References
- https://www.ipcc.ch/2023/03/20/press-release-ar6-synthesis-report/
- N. Drouiche, S. Aoudj, M. Hecini, N. Ghaffour, H. Lounici,
N. Mameri, Study on the treatment of photovoltaic wastewater
using electrocoagulation: fluoride removal with aluminium
electrodes-characteristics of products, J. Hazard. Mater.,
169 (2009) 65–69.
- Y.S. Tsuo, J.M. Gee, P. Menna, D.S. Strebkov, A. Pinov, V. Zadde,
Environmentally Benign Silicon Solar Cell Manufacturing,
Presented at the 2nd World Conference and Exhibition on
Photovoltaic Solar Energy Conversion, Vienna, Austria, 6–10
July, 1998.
- N. Drouiche, N. Ghaffour, H. Lounici, M. Mameri,
Electrocoagulation of chemical mechanical polishing
wastewater, Desalination, 214 (2007) 31–37.
- http://engineeredenvironment.tumblr.com/post/30464844411/water-use-in-the-semiconductor-manufacturing
- http://www.wmconlon.com/wp-content/uploads/papers/Semicon.pdf
- S. Aoudj, A. Khelifa, N. Drouiche, M. Hecini, Development of
an integrated electrocoagulation–flotation for semiconductor
wastewater treatment, Desal. Water Treat., 55 (2015) 1422–1432.
- https://www.envirochemie.com/en/news-events/news/sustainable-water-technology-for-photovoltaic-moduleproduction/
- https://www.bluetechresearch.com/tools/web-briefings/ultrapure-water-technologies
- N. Drouiche, F. Djouadi-Belkada, T. Ouslimane, A. Kefaifi,
J. Fathi, E. Ahmetovic, Photovoltaic solar cells industry
wastewater treatment, Desal. Water Treat., 51 (2013) 5965–5973.
- A. Cheikh, H. Grib, N. Drouiche, N. Abdi, H. Lounici,
N. Mameri, Water denitrification by a hybrid process combining
a new bioreactor and conventional electrodialysis,
Chem. Eng. Process. Process Intensif., 63 (2013) 1–6.
- https://www.canada.ca/en/health-canada/services/environmental-workplace-health/reports-publications/waterquality/
guidelines-canadian-drinking-water-quality-summarytable.
html
- D. Căilean, C. Teodosiu, I. Volf, B. Ciobanu, Occurrence and
Associated Risk of Nitrates/Nitrites in the Ground Waters
from the North-Eastern Part of Romania, L.I. Simeonov,
M.A. Hassanien, Eds., Exposure and Risk Assessment of Chemical
Pollution — Contemporary Methodology, NATO Science for
Peace and Security Series C: Environmental Security, Springer,
Dordrecht, 2009. doi: 10.1007/978-90-481-2335-3_29
- V.W. Chen, R.R. Abu-Elyazeed, D.E. Zavala, Risk factors
of gastric precancerous lesions in a high-risk Colombian
population. II. Nitrate and nitrite, Nutr. Cancer, 13 (1990) 67–72.
- D. Forman, Are nitrates a significant risk factor in human
cancer?, Cancer Surveys, 8 (1989) 443–458.
- C.Y. Hu, S.L.S. Lo, W.H. Kuan, Effects of co-existing anions
on fluoride removal in electrocoagulation (EC) process using
aluminum electrodes, Water Res., 37 (2003) 4513–4523.
- O. Barbier, L. Arreola-Mendoza, L.M. Del Razo, Molecular
mechanisms of fluoride toxicity, Chem. Biol. Interact.,
188 (2010) 319–333.
- M. Pontié, C.K. Diawara, A. Lhassani, J.-C. Schrotter,
Traitement des eaux destinées à la consommation humaine
[Treatment of water intended for human consumption], Fluor
et Environnement [Fluor Environ.], 301–302 (2006) 106–112.
- S.S. Waghmare, T. Anfir, Fluoride removal from water by
various techniques: review, Int. J. Innovative Sci. Eng. Technol.,
2 (2015) 560–571.
- E. Ergun, A. Tor, Y. Cengeloglu, I. Kocak, Electrodialytic
removal of fluoride from water: effects of process parameters
and accompanying anions, Sep. Purif. Technol., 64 (2008)
147–153.
- F. Djouadi Belkada, Nitrates Adsorption Assays as a First
Treatment Step for the Synthetic Photovoltaic Factory Effluents,
Presented at the 1st International Conference on Materials for
Energy and Environmental Engineering, ICM3E’14, Algiers,
Algeria, 23–25 November, 2014.
- F. Djouadi 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.
- L. Banasiak, A.I. Schäfer, Removal of boron, fluoride and nitrate
in electrodialysis in the presence of organic matter, J. Membr.
Sci., 334 (2009) 101–109.
- N. Abbas, F. Deeba, M. Irfan, M.T. Butt, N. Jamil, R.A. Khan,
Treatability study of arsenic, fluoride and nitrate from drinking
water by adsorption process, J. Chem. Soc. Pak., 36 (2014) 1–4.
- K. Rakesh, S. Prabhakar, K.A. Abhay, K.S. Rakesh, Equilibrium
sorption of fluoride on the activated alumina in aqueous
solution, Desal. Water Treat., 197 (2020) 224–236.
- S. Ramalingam, A. Subramania, Effective removal of nitrates
from the drinking water by chemical and electrochemical
methods, Eng. Sci., 15 (2021) 80–88.
- G. Yujia, Y. Kun, F. Jinxiang, W. Juliang, Q. Weiyi, Manganese
modified activated alumina through impregnation for
enhanced adsorption capacity of fluoride ions, Water, 14 (2022)
1–15.
- H. Tounsi, T. Chaabane, K. Omine, V. Sivasankar, H. Sano,
M. Hecini, A. Darchen, Electrocoagulation in the dual
application on the simultaneous removal of fluoride and nitrate
anions through respective adsorption/reduction processes
and modeling of continuous process, J. Water Process Eng.,
46 (2022) 1–13.
- S.S. Madhu, S.A. Jai. Recent advances in defluoridation of
water using alumina-based adsorbents: a review, Int. J. Res.
Eng. Sci., 11 (2023) 113–121.
- D.S. Perwitasari, Y.A.Y. Pracesa, M.A. Pangestu, P.S. Tola,
Langmuir and Freundlich isotherm approximation on
adsorption mechanism of chrome waste by using tofu dregs,
Nusantara Sci. Technol. Proc., (2021) 106–112.
- F. Gorzin, M.M.B.R. Abadi, Adsorption of Cr(VI) from aqueous
solution by adsorbent prepared from paper mill sludge:
kinetics and thermodynamics studies, Adsorpt. Sci. Technol.,
36 (2018) 149–169.