References
- Ready Made Garments Export Council, Improving the
International Competitiveness of the Textile and Clothing
Sector, No. 207, Egypt, 2017.
- SEAM Project, The Textile Sector: The Textile Industry and its
Effect on the Environment, Part A, 2017, pp. 1–26.
- J.X. Lin, S.L. Zhan, M.H. Fang, X.Q. Qian, H. Yang, Adsorption
of basic dye from aqueous solution onto fly ash, J. Environ.
Manage., 87 (2008) 193–200.
- D.R. Waring, Dyes for Cellulosic Fibers, D.R. Waring, G. Hallas,
Eds., The Chemistry and Application of Dyes, Plenum Press,
New York, 1990.
- F.H. Hussein, Chemical properties of treated textile dyeing
wastewater, Asian J. Chem., 25 (2013) 9393–9400.
- N. Mathur, P. Bhatnagar, P. Bakre, Assessing mutagenicity of
textile dyes from Pali (Rajasthan) using Ames bioassay, Appl.
Ecol. Environ. Res., 4 (2005) 111–118.
- E. Bazrafshan, L. Mohammadi, A. Ansari-Moghaddam,
A. Mahvi, Heavy metals removal from aqueous environments
by electrocoagulation process–a systematic review, J. Environ.
Health Sci. Eng., 13 (2015) 1–16.
- A.N. Bdour, M.R. Hamdi, Z. Tarawneh, Perspectives on
sustainable wastewater treatment technologies and reuse
options in the urban areas of the Mediterranean region,
Desalination, 237 (2009) 162–174.
- A. Jumasiah, T.G. Chuah, J. Gimbon, T.S. Choong, I. Azni,
Adsorption of basic dye onto palm kernel shell activated
carbon: sorption equilibrium and kinetics studies, Desalination,
186 (2005) 57–64.
- R. Kant, Adsorption of dye eosin from an aqueous solution
on two different samples of activated carbon by static batch
method, J. Water Resour. Prot., 4 (2012) 93–98.
- H. Patel, Charcoal as an adsorbent for textile wastewater
treatment, Sep. Sci. Technol., 53 (2018) 2797–2812.
- M.S.U. Rehman, I. Kim, J.I. Han, Adsorption of methylene
blue dye from aqueous solution by sugar extracted spent rice
biomass, Carbohydr. Polym., 90 (2012) 1314–1322.
- A.O. Babatunde, Y.Q. Zhao, Constructive approaches toward
water treatment works sludge management: an international
review of beneficial reuses, Crit. Rev. Env. Sci. Technol.,
37 (2007) 129–164.
- M.M. Fouad, T.M. Razek, A.S. Elgendy, Utilization of drinking
water treatment slurry to produce aluminum sulfate coagulant,
Water Environ. Res., 89 (2017) 186–191.
- K.P. Sharma, S. Sharma, P.K. Singh, S. Kumar, R. Grover,
P.K. Sharma, A comparative study on characterization of textile
wastewaters (untreated and treated) toxicity by chemical and
biological tests, Chemosphere, 69 (2007) 48–54.
- L. Yang, J. Wei, Y.M. Zhang, J.L. Wang, D.T. Wang, Reuse of
acid coagulant-recovered drinking water works sludge residual
to remove phosphorus from wastewater, Appl. Surf. Sci.,
305 (2014) 337–346.
- E. Mahmoud, A. El Baroudy, N. Ali, M. Sleem, Soil amendment
with nanoresidues from water treatment increases P adsorption
in saline soils, Environ. Chem. Lett., 18 (2020) 171–179.
- C.D. Qi, G. Yu, J. Huang, B. Wang, Y.J. Wang, S. Deng, Activation
of persulfate by modified drinking water treatment residuals
for sulfamethoxazole degradation, Chem. Eng. J., 353 (2018)
490–498.
- G.A. Miller, S. Azad, Influence of soil type on stabilization
with cement kiln dust, Constr. Build. Mater., 14 (2000) 89–97.
- M.S. El-Haggar, Utilization of Cement by-Pass Dust for Sludge
Treatment, EEAA Conference on Cement by-Pass Dust, Maadi
Sofetel Hotel, 2002.
- H.G. Ibrahim, E.A. Abushina, Investigation on the removal of
chromium(III) from tannery wastewater by cement kiln dust,
J. Assoc. Arabian Univ. Basic Appl. Sci., 5 (2008) 59–71.
- E. Mahmoud, Cement kiln dust and coal filters treatment
of textile industrial effluents, Desalination, 255 (2010) 175–178.
- A. Amin, S. Selmy, Effect of pH on removal of Cu, Cd, Zn, and
Ni by cement kiln dust in aqueous solution, Commun. Soil Sci.
Plant Anal., 48 (2017) 11–16.
- APHA/AWEF, Standard Methods for Examination of Water
and Wastewater, 19th ed., American Public Health Association/
American Water Environment Federation, Washington, DC,
1995.
