References
- S. Ayoob, A.K. Gupta, Fluoride in drinking water: a review
on the status and stress effects, Crit. Rev. Env. Sci. Technol.,
36 (2006) 433–487.
- G. Bia, L. Borgnino, D. Gaiero, M.G. García, Arsenic-bearing phases
in South Andean volcanic ashes: implications for As mobility in
aquatic environments, Chem. Geol., 393–394 (2015) 26–35.
- V. Kimambo, P. Bhattacharya, F. Mtalo, J. Mtamba, A. Ahmad,
Fluoride occurrence in groundwater systems at global scale
and status of defluoridation – state of the art, Groundwater
Sustainable Dev., 9 (2019) 100223.
- A.K. Yadav, C.P. Kaushik, A.K. Haritash, B. Singh, S.P. Raghuvanshi,
A. Kansal, Determination of exposure and probable
ingestion of fluoride through tea, toothpaste, tobacco and pan
masala, J. Hazard. Mater., 142 (2006) 77–80.
- M.T. Alarcón-Herrera, D.A. Martin-Alarcon, M. Gutiérrez,
L. Reynoso-Cuevas, A. Martín-Domínguez, M.A. Olmos-
Márquez, J.C. Bundschuh, Co-occurrence, possible origin, and
health-risk assessment of arsenic and fluoride in drinking water
sources in Mexico: geographical data visualization, Sci. Total
Environ., 698 (2020) 134168.
- M.S. Zango, E.D. Sunkari, M. Abu, A. Lermi, Hydrogeochemical
controls and human health risk assessment of groundwater
fluoride and boron in the semi-arid North East region of Ghana,
J. Geochem. Explor., 207 (2019) 106363.
- N. Adimalla, H. Qian, Spatial distribution and health risk
assessment of fluoride contamination in groundwater of
Telangana: a state-of-the-art, Geochemistry, (2019) 125548,
https://doi.org/10.1016/j.chemer.2019.125548 (in Press).
- I.S. Peretyazhko, E.A. Savina, Fluoride-Calcium (F-Ca) melt in
rhyolitic magma: evidence from fluorite-rich rhyolites of the
Nyalga basin, Central Mongolia, Lithos, 354–355 (2020) 105348.
- A. Chowdhury, M.K. Adak, A. Mukherjee, P. Dhak, J. Khatun,
D. Dhak, A critical review on geochemical and geological
aspects of fluoride belts, fluorosis and natural materials and
other sources for alternatives to fluoride exposure, J. Hydrol.,
574 (2019) 333–359.
- K.K. Yadav, V. Kumar, N. Gupta, S. Kumar, S. Rezania, N. Singh,
Human health risk assessment: study of a population exposed
to fluoride through groundwater of Agra city, India, Regul.
Toxicol. Pharm., 106 (2019) 68–80.
- N.J. Raju, Prevalence of fluorosis in the fluoride enriched
groundwater in semi-arid parts of eastern India: geochemistry
and health implications, Quat. Int., 443 (2017) 265–278.
- V.L. Mohanta, S. Singh, B.K. Mishra, Human health risk
assessment of fluoride-rich groundwater using fuzzy-analytical
process over the conventional technique, Groundwater
Sustainable Dev., 10 (2020) 100291.
- L. Kaur, M.S. Rishi, A.U. Siddiqui, Deterministic and
probabilistic health risk assessment techniques to evaluate noncarcinogenic
human health risk (NHHR) due to fluoride and
nitrate in groundwater of Panipat, Haryana, India, Environ.
Pollut., 259 (2020) 113711.
- S. Ali, S. Shekhar, P. Bhattacharya, G. Verma, T. Chandrasekhar,
A.K. Chandrashekhar, Elevated fluoride in groundwater of
Siwani Block, Western Haryana, India: a potential concern
for sustainable water supplies for drinking and irrigation,
Groundwater Sustainable Dev., 7 (2018) 410–420.
- M. Hossain, P.K. Patra, Hydrogeochemical characterisation
and health hazards of fluoride enriched groundwater in
diverse aquifer types, Environ. Pollut., 258 (2020) 113646.
- I. Mukherjee, U.K. Singh, Fluoride abundance and their release
mechanisms in groundwater along with associated human
health risks in a geologically heterogeneous semi-arid region
of east India, Microchem. J., 152 (2020) 104304.
- D. Raj, E. Shaji, Fluoride contamination in groundwater
resources of Alleppey, southern India, Geosci. Front., 8 (2017)
117–124.
- P. Aravinthasamy, D. Karunanidhi, T. Subramani, B. Anand,
P.D. Roy, K. Srinivasamoorthy, Fluoride contamination in
groundwater of the Shanmuganadhi River Basin (south
India) and its association with other chemical constituents
using geographical information system and multivariate
statistics, Geochemistry, (2019) 125555, https://doi.org/10.1016/j.
chemer.2019.125555 (in Press).
- J. Ijumulana, F. Ligate, P. Bhattacharya, F. Mtalo, C. Zhang,
Spatial analysis and GIS mapping of regional hotspots and
potential health risk of fluoride concentrations in groundwater
of northern Tanzania, Sci. Total Environ., 735 (2020) 139584.
- A.A. Alcaine, C. Schulz, J. Bundschuh, G. Jacks, R. Thunvik,
J.P. Gustafsson, https://www.sciencedirect.com/science/article/
pii/S0048969720301819 C. Morth, https://www.sciencedirect.
com/science/article/pii/S0048969720301819 O. Sracek, https://
www.sciencedirect.com/science/article/pii/S0048969720301819
A. Ahmad, P. Bhattacharya, Hydrogeochemical controls on the
mobility of arsenic, fluoride and other geogenic co-contaminants
in the shallow aquifers of northeastern La Pampa Province in
Argentina, Scince, 715 (2020) 136671.
- S.G. Abdurahman, M. Zewdie, Fluoride ion and total dissolved
solid distribution in Ethiopian Rift valley: the case of Hawassa
city aquifer, J. Hydrol.: Reg. Stud., 19 (2018) 240–249.
- W. Furi, M. Razack, T.A. Abiye, T. Ayenew, D. Legesse, Fluoride
enrichment mechanism and geospatial distribution in the
volcanic aquifers of the Middle Awash basin, Northern Main
Ethiopian Rift, J. Afr. Earth Sci., 60 (2011) 315–327.
