References
- A.A. Emam, M. Fathy, R. Hosny, A.S. Naeim, Surface
modification of TiO2@Pvc composite membrane for textile
dye house (Brome Phenol Blue) filtration, Pet. Chem. Ind. Int.,
3 (2020) 10–14.
- A. Hasanbeigi, Energy-Efficiency Improvement Opportunities
for the Textile Industry, Lawrence Berkeley National Lab.
(LBNL), Berkeley, CA, 2010.
- D.P. Loucks, E. Van Beek, Water Resource Systems Planning
and Management: An Introduction to Methods, Models, and
Applications, Springer, Cham, 2017.
- J. Mittal, Permissible synthetic food dyes in India, J. Sci. Educ.,
25 (2020) 567–577.
- S. Wong, N.A.N. Yac’cob, N. Ngadi, O. Hassan, I.M. Inuwa,
From pollutant to solution of wastewater pollution: synthesis
of activated carbon from textile sludge for dye adsorption,
Chin. J. Chem. Eng., 26 (2018) 870–878.
- I. Anastopoulos, I. Pashalidis, A.G. Orfanos, I.D. Manariotis,
T. Tatarchuk, L. Sellaouid, A. Bonilla-Petriciolete, A. Mittal,
A. Núñez-Delgado, Removal of caffeine, nicotine and amoxicillin
from (waste) waters by various adsorbents. A review, J. Environ.
Manage., 261 (2020) 110236, doi: 10.1016/j.jenvman.2020.
110236.
- S. Soni, P.K. Bajpai, J. Mittal, C. Arora, Utilisation of cobalt
doped iron based MOF for enhanced removal and recovery of
methylene blue dye from wastewater, J. Mol. Liq., 314 (2020)
113642, doi: 10.1016/j.molliq.2020.113642.
- C. Arora, S. Soni, S. Sahu, J. Mittal, P. Kumar, P.K. Bajpai,
Iron based metal organic framework for efficient removal
of methylene blue dye from industrial waste, J. Mol. Liq.,
284 (2019) 343–352.
- I. Anastopoulos, A. Mittal, M. Usman, J. Mittal, G. Yu,
A. Núñez-Delgado, M. Kornaros, A review on halloysite-based
adsorbents to remove pollutants in water and wastewater,
J. Mol. Liq., 269 (2018) 855–868.
- A. Mittal, J. Mittal, Chapter 11 – Hen Feather: A Remarkable
Adsorbent for Dye Removal, S.K. Sharma, Ed., Green Chemistry
for Dyes Removal from Wastewater, Scrivener Publishing
LLC, USA, 2015, pp. 409–457.
- G.T. Güyer, K. Nadeem, N. Dizge, Recycling of pad-batch
washing textile wastewater through advanced oxidation
processes and its reusability assessment for Turkish textile
industry, J. Cleaner Prod., 139 (2016) 488–494.
- M. Keshawy, M. Fathy, A. Gaafar, R. Hosny, T. Abd Elmoghny,
Low-cost bio-adsorbent based on amorphous carbon thin film/
chitosan composite for removal of methylene blue dye from
aqueous solutions: kinetic and isotherm, Egypt. J. Chem.,
62 (2019) 2313–2329.
- C. Yu, X. Huang, H. Chen, H.C.J. Godfray, J.S. Wright,
J.W. Hall, P. Gong, S. Ni, S. Qiao, G. Huang, Managing nitrogen
to restore water quality in China, Nature, 567 (2019) 516–520.
- M. Qadir, B.R. Sharma, A. Bruggeman, R. Choukr-Allah,
F. Karajeh, Non-conventional water resources and opportunities
for water augmentation to achieve food security in
water scarce countries, Agric. Water Manage., 87 (2007) 2–22.
- M. Salgot, M. Folch, Wastewater treatment and water reuse,
Curr. Opin. Environ. Sci. Health, 2 (2018) 64–74.
- N.R. Council, Water Reuse: Potential for Expanding the Nation’s
Water Supply Through Reuse of Municipal Wastewater,
National Academies Press, Washington, DC, 2012.
- R. Hosny, M. Fathy, O.H. Abd Elraheem, M.A. Zayed, Utilization
of cross-linked chitosan/ACTF biocomposite for softening hard
water: optimization by adsorption modeling, Egypt. J. Chem.,
62 (2019) 437–456.
- A.F.M. Udaiyappan, H.A. Hasan, M.S. Takriff, S.R.S. Abdullah,
A review of the potentials, challenges and current status of
microalgae biomass applications in industrial wastewater
treatment, J. Water Process Eng., 20 (2017) 8–21.
- A. Deegan, B. Shaik, K. Nolan, K. Urell, M. Oelgemöller,
J. Tobin, A. Morrissey, Treatment options for wastewater
effluents from pharmaceutical companies, Int. J. Environ. Sci.
Technol., 8 (2011) 649–666.
- P. Krzeminski, M.C. Tomei, P. Karaolia, A. Langenhoff,
C.M.R. Almeida, E. Felis, F. Gritten, H.R. Andersen, T. Fernandes,
C.M. Manaia, Performance of secondary wastewater treatment
methods for the removal of contaminants of emerging concern
implicated in crop uptake and antibiotic resistance spread:
a review, Sci. Total Environ., 648 (2019) 1052–1081.
- B. Van der Bruggen, Ç.B. Canbolat, J. Lin, P. Luis, The Potential
of Membrane Technology for Treatment of Textile Wastewater,
A. Figoli, A. Criscuoli, Eds., Sustainable Membrane Technology
for Water and Wastewater Treatment, Springer, Singapore,
2017, pp. 349–380.