- H. Panda, N. Tiadi, M. Mohanty, C. Mohanty, Studies on
adsorption behavior of an industrial waste for removal of
chromium from aqueous solution, South Afr. J. Chem. Eng.,
23 (2017) 132–138.
- E. Mahmoud, Chemical Reclamation of Alexandria Municipal
Wastewater for Unrestricted Irrigation Reuse, M.Sc. Thesis,
Faculty of Agriculture, Alexandria University, 1997.
- W. Stumm, J.J. Morgan, Aquatic Chemistry, Chemical Equilibria
and Rates in Natural Waters, 3rd ed., John Wiley & Sons, Inc.,
New York, 1996.
- A. Babatunde, Y. Zhao, X. Zhao, Alum sludge-based constructed
wetland system for enhanced removal of P and OM from
wastewater: concept, design and performance analysis, Biol.
Technol., 101 (2010) 6576–6579.
- Y. Mountassir, A. Benyaich, P. Berçot, M. Rezrazi, Potential
use of clay in electrocoagulation process of textile wastewater:
treatment performance and flocs characterization, J. Environ.
Chem. Eng., 3 (2015) 2900–2908.
- M. Wołowiec, M. Komorowska-Kaufman, A. Pruss, G. Rzepa,
T. Bajda, Removal of heavy metals and metalloids from water
using drinking water treatment residuals as adsorbents:
a review, Minerals, 9 (2019) 487.
- E.P. Azadeh, S.F. Hashemian, A. Yousefi, Surfactant-modified
wheat straw: preparation, characterization and its application
for methylene blue adsorption from aqueous solution, J. Chem.
Eng. Process. Technol., 6 (2015) 1–9.
- S.A. Abdel-Gawad, M. Hossam, Effective removal of chemical
oxygen demand and phosphates from aqueous medium using
entrapped activated carbon in alginate, MOJ Biol. Med., 3 (2018)
227–236.
- Y.H. Magdy, H. Altaher, E.A. Abdelghany, Equilibrium
and kinetic modeling for the adsorption of three phenolic
compounds onto cement kiln dust, J. Mater. Environ. Sci.,
9 (2018), doi:10.26872/jmes.2018.9.2.63.
- M.B. Desta, Batch sorption experiments: Langmuir and
Freundlich isotherm studies for the adsorption of textile
metal ions onto teff straw (Eragrostis tef) agricultural waste,
J. Thermodyn., 2013 (2013) 1–6.
- M.E.I. Saraya, M.E. Aboul-Fetouh, H.S. Nassar, A.M. Abd-
El-Rahman, Removal of direct dyes with cement kiln dust,
J. Mater. Sci. Eng. B, 1 (2011) 97–105.
- Egyptian Guideline, Standards for the Protection of the River
Nile and Water Streams from Pollution, Ministry of Water
Resources and Irrigation (Law 48/1982), Egypt.
- EPA, Environmental Protection Agency (EPA), Water Quality
Criteria, US, 1993.
- N.G. Zaki, I.A. Khattab, N.M. Abd El-Monem, Removal of some
heavy metals by CKD leachate, J. Hazard. Mater., 147 (2007)
21–27.
- S. Larous, A. Meniai, Removal of copper(II) from aqueous
solution by agricultural by-products-sawdust, Energy Procedia,
18 (2012) 915–923.
- K.D. Quinones, A. Hovsepyan, A. Oppong-Anane, J.C. Bonzongo,
Insights into the mechanisms of mercury sorption
onto aluminum based drinking water treatment residuals,
J. Hazard. Mater., 307 (2016) 184–192.
- E. Siswoyo, Y. Mihara, S. Tanaka, Determination of key
components and adsorption capacity of a low cost adsorbent
based on sludge of drinking water treatment plant to adsorb
cadmium ion in water, Appl. Clay Sci., 97 (2014) 146–152.
- M.B. McBride, Chemisorption and Precipitation Reactions,
M.E. Sumner, Ed., Handbook of Soil Science, CRC Press, Boca
Raton, FL, USA, 2000, pp. 265–302.
- V.K. Gupta, C.K. Jain, I. Ali, M. Sharma, V.K. Saini, Removal
of cadmium and nickel from wastewater using bagasse fly
ash—a sugar industry waste, Water Res., 37 (2003) 4038–4044.
- J.A. Ippolito, K.G. Scheckel, K.A. Barbarick, Selenium
adsorption to aluminum-based water treatment residuals,
J. Colloid Interface Sci., 338 (2009) 48–55.
- M.I. Latif, M.A. Qazi, H. Khan, N. Ahmad, N.I. Khan,
K. Mahmood, Physiochemical treatment of textile industry
effluents, J. Chem. Soc. Pak., 37 (2015) 1033–1039.
- K. Mehmood, S.K. Rehman, J. Wang, F. Farooq, Q. Mahmood,
A.M. Jadoon, M.F. Javed, I. Ahmad, Treatment of pulp and
paper industrial effluent using physicochemical process for
recycling, Water, 11 (2019) 1–5.