- G. Beyene, D. Aberra, F. Fufa, Evaluation of the suitability of
groundwater for drinking and irrigation purposes in Jimma
Zone of Oromia, Ethiopia, Groundwater Sustainable Dev.,
9 (2019) 100216.
- H.B. Enalou, F. Moore, B. Keshavarzi, M. Zarei, Source
apportionment and health risk assessment of fluoride in water
resources, south of Fars Province, Iran: Stable isotopes (δ18O and
δD) and geochemical modeling approaches, Appl. Geochem.,
98 (2018) 197–205.
- M.M. Rad Fard, M. Yousefi, H. Soleimani, A.A. Mohammadi,
A.H. Mahvi, A. Abbasnia, The concentration data of fluoride
and health risk assessment in drinking water in the Ardakan
City of Yazd province, Iran, Data Brief, 18 (2018) 40–46.
- M. Radfard, M. Rahmatinia, H. Akbari, B. Hashemzadeh,
H. Akbari, A. Adibzadeh, Data on health risk assessment of
fluoride in water distribution network of Iranshahr, Iran, Data
Brief, 20 (2018) 1446–1452.
- B. Sawangjang, T. Hashimoto, A. Wongrueng, S. Wattanachira,
S. Takizawa, Assessment of fluoride intake from groundwater
and intake reduction from delivering bottled water in Chiang
Mai Province, Thailand, Heliyon, 5 (2019) e02391.
- M. Egor, G. Birungi, Fluoride contamination and its optimum
upper limit in groundwater from Sukulu Hills, Tororo District,
Uganda, Sci. Afr., 7 (2020) e00241.
- A. Rashid, A. Farooqi, X.B. Gao, S. Zahir, S. Noor, J.A. Khattak,
Geochemical modeling, source apportionment, health risk
exposure and control of higher fluoride in groundwater of subdistrict
Dargai, Pakistan, Chemosphere, 243 (2020) 125409.
- L. Yuan, W. Fei, F. Jia, L. Jun-ping, L. Qi, N. Fang-ru, L. Xu-dong,
X. Shu-lian, Health risk in children to fluoride exposure in a
typical endemic fluorosis area on Loess Plateau, North China,
in the last decade, Chemosphere, 243 (2020) 125451.
- B. Thole, Ground Water Contamination with Fluoride and
Potential Fluoride Removal Technologies for East and Southern
Africa, I. Ahmad, M. Ahmad Dar, Perspectives in Water
Pollution, IntechOpen, 2013, pp. 66–90.
- V. Chandrasekhar, P. Omenda, D. Chandrasekharam, High
Heat Generating Granites of Tanzania, Proceedings 5th African
Rift geothermal Conference, Arusha, Tanzania, 29–31 October
2014.
- Y. Çengeloğlua, E. Kır, M. Ersöz, Removal of fluoride from
aqueous solution by using red mud, Sep. Purif. Technol.,
28 (2002) 81–86.
- M.G. Sujana, G. Soma, N. Vasumathi, S. Anand, Studies on
fluoride adsorption capacities of amorphous Fe/Al mixed
hydroxides from aqueous solutions, J. Fluorine Chem., 130 (2009)
749–754.
- L.D. Hafshejani, S. Tangsir, E. Daneshvar, M. Maljanen, A. Lähde,
J. Jokiniemi, Mu. Naushad, A. Bhatnagar, Optimization of
fluoride removal from aqueous solution by Al2O3 nanoparticles,
J. Mol. Liq., 238 (2017) 254–262.
- V. Saxena, S. Ahmed, Inferring the chemical parameters for
the dissolution of fluoride in groundwater, J. Environ. Geol.,
43 (2003) 731–736.
- B.Y. Yang, T.G. Sun, H.Y. Chen, Z.Y. Wang, H.X. Yang, X.F. Guo,
X. Chen, Effects of Hydrogen Fluoride-Stress on Physiological
Characteristics of Theaceae Tree Seedlings, Proceedings of the
2015 International Conference on Education, Management and
Computing Technology, Atlantis Press, China, 2015.
- N. Elloumi, F.B. Abdallah, I. Mezghani, A. Rhouma,
M. Boukhris, Effect of fluoride on almond seedlings in culture
solution, Fluoride, 38 (2005) 193–198.
- G.W. Miller, J.L. Shupe, O.T. Vedina, Accumulation of fluoride
in plants exposed to geothermal and industrial water, Fluoride,
32 (1999) 74–83.
- L.X. Wang, J.H. Tang, B. Xiao, Y.J. Yang, J. Liu, Variation of
photosynthesis, fatty acid composition, ATPase and acid
phosphatase activities, and anatomical structure of two tea
(Camellia sinensis (L.) O. Kuntze) cultivars in response to
fluoride, Sci. World J., (2013) 1–9, doi: 10.1155/2013/109367.
- H. Zuo, L. Chen, M. Kong, L.P. Qiu, P. Lü, P. Wu, Y.H. Yang,
K.P. Chen, Toxic effects of fluoride on organisms, Life Sci.,
198 (2018) 18–24.
- W. Jia-Xi, B. Yong-mei, Fluoride effects on the mulberrysilkworm
system, Environ. Pollut., 52 (1988) 11–18.
- S.L. Choubisa, Endemic fluorosis in southern Rajasthan, India,
Fluoride, 34 (2001) 61–70.
- X.C. Yu, J.W. Chen, Y.G. Li, H.L. Liu, C.C. Hou, Q. Zeng,
Y.S. Cui, L. Zhao, P. Li, Z.Q. Zhou, S. Pang, S. Tang, K.M. Tian,
Q. Zhao, L.X. Dong, C.Y. Xu, X. Zhang, S. Zhang, L. Liu,
A.G. Wang, Threshold effects of moderately excessive fluoride
exposure on children’s health: a potential association between
dental fluorosis and loss of excellent intelligence, Environ. Int.,
118 (2018) 116–124.
- T. Rango, J. Kravchenko, B. Atlaw, P.G. Mccornick, M. Jeuland,
B. Merola, A. Vengosh, Groundwater quality and its health
impact: an assessment of dental fluorosis in rural inhabitants of
the Main Ethiopian Rift, Environ. Int., 43 (2012) 37–47.
