainable Built Environment,
Yogyakarta, Indonesia, 2016, pp. 238–243. ISSN 2541–223X.
- H.A. Aziz, M. Yatim, B. Rosli, S.A. Amr, S. Hussain, Potential
use of titanium tetrachloride as coagulant to treat semi aerobic
leachate treatment, Aust. J. Basic Appl. Sci., 9 (2015) 37–44.
- A.J. Jafari, M. Mahrooghi, M. Moslemzadeh, Removal of
Escherichia coli from synthetic turbid water using titanium
tetrachloride and zirconium tetrachloride as coagulants, Desal.
Water Treat., 163 (2019) 358–365.
- H.A. Aziz, M.H.A. Razak, M.Z.A. Rahim, W.I.S.W. Kamar,
S.S.A. Amr, S. Hussain, J. Van Leeuwen, Evaluation and
comparison the performance of titanium and zirconium(IV)
tetrachloride in textile wastewater treatment, Data Brief,
18 (2018) 920–927.
- J. Galloux, L. Chekli, S. Phuntsho, L.D. Tijing, S. Jeong, Y.X. Zhao,
B.Y. Gao, S.H. Park, H.K. Shon, Coagulation performance and
floc characteristics of polytitanium tetrachloride and titanium
tetrachloride compared with ferric chloride for coal mining
wastewater treatment, Sep. Purif. Technol., 152 (2015) 94–100.
- S. Zhang, X. Wang, M. Li, X. Song, B. Wu, TiO2 Base Coagulant
and Its Application, US Patent, US2017/0137306A1, May, 2017.
- J. Xu, P. Gong, X. Qin, Research on hydrolysis of TiCl4
characteristic, Petrochem. Ind. Appl., 28 (2009) 13–15 (in
Chinese).
- X. Wang, M. Li, X. Song, Z. Chen, B. Wu, S. Zhang, Preparation
and evaluation of titanium-based xerogel as a promising
coagulant for water/wastewater treatment, Environ. Sci.
Technol., 50 (2016) 9619–9626.
- A.V. Mamchenko, N.G. Gerasimenko, I.I. Deshko, The
investigation of the efficiency of coagulants based on titanium
when purifying water, J. Water Chem. Technol., 32 (2010)
167–175.
- L. Chekli, E. Corjon, S.A.A. Tabatabai, G. Naidu, B. Tamburic,
S.H. Park, H.K. Shon, Performance of titanium salts compared
to conventional FeCl3 for the removal of algal organic matter
(AOM) in synthetic seawater: coagulation performance, organic
fraction removal and floc characteristics, J. Environ. Manage.,
201 (2017) 28–36.