- C.A. López-Morales, L. Rodríguez-Tapia, On the economic
analysis of wastewater treatment and reuse for designing
strategies for water sustainability: lessons from the Mexico
Valley Basin, Resour. Conserv. Recycl., 140 (2019) 1–12.
- K. Senthilkumar, A. Mollier, M. Delmas, S. Pellerin, T. Nesme,
Phosphorus recovery and recycling from waste: an appraisal
based on a French case study, Resour. Conserv. Recycl.,
87 (2014) 97–108.
- A. Ahmad, S.H. Mohd-Setapar, C.S. Chuong, A. Khatoon,
W.A. Wani, R. Kumar, M. Rafatullah, Recent advances in new
generation dye removal technologies: novel search for approaches
to reprocess wastewater, RSC Adv., 5 (2015) 30801–30818.
- M.F. Tay, C. Liu, E.R. Cornelissen, B. Wu, T.H. Chong, The
feasibility of nanofiltration membrane bioreactor (NF-MBR)+
reverse osmosis (RO) process for water reclamation: comparison
with ultrafiltration membrane bioreactor (UF-MBR)+ RO
process, Water Res., 129 (2018) 180–189.
- I. Petrinic, J. Korenak, D. Povodnik, C. Hélix-Nielsen, A
feasibility study of ultrafiltration/reverse osmosis (UF/RO)-based wastewater treatment and reuse in the metal finishing
industry, J. Cleaner Prod., 101 (2015) 292–300.
- K. Wieszczycka, K. Staszak, Polymers in separation processes,
Phys. Sci. Rev., 2 (2017) 32.
- Z. Yang, Y. Zhou, Z. Feng, X. Rui, T. Zhang, Z. Zhang,
A review on reverse osmosis and nanofiltration membranes
for water purification, Polymers, 11 (2019) 1252, doi: 10.3390%
2Fpolym11081252.
- O.D. Ojajuni, Removal of Organic Micropollutants in Water
Using Surface Modified Membrane Systems, University of
Surrey, 2017.
- M. Barakat, E. Schmidt, Polymer-enhanced ultrafiltration
process for heavy metals removal from industrial wastewater,
Desalination, 256 (2010) 90–93.
- K.N. Jacob, S.S. Kumar, A. Thanigaivelan, M. Tarun, D. Mohan,
Sulfonated polyethersulfone-based membranes for metal ion
removal via a hybrid process, J. Mater. Sci., 49 (2014) 114–122.
- J. Hasnidawani, H. Azlina, H. Norita, N. Bonnia, S. Ratim,
E. Ali, Synthesis of ZnO nanostructures using sol–gel method,
Procedia Chem., 19 (2016) 211–216.
- R. Singh, K.K. Mohanty, Foams stabilized by in-situ surfaceactivated
nanoparticles in bulk and porous media, Soc. Pet. Eng.
J., 21 (2016) 121–130.
- D.N. Yadav, K.A. Kishore, B. Bethi, S.H. Sonawane,
D. Bhagawan, ZnO nanophotocatalysts coupled with ceramic
membrane method for treatment of Rhodamine-B dye
wastewater, Environ. Dev. Sustainability, 20 (2018) 2065–2078.
- I.M. Banat, P. Nigam, D. Singh, R. Marchant, Microbial
decolorization of textile-dyecontaining effluents: a review,
Bioresour. Technol., 58 (1996) 217–227.
- C. Namasivayam, M.D. Kumar, K. Selvi, R.A. Begum,
T. Vanathi, R. Yamuna, ‘Waste’coir pith—a potential biomass
for the treatment of dyeing wastewaters, Biomass Bioenergy,
21 (2001) 477–483.
- E. Evgenidou, K. Fytianos, I. Poulios, Semiconductor-sensitized
photodegradation of dichlorvos in water using TiO2 and ZnO
as catalysts, Appl. Catal., B, 59 (2005) 81–89.
- A. Gouthaman, A. Gnanaprakasam, V. Sivakumar, M. Thirumarimurugan,
M.A.R. Ahamed, R. Azarudeen, Enhanced
dye removal using polymeric nanocomposite through
incorporation of Ag doped ZnO nanoparticles: synthesis and
characterization, J. Hazard. Mater., 373 (2019) 493–503.
- M. Landarani, M.A. Chamjangali, B. Bahramian, Preparation
and characterization of a novel chemically modified PVC
adsorbent for methyl orange removal: optimization, and study
of isotherm, kinetics, and thermodynamics of adsorption
process, Water Air Soil Pollut., 231 (2020) 1–17.
- M. Fathy, H.R. Ali, Y.M. Moustafa, A. El Shahawy, Removal
of suspended matter and salts on ultrafiltration cellulose
acetate/expanded polystyrene waste grafted PEG composite
membrane, Desal. Water Treat., 197 (2020) 30–40.
- M. Fathy, A. El Shahawy, T. Moghny, A. Nafady, Enhanced
desalination process using a Cu–ZnO-polyvinyl chloride-nylon
nanofiltration membrane as a calcite antiscalant in reverse
osmosis, Mater. Express, 10 (2020) 671–679.
- H. Hassan, M.S. Ahmed, M. Fathy, M.S. Yousef, Impact of salty
water medium and condenser on the performance of single
acting solar still incorporated with parabolic trough collector,
Desalination, 480 (2020) 114324, doi: 10.1016/j.desal.2020.114324.
- A.M. Zayed, M. Fathy, M. Sillanpää, M.S.M.A. Wahed, Talcgraphite
schist as a natural organo-mineral complex for
methylene blue remediation: kinetic and isotherm study,
SN Appl. Sci., 2 (2020) 1–17.