- R. Dehbandi, F. Moore, B. Keshavarzi, Geochemical sources,
hydrogeochemical behavior, and health risk assessment of
fluoride in an endemic fluorosis area, central Iran, Chemosphere,
193 (2018) 763–776.
- S.Y. Ganyaglo, A. Gibrilla, E. De-Graft Johnson Owusu-Ansah,
S. Tettey, P.Y. Diabene, S. Asimah, Groundwater fluoride
contamination and probabilistic health risk assessment in
fluoride endemic areas of the Upper East Region, Ghana,
Chemosphere, 233 (2019) 862–872.
- A.L. Choi, G.F. Sun, Y. Zhang, P. Grandjean, Developmental
fluoride neurotoxicity: a systematic review and meta-analysis,
Environ. Health Perspect., 120 (2012) 1362–1368.
- S. Zhang, X.F. Zhang, H.L. Liu, W.D. Qu, Z.Z. Guan, Q. Zeng,
C.Y. Jiang, H. Gao, C. Zhang, R.R. Lei, T. Xia, Z.L. Wang, L. Yang,
Y.H. Chen, X. Wu, Y.S. Cui, L.Y. Yu, A.G. Wang, Modifying
effect of COMT gene polymorphism and a predictive role
for proteomics analysis in children’s intelligence in endemic
fluorosis area in Tianjin, China, Toxicol. Sci., 144 (2015)
238–245.
- M.W. Wang, L. Liu, H.J. Li, Y.G. Li, H.L. Liu, C.C. Hou, Q. Zeng,
P. Li, Q. Zhao, L.X. Dong, G.Y. Zhou, X.C. Yu, L. Liu, Q. Guan,
S. Zhang, A.G. Wang, Thyroid function, intelligence, and
low-moderate fluoride exposure among Chinese school-age
children, Environ. Int., 134 (2020) 105229.
- L. Liu, M.W. Wang, Y.G. Li, H.L. Liu, C.C. Hou, Q. Zeng,
P. Li, Q. Zhao, L.X. Dong, X.C. Yu, L. Liu, S. Zhang, A.G. Wang,
Low-to-moderate fluoride exposure in relation to overweight
and obesity among school-age children in China, Ecotoxicol.
Environ. Saf., 183 (2019) 109558.
- D. Karunanidhi, P. Aravinthasamy, D. Kumar, T. Subramani, P.D.
Roy, Sobol sensitivity approach for the appraisal of geomedical
health risks associated with oral intake and dermal pathways
of groundwater fluoride in a semi-arid region of south India,
Ecotoxicol. Environ. Saf., 194 (2020) 110438.
- S. Nanayakkara, S.T.M.L.D. Senevirathna, K.H. Harada, R.
Chandrajith, N. Nanayakkara, A. Koizumi, Influence of fluoride
on chronic kidney disease of uncertain aetiology (CKDu) in Sri
Lanka, Chemosphere, 257 (2020) 127186.
- WHO, Guidelines for Drinking Water Quality, World Health
Organization, Geneva, 2008.
- National Research Council, Fluoride in Drinking Water:
A Scientific Review of EPA’s Standards, The National Academics
Press, Washington, DC, 2006.
- Report of Bureau of Indian Standards, Drinking Water –
Specification, Second Revision of IS 10500, Drinking Water
Sectional Committee, New Delhi, 2009.
- APHA Method 4500-F, Standard Methods for Examination
of Water and Wastewater, 18th ed., American Public Health
Association, Authority of the United States of America,
Washington, DC, 1992.
- National Standard of the People’s Republic of China, Standards
for Drinking Water Quality, Ministry of Health of China,
Standardization Administration of China, 2007.
- Critical Review of Any New Evidence on the Hazard Profile,
Health Effects, and Human Exposure to Fluoride and the
Fluoridating Agents of Drinking Water, European Commission,
Brussels, 2010.
- Guidelines for Canadian Drinking Water Quality, Guideline
Technical Document, Fluoride, Minister of Health, Ontario,
2010.
- Water Fluoridation Health Monitoring Report for England,
Public Health, England, 2014.
- National Health and Medical Research Council, Australian
Government, Australia, 2017.
- Federal Democratic Republic of Ethiopia Ministry of Water
Resources, Ministry of Water Resources, Addis Ababa, Ethiopia,
2001.
- S. Manna, D. Roy, P. Saha, B. Adhikari, Defluoridation of
aqueous solution using alkali–steam treated water hyacinth and
elephant grass, J. Taiwan Inst. Chem. Eng., 50 (2015) 215–222.
- S. Manna, P. Saha, D. Roy, B. Adhikari, P. Das, Fixed bed
column study for water defluoridation using neem oil-phenolic
resin treated plant bio-sorbent, J. Environ. Manage., 212 (2018)
424–432.
- S. Mukherjee, S. Barman, G. Halder, Fluoride uptake by
zeolite NaA synthesized from rice husk: isotherm, kinetics,
thermodynamics and cost estimation, Groundwater Sustainable
Dev., 7 (2018) 39–47.
- G. Wendimu, F. Zewge, E. Mulugeta, Aluminium-iron-amended
activated bamboo charcoal (AIAABC) for fluoride removal from
aqueous solutions, J. Water Process Eng., 16 (2017) 123–131.
- C.L. Li, N. Chen, Y. Zhao, R. Li, C.P. Feng, Polypyrrole-grafted
peanut shell biological carbon as a potential sorbent for fluoride
removal: sorption capability and mechanism, Chemosphere,
163 (2016) 81–89.
- G. Biswas, S.G. Thakurta, J. Chakrabarty, K. Adhikari, S. Dutta,
Evaluation of fluoride bioremediation and production of
biomolecules
by living cyanobacteria under fluoride stress
condition, Chemosphere, 148 (2018) 26–36.
- A.M. George, A.R. Tembhurkar, Optimization of defluoridation
using Ficus benghalensis leaf biosorbent through Taguchi’s
method, Water Environ. Fed., 91 (2019) 340–350.
- R. Bhaumik, N.K. Mondal, S. Chattoraj, An optimization study
for defluoridation from synthetic fluoride solution using scale
of Indian major Carp Catla (Catla catla): an unconventional
biosorbent, J. Fluorine Chem., 195 (2017) 57–69.
- A.R. Kaveeshwar, S.K. Ponnusamy, E.D. Revellame, D.D. Gang,
M.E. Zappi, R. Subramaniam, Pecan shell based activated
carbon for removal of iron(II) from fracking wastewater:
adsorption kinetics, isotherm and thermodynamic studies,
Process Saf. Environ. Prot., 114 (2018) 107–122.
- S. Suganya, P. Senthil Kumar, Influence of ultrasonic waves
on preparation of active carbon from coffee waste for the
reclamation of effluents containing Cr(VI) ions, J. Ind. Eng.
Chem., 60 (2018) 418–430.
- P. Senthil Kumar, S.J. Varjani, S. Suganya, Treatment of dye
wastewater using an ultrasonic aided nanoparticle stacked
activated carbon: kinetic and isotherm modelling, Bioresour.
Technol., 250 (2018) 716–722.
- R. Araga, S. Soni, C.S. Sharma, Fluoride adsorption from
aqueous solution using activated carbon obtained from KOHtreated
Jamun (Syzygium cumini) seed, J. Environ. Chem. Eng.,
5 (2017) 5608–5616.
- C.E. Choong, M.H. Kim, S.Y. Yoon, G.Y. Lee, C.M. Park,
Mesoporous La/Mg/Si-incorporated palm shell activated carbon
for the highly efficient removal of aluminum and fluoride from
water, J. Taiwan Inst. Chem. Eng., 93 (2018) 306–314.
- C. Pongener, P.C. Bhomick, A. Supong, M. Baruah, U.B. Sinha,
D. Sinha, Adsorption of fluoride onto activated carbon synthesized
from Manihot esculenta biomass—equilibrium, kinetic and thermodynamic
studies, J. Environ. Chem. Eng., 6 (2018) 2382–2389.
- A. Mullick, S. Neogi, Acoustic cavitation induced synthesis of
zirconium impregnated activated carbon for effective fluoride
scavenging from water by adsorption, Ultrason. Sonochem.,
45 (2018) 65–77.
- A. Mullick, S. Neogi, Ultrasound assisted synthesis of
Mg-Mn-Zr impregnated activated carbon for effective fluoride
adsorption from water, Ultrason. Sonochem., 50 (2019) 126–137.
- M. Talat, S. Mohan, V. Dixit, D.K. Singh, S.H. Hasan,
O.N. Srivastava, Effective removal of fluoride from water
by coconut husk activated carbon in fixed bed column:
experimental and breakthrough curves analysis, Groundwater
Sustainable Dev., 7 (2018) 48–55.
- S. Roy, P. Das, S. Sengupta, S. Manna, Calcium impregnated
activated charcoal: optimization and efficiency for the treatment
of fluoride containing solution in batch and fixed bed
reactor, Process Saf. Environ. Prot., 109 (2017) 18–29.
- C.E. Choong, K.T. Wong, S.B. Jang, I.W. Nah, J.Y. Choi, S. Ibrahim,
Y.M. Yoon, M. Jang, Fluoride removal by palm shell waste
based powdered activated carbon vs. functionalized carbon
with magnesium silicate: implications for their application in
water treatment, Chemosphere, 239 (2020) 124765.
- N.G. Telkapalliwar, V.M. Shivankar, Data of characterization
and adsorption of fluoride from aqueous solution by using
modified Azadirachta indica bark, Data Brief, 26 (2019) 104509.
- L.P. Mei, H.H. Qiao, F. Ke, C.Y. Peng, R.Y. Hou, X.C. Wan,
H.M. Cai, One-step synthesis of zirconium dioxide-biochar
derived from Camellia oleifera seed shell with enhanced removal
capacity for fluoride from water, Appl. Surf. Sci., 509 (2020) 144685.
- A. Siddique, A.K. Nayak, J. Singh, Synthesis of FeCl3-activated
carbon derived from waste Citrus limetta peels for removal
of fluoride: an eco-friendly approach for the treatment of
groundwater and bio-waste collectively, Groundwater Sustainable
Dev., 10 (2020) 100339.
- J. Saikia, S. Sarmah, T.H. Ahmed, P.J. Kalita, R.L. Goswamee,
Removal of toxic fluoride ion from water using low cost ceramic
nodules prepared from some locally available raw materials of
Assam, India, J. Environ. Chem. Eng., 5 (2017) 2488–2497.
- N.M. Zúñiga-Muro, A. Bonilla-Petriciolet, D.I. Mendoza-
Castillo, H.E. Reynel-Ávila, J.C. Tapia-Picazo, Fluoride adsorption
properties of cerium-containing bone char, J. Fluorine
Chem., 197 (2017) 63–73.
- H. Liu, S.B. Deng, Z.J. Li, G. Yu, J. Huang, Preparation of Al–
Ce hybrid adsorbent and its application for defluoridation of
drinking water, J. Hazard. Mater., 179 (2010) 424–430.
- P. Shivaprasad, P.K. Singh, V.K. Saharan, S. George, Synthesis
of nano alumina for defluoridation of drinking water, Nanostruct.
Nano-objects, 13 (2018) 109–120.
- M.V.V.N. Samrat, K.K. Rao, A.K. SenGupta, J. Riotte, J.R. Mudakavi,
Defluoridation of reject water from a reverse osmosis unit
and synthetic water using adsorption, J. Water Process Eng.,
23 (2018) 327–337.
- Z.W. Zhao, C. Geng, C. Yang, F.Y. Cui, Z.J. Liang, A novel flakeball-
like magnetic Fe3O4/γ-MnO2 meso-porous nano-composite:
adsorption of fluorinion and effect of water chemistry,
Chemosphere, 209 (2018) 173–181.
- S. Gaurab, M.M. Shihabudheen, P.C. Sabumon, T. Pradeep,
A low cost approach to synthesize sand like A1OOH
nanoarchitecture (SANA) and its application in defluoridation
of water, J. Environ. Chem. Eng., 510 (2014) 1–9.
- N.A. Oladoja, M.L. Seifert, J.E. Drewes, B. Helmreich,
Influence of organic load on the defluoridation efficiency of
nano-magnesium oxide in groundwater, Sep. Purif. Technol., 174
(2017) 116–125.
- D. Dayananda, V.R. Sarva, S.V. Prasad, J. Arunachalam,
P. Parameswaran, N.N. Ghosh, Synthesis of MgO nanoparticle
loaded mesoporous Al2O3 and its defluoridation study, Appl.
Surf. Sci., 329 (2015) 1–10.
- P. Chinnakoti, R.K. Vankayala, A.L.A. Chunduri, L.R. Nagappagari,
S.V. Muthukonda, V. Kamisetti, Trititanate nanotubes
as highly efficient adsorbent for fluoride removal from water:
adsorption performance and uptake mechanism, J. Environ.
Chem. Eng., 4 (2016) 4754–4768.
- H.M. Dehghani, G.A. Haghighat, K. Yetilmezsoy, G. McKay,
B. Heibati, I. Tyagi, S. Agarwal, V.K. Gupta, Adsorptive removal
of fluoride from aqueous solution using single- and multiwalled
carbon nanotubes, J. Mol. Liq., 216 (2016) 401–410.
- L.N. Affonso, J.L. Marques Jr., V.V.C. Lima, J.O. Gonçalves,
S.C. Barbosa, E.G. Primel, T.A.L. Burgo, G.L. Dotto,
L.A.A. Pinto, T.R.S. Cadaval Jr., Removal of fluoride from
fertilizer industry effluent using carbon nanotubes stabilized
in chitosan sponge, J. Hazard. Mater., 388 (2020) 122042.
- Y.-H. Li, S.G. Wang, X.F. Zhang, J.Q. Wei, C.L. Xu, Z.K. Luan,
D.H. Wu, Adsorption of fluoride from water by aligned
carbon nanotubes, Mater. Res. Bull., 38 (2003) 469–476.
- Z.C. Yu, C.H. Xu, K.K. Yuan, X.Z. Gan, C. Feng, X.Q. Wang,
L.Y. Zhu, G.H. Zhang, D. Xu, Characterization and adsorption
mechanism of ZrO2 mesoporous fibers for health-hazardous
fluoride removal, J. Hazard. Mater., 346 (2018) 82–92.
- Y. Tian, M. Wu, R.G. Liu, D.Q. Wang, X.B. Lin, W.L. Liu, L. Ma,
Y.D. Li, Y. Huang, Modified native cellulose fibers—a novel
efficient adsorbent for both fluoride and arsenic, J. Hazard.
Mater., 185 (2011) 93–100.
- S. Roy, S. Manna, S. Sengupta, A. Ganguli, S. Goswami,
P. Das, Comparative assessment on defluoridation of waste
water using chemical and bio-reduced graphene oxide: batch,
thermodynamic, kinetics and optimization using response
surface methodology and artificial neural network, Process
Saf. Environ. Prot., 111 (2017) 221–231.
- S.M. Prabhu, M. Subaramanian, S. Meenakshi, A simple
one-pot in-situ method for the synthesis of aluminum and
lanthanum binary oxyhydroxides in chitosan template towards
defluoridation of water, Chem. Eng. J., 283 (2016) 1081–1089.
- D. Mehta, P. Mondal, V.K. Saharan, S. George, In-vitro
synthesis of marble apatite as a novel adsorbent for removal
of fluoride ions from ground water: an ultrasonic approach,
Ultrason. Sonochem., 40 (2018) 664–674.
- S. Rajkumar, S. Murugesh, V. Sivasankar, A. Darchen,
T.A.M. Msagati, T. Chaabane, Low-cost fluoride adsorbents
prepared from a renewable biowaste: syntheses, characterization
and modeling studies, Arabian J. Chem., 12 (2019)
3004–3017.
- Y.Y. Ye, J. Yang, W. Jiang, J.X. Kang, Y. Hu, H.H. Ngo, W.S. Guo,
Y.W. Liu, Fluoride removal from water using a magnesiapullulan
composite in a continuous fixed-bed column,
J. Environ. Manage., 206 (2018) 929–937.
- Y.Y. Ye, W.B. Liu, W. Jiang, J.X. Kang, H.H. Ngo, W.S. Guo,
Y.W. Liu, Defluoridation by magnesia–pullulan: surface
complexation modeling and pH neutralization of treated
fluoride water by aluminum, J. Taiwan Inst. Chem. Eng.,
93 (2018) 625–631.
- S. Dubey, M. Agarwal, A.B. Gupta, Experimental Investigation
of Al-F species formation and transformation during
coagulation for fluoride removal using alum and PACl, J. Mol.
Liq., 266 (2018) 349–360.
- Z. He, R.P. Liu, J. Xu, H.J. Liu, J.H. Qu, Defluoridation by
Al-based coagulation and adsorption: species transformation
of aluminum and fluoride, Sep. Purif. Technol., 148 (2015)
68–75.
- R.P. Liu, B. Liu, L.J. Zhu, Z. He, J.W. Ju, H.C. Lan, H.J. Liu,
Effects of fluoride on the removal of cadmium and phosphate
by aluminum coagulation, Int. J. Environ. Sci. (China),
32 (2015) 118–125.
- Y.H. Gan, X.M. Wang, L. Zhang, B.D. Wu, G.Y. Zhang,
S.J. Zhang, Coagulation removal of fluoride by zirconium
tetrachloride: performance evaluation and mechanism analysis,
Chemosphere, 218 (2019) 860–868.
- A.K. Tolkou, M. Mitrakas, I.A. Katsoyiannis, M. Ernst,
A.I. Zouboulis, Fluoride removal from water by composite
Al/Fe/Si/Mg pre-polymerized coagulants: characterization
and application, Chemosphere, 231 (2019) 528–537.
- F. Venditti, F. Cuomo, G. Giansalvo, M. Giustini, G. Cinelli,
F. Lopez, Fluorides decontamination by means of aluminum
polychloride based commercial coagulant, J. Water Process
Eng., 26 (2018) 182–186.
- W.-X. Gong, J.-H. Qu, R.-P. Liu, H.-C. Lan, Effect of aluminum
fluoride complexation on fluoride removal by coagulation,
Colloids Surf., A, 395 (2012) 88–93.
- G.H. Zhang, Y. Gao, Y. Zhang, P. Gu, Removal of fluoride from
drinking water by a membrane coagulation reactor (MCR),
Desalination, 177 (2005) 143–155.
- B. Palahouane, N. Drouiche, S. Aoudj, K. Bensadok, Costeffective
electrocoagulation process for the remediation of
fluoride from pretreated photovoltaic wastewater, J. Ind. Eng.
Chem., 22 (2015) 127–131.
- N. Drouiche, S. Aoudj, H. Lounici, M. Drouiche, T. Ouslimane,
N. Ghaffour, Fluoride removal from pretreated photovoltaic
wastewater by electrocoagulation: an investigation of the
effect of operational parameters, Procedia Eng., 33 (2012)
385–391.
- M.M. Emamjomeh, M. Sivakumar, A.S. Varyani, Analysis and
the understanding of fluoride removal mechanisms by an
electrocoagulation/flotation (ECF) process, Desalination, 275
(2011) 102–106.
- D. Das, B.K. Nandi, Simultaneous removal of fluoride and
Fe(II) ions from drinking water by electrocoagulation,
J. Environ. Chem. Eng., 8 (2020) 103643.
- N.B. Grich, A. Attour, M. Le Page Mostefa, S. Guesmi,
M. Tlili, F. Lapicque, Fluoride removal from water by electrocoagulation:
effect of the type of water and the experimental
parameters, Electrochim. Acta, 316 (2019) 257–265.
- J.F.A. Silva, N.S. Graça, A.M. Ribeiro, A.E. Rodrigues,
Electrocoagulation process for the removal of co-existent
fluoride, arsenic and iron from contaminated drinking water,
Sep. Purif. Technol., 197 (2018) 237–243.
- M. Behbahani, M.R. Alavi Moghaddam, M. Arami, Technoeconomical
evaluation of fluoride removal by electrocoagulation
process: optimization through response surface
methodology, Desalination, 271 (2011) 209–218.
- U.T. Un, A.S. Koparal, U.B. Ogutveren, Fluoride removal from
water and wastewater with a bach cylindrical electrode using
electrocoagulation, Chem. Eng. J., 223 (2013) 110–115.
- M. López-Guzmán, M.T. Alarcón-Herrera, J.R. Irigoyen-
Campuzano, L.A. Torres-Castañón, L. Reynoso-Cuevas,
Simultaneous removal of fluoride and arsenic from well
water by electrocoagulation, Sci. Total Environ., 678 (2019)
181–187.
- M. Rosales, O. Coreño, J.L. Nava, Removal of hydrated silica,
fluoride and arsenic from groundwater by electrocoagulation
using a continuous reactor with a twelve-cell stack,
Chemosphere, 211 (2018) 149–155.
- A. Oulebsir, T. Chaabane, S. Zaidi, K. Omine, V. Alonzo,
A. Darchen, T.A.M. Msagati, V. Sivasankar, Preparation of
mesoporous alumina electro-generated by electrocoagulation
in NaCl electrolyte and application in fluoride removal with
consistent regenerations, Arabian J. Chem., 13 (2020) 271–289.
- L.S. Thakur, H. Goyal, P. Mondal, Simultaneous removal
of arsenic and fluoride from synthetic solution through
continuous electrocoagulation: operating cost and sludge
utilization, J. Environ. Chem. Eng., 7 (2019) 102829.
- P.C. Patnaik, S.K. Swain, S.B. Patel, T. Patnaik, F. Muller,
S. Delpeux-Ouldriane, S. Das, R.K. Dey, Kinetics and thermodynamics
of defluoridation of drinking water using high
performance hybrid zirconium(IV)-hexamethylenediamine:
a comparative aspect with ion-exchanger amorphous
zirconium (IV) phosphate, Surf. Interfaces, 13 (2018) 22–32.
- L. Gómez-Hortigüela, A.B. Pinar, J. Pérez-Pariente, T. Sani,
Y. Chebude, I. Díaz, Ion-exchange in natural zeolite stilbite
and significance in defluoridation ability, Microporous
Mesoporous Mater., 193 (2014) 93–102.
- Y.-X. Zhang, Y. Jia, Fluoride adsorption on manganese
carbonate: ion-exchange based on the surface carbonate-like
groups and hydroxyl groups, J. Colloid Interface Sci., 510
(2018) 407–417.
- R. Li, X. Tian, I. Ashraf, B. Chen, Fluoride removal using
a chelating resin containing phosphonic-sulfonic acid
bifunctional group, J. Chromatogr. A, 1613 (2020) 460697.
- D.H. Phillips, B.S. Gupta, S. Mukhopadhyay, A.K.S Gupta,
Arsenic and fluoride removal from contaminated drinking
water with Haix-Fe-Zr and Haix-Zr resin beads, J. Environ.
Manage., 215 (2018) 132–142.
- I.B. Solangi, S. Memon, M.I. Bhanger, Removal of fluoride
from aqueous environment by modified Amberlite resin,
J. Hazard. Mater., 171 (2009) 815–819.
- G.J. Millar, S.J. Couperthwaite, D.B. Wellner, D.C. Macfarlane,
S.A. Dalzell, Removal of fluoride ions from solution by
chelating resin with imino-diacetate functionality, J. Water
Process Eng., 171 (2009) 815–819.
- J. Singh, P. Singh, A. Singh, Fluoride ions vs. removal
technologies: a study, Arabian J. Chem., 9 (2016) 815–824.
- M.M. Damtie, Y.C. Woo, B.C. Kim, R.H. Hailemariam,
K.-D. Park, H.K. Shon, C. Park, J.-S. Choi, Removal of
fluoride in membrane-based water and wastewater
treatment technologies: performance review, J. Environ.,
251 (2019) 109524.
- K. Hu, J.M. Dickson, Nanofiltration membrane performance
on fluoride removal from water, J. Membr. Sci., 279 (2006)
529–538.
- R. Kettunen, P. Keskitalo, Combination of membrane
technology and limestone filtration to control drinking water
quality, Desalination, 131 (2000) 271–283.
- P. Senthil Kumar, S. Suganya, S. Srinivas, S. Priyadharshini,
M. Karthika, R. Karishma Sri, V. Swetha, Mu. Naushad,
E. Lichtfouse, Treatment of fluoride-contaminated water.
A review, Environ. Chem. Lett., 17 (2019) 1707–1726.
- P. Sehn, Fluoride removal with extra low energy reverse
osmosis membranes: three years of large scale field experience
in Finland, Desalination, 223 (2008) 73–84.
- H.Y. Liu, J. Zhang, M. Lu, L. Liang, H. Zhang, J.F. Wei,
Biosynthesis based membrane filtration coupled with iron
nanoparticles reduction process in removal of dyes, Chem.
Eng. J., 387 (2020) 124202.
- J. Nunes-Pereira, R. Lima, G. Choudhary, P.R. Sharma,
S. Ferdov, G. Botelho, R.K. Sharma, S. Lanceros-Méndez,
Highly efficient removal of fluoride from aqueous media
through polymer composite membranes, Sep. Purif. Technol.,
205 (2018) 1–10.
- D. Ghosh, M.K. Sinha, M.K. Purkait, A comparative analysis
of low-cost ceramic membrane preparation for effective
fluoride removal using hybrid technique, Desalination,
327 (2013) 2–13.
- G. Singh, B. Kumari, G. Sinam, N. Kumar, S. Mallick,
Fluoride distribution and contamination in the water, soil and
plants continuum and its remedial technologies, an Indian
perspective–a review, Environ. Pollut., 239 (2018) 95–108.
- S. Al-Amshawee, M.Y.B.M. Yunus, A.A.M. Azoddein,
D.G. Hassell, I.H. Dakhil, H.A. Hasan, Electrodialysis desalination
for water and wastewater: a review, Chem. Eng. J.,
380 (2020) 122231.
- F.D. Belkada, O. Kitous, N. Drouiche, S. Aoudj, O. Bouchelaghem,
N. Abdi, H. Grib, N. Mameri, Electrodialysis for
fluoride and nitrate removal from synthesized photovoltaic
industry wastewater, Sep. Purif. Technol., 204 (2018) 108–115.
- N. Kabay, Ö. Arar, S. Samatya, Ü. Yüksel, M. Yüksel, Separation
of fluoride from aqueous solution by electrodialysis: effect of
process parameters and other ionic species, J. Hazard. Mater.,
153 (2008) 107–113.
- N. Arahman, S. Mulyati, M.R. Lubis, R. Takagi, H. Matsuyama,
The removal of fluoride from water based on applied
current and membrane types in electrodialyis, J. Fluorine
Chem., 191 (2016) 97–102.
- M. Zeni, R. Riveros, K. Melo, R. Primieri, S. Lorenzini,
Study on fluoride reduction in artesian well—water from
electrodialysis process, Desalination, 185 (2005) 241–244.
- M.A. Menkouchi Sahli, S. Annouar, M. Tahaikt, M. Mountadar,
A. Soufiane, A. Elmidaoui, Fluoride removal for underground
brackish water by adsorption on the natural chitosan and by
electrodialysis, Desalination, 212 (2007) 37–45.
- Z. Amor, B. Bariou, N. Mameri, M. Taky, S. Nicolas,
A. Elmidaoui, Fluoride removal from brackish water by
electrodialysis, Desalination, 133 (2001) 215–223.
- D.C. Patrocínio, C.C.N. Kunrath, M.A.S. Rodrigues, T. Benvenuti,
F.D.R. Amado, Concentration effect and operational
parameters on electrodialysis reversal efficiency applied for
fluoride removal in groundwater, J. Environ. Chem. Eng.,
7 (2019) 103491.
- Y.-M. Chao, T.M. Liang, A feasibility study of industrial
wastewater recovery using electrodialysis reversal, Desalination,
221 (2008) 433–439.
- N.B. Goodman, R.J. Taylor, Z.L. Xie, Y. Gozukara, A. Clements,
A feasibility study of municipal wastewater desalination
using electrodialysis reversal to provide recycled water for
horticultural irrigation, Desalination, 317 (2013) 77–83.
- L.E. Bacher, C. de Oliveira, A. Giacobbo, T. Benvenuti,
A.B. Lacerda, A.M. Bernardes, M.A.S. Rodrigues, Coupling
coagulation using tannin-based product with electrodialysis
reversal to water treatment: a case study, J. Environ. Chem.
Eng., 5 (2017) 6008–6015.
- S.S. Waghmare, T. Arfin, Fluoride removal from water
by various techniques: review, Int. J. Innovative Sci. Eng.
Technol., 2 (2015) 560–571.
- A. Tor, Removal of fluoride from water using anion-exchange
membrane under Donnan dialysis condition. J. Hazard.
Mater., 141 (2007) 814–818.
- A. Boubakri, N. Helali, M. Tlili, M.B. Amor, Fluoride removal
from diluted solutions by Donnan dialysis using full factorial
design, Korean J. Chem. Eng., 31 (2014) 461–466.
- D.Y. Hou, J. Wang, C.W. Zhao, B.Q. Wang, Z.K. Luan,
X.C. Sun, Fluoride removal from brackish groundwater by
direct contact membrane distillation, J. Environ. Sci., 22 (2010)
1860–1867.
- A. Boubakri, R. Bouchrit, A. Hafiane, S. Al-Tahar Bouguecha,
Fluoride removal from aqueous solution by direct contact
membrane distillation: theoretical and experimental studies,
Environ. Sci. Pollut. Res., 21 (2014) 10493–10501.
- S. Yarlagadda, V.G. Gude, L.M. Camacho, S. Pinappu,
S. Deng, Potable water recovery from As, U, and F contaminated
ground waters by direct contact membrane distillation
process, J. Hazard. Mater., 192 (2011) 1388–1394.
- A. Ayati, S. Ranjbari, B. Tanhaei, M. Sillanpää, Ionic liquidmodified
composites for the adsorptive removal of emerging
water contaminants: a review, J. Mol. Liq., 275 (2019) 71–83.
- K.K. Yadav, N. Gupta, V. Kumar, S.A. Khan, A. Kumar,
A review of emerging adsorbents and current demand for
defluoridation of water: bright future in water sustainability,
Environ. Int., 111 (2018) 80–108.
- M. Barathi, A.S.K. Kumar, N. Rajesh, Impact of fluoride in
potable water – an outlook on the existing defluoridation
strategies and the road ahead, Coord. Chem. Rev., 387 (2019)
121–128.
- S. Mukherjee, G. Halder, A review on the sorptive elimination
of fluoride from contaminated wastewater, J. Environ. Chem.
Eng., 6 (2018) 1257–1270.
- L.H. Velazquez-Jimenez, E. Vences-Alvarez, J.L. Flores-Arciniega, H. Flores-Zuñiga, J.R. Rangel-Mendez, Water
defluoridation with special emphasis on adsorbentscontaining
metal oxides and/or hydroxides: a review, Sep.
Purif. Technol., 150 (2015) 292–307.
- K.K. Yadav, S. Kumar, Q.B. Pham, N. Gupta, S. Rezania,
H. Kamyab, S. Yadav, J. Vymazal, V. Kumar, D.Q. Tri,
A. Talaiekhozani, S. Prasad, L.M. Reece, N. Singh, P.K. Maurya,
J.W. Cho, Fluoride contamination, health problems and
remediation methods in Asian groundwater: a comprehensive
review, Ecotoxicol. Environ. Saf., 182 (2019) 109362.
- S. George, D. Mehta, V.K. Saharan, Application of
hydroxyapatite and its modified forms as adsorbents for
water defluoridation: an insight into process synthesis, Rev.
Chem. Eng., 36 (2018) 369–400.
- S. Ali, Y. Fakhri, M. Golbini, S.K. Thakur, A. Alinejad, I. Parseh,
S. Shekhar, P. Bhattacharya, Concentration of fluoride in
groundwater of India: a systematic review, meta-analysis
and risk assessment, Groundwater Sustainable Dev., 9 (2019)
100224.
- S.K. Nath, R.K. Dutta, Acid-enhanced limestone defluoridation
in column reactor using oxalic acid, Proc. Saf. Environ. Prot.,
90 (2012) 65–75.
- K. Singh, D.H. Lataye, K.L. Wasewar, C.K. Yoo, Removal of
fluoride from aqueous solution: status and techniques, Desal.
Water Treat., 51 (2013) 3233–3247.
- M. Chaudhary, A. Maiti, Defluoridation by highly efficient
calcium hydroxide nanorods from synthetic and industrial
wastewater, Colloids Surf., A, 561 (2019) 79–88.
- V. Khatibikamal, A. Torabian, F. Janpoor, G. Hoshyaripour,
Fluoride removal from industrial wastewater using
electrocoagulation and its adsorption kinetics, J. Hazard.
Mater., 179 (2010) 276–280.
- N.A. Oladoja, B. Helmreich, H.A. Bello, Towards the development
of a reactive filter from green resource for groundwater
defluoridation, Chem. Eng. J., 301 (2016) 166–177.
- N.A. Oladoja, Y. Liu, J.E. Drewes, B. Helmreich, Preparation
and characterization of a reactive filter for groundwater
defluoridation, Chem. Eng. J., 283 (2016) 1154–1167.
- S. Kahu, A. Shekhawat, D. Saravanan, R. Jugade, Stannic
chloride impregnated chitosan for defluoridation of water,
Int. J. Biol. Macromol., 104 (2017) 1528–1538.
- A.A.G.D. Amarasooriya, T. Kawakami, Removal of fluoride,
hardness and alkalinity from groundwater by electrolysis,
Groundwater Sustainable Dev., 9 (2019) 100231.
- T. Sani, L. Gómez-Hortigüela, Á. Mayoral, Y. Chebude,
J. Pérez-Pariente, I. Díaz, Controlled growth of nanohydroxyapatite
on stilbite: defluoridation performance,
Microporous Mesoporous Mater., 254 (2017) 86–95.
- N. Habibi, P. Rouhi, B. Ramavandi, Synthesis of adsorbent
from Tamarix hispida and modified by lanthanum metal
for fluoride ions removal from wastewater: adsorbent
characteristics and real wastewater treatment data, Data
Brief, 13 (2017) 49–754.
- V.F. Mena, A. Betancor-Abreu, S. González, S. Delgado,
R.M. Souto, J.J. Santana, Fluoride removal from natural
volcanic underground water by an electrocoagulation
process: parametric and cost evaluations, J. Environ. Manage.,
246 (2019) 472–483.
- A. Elhalil, S. Qourzal, F.Z. Mahjoubi, R. Elmoubarki,
M. Farnane, H. Tounsadi, M. Sadiq, M. Abdennouri, N. Barka,
Defluoridation of groundwater by calcined Mg/Al layered
double hydroxide, Emerging Contam., 2 (2016) 42–48.
- L.L. Albornoz, L. Marder, T. Benvenuti, A.M. Bernardes,
Electrodialysis applied to the treatment of an university
sewage for water recovery, J. Environ. Chem. Eng., 7 (2019)
102982.
- G.T. Adithya, S. Rangabhashiyam, C. Sivasankari,
Lanthanum‑iron binary oxide nanoparticles: as cost-effective
fluoride adsorbent and oxygen gas sensor, Microchem. J.,
148 (2019) 364–373.
- S.I. Bouhadjar, H. Kopp, P. Britsch, S.A. Deowan, J. Hoinkis,
J. Bundschuh, Solar powered nanofiltration for drinking
water production from fluoride-containing groundwater – a
pilot study towards developing a sustainable and low-cost
treatment plant, J. Environ. Manage., 231 (2019) 1263–1269.
- M. Changmai, M. Pasawan, M.K. Purkait, A hybrid method
for the removal of fluoride from drinking water: parametric
study and cost estimation, Sep. Purif. Technol., 206 (2018)
140–148.
- S. Lahnid, M. Tahaikt, K. Elaroui, I. Idrissi, M. Hafsi, I. Laaziz,
Z. Amor, F. Tiyal, A. Elmidaoui, Economic evaluation of
fluoride removal by electrodialysis, Desalination, 230 (2008)
213–219.
- D. Mohanta, Md. Ahmaruzzaman, Biosorption of arsenite and
fluoride from aqueous solutions using activated carbon@SnO2
nanocomposites: isotherms, kinetics, thermodynamics, cost
estimation and regeneration studies, J. Environ. Chem. Eng.,
6 (2018) 356–366.
- L.S. Thakur, P. Mondal, Simultaneous arsenic and
fluoride removal from synthetic and real groundwater by
electrocoagulation process: parametric and cost evaluation,
J. Environ. Manage., 190 (2017) 102–112.