References
- R. Thiruvenkatachari, S. Vigneswaran, R. Naidu, Permeable
reactive barrier for groundwater remediation, Rev. J. Ind. Eng.
Chem., 14 (2008) 145–156.
- C. Teta, T. Hikwa, Heavy metal contamination of ground water
from an unlined landfill in Bulawayo, Zimbabwe, J. Health.
Pollut., 7 (2017) 18–27.
- P. Kjeldsen, M.A. Barlaz, A.P. Rooker, A. Baun, A. Ledin,
T.H. Christensen, Present and long-term composition of MSW
landfill leachate: a review, Crit. Rev. Env. Sci. Technol., 32 (2002)
297–336.
- N. Korte, O.R. West, L. Liang, M.J. Pelfrey, T.C. Houk, A fieldscale
test facility for permeable reactive barriers at the
Portsmouth gaseous diffusion plant, Fed. Facil. Environ. J.,
8 (1997) 105–114.
- K.Y. Foo, B.H. Hameed, An overview of landfill leachate
treatment via activated carbon adsorption process, J. Hazard.
Mater., 171 (2009) 54–60.
- A.A.H. Faisal, Z.A. Hmood, Modeling and simulation of
cadmium removal from the groundwater by permeable reactive
barrier technology, J. Eng., 20 (2014) 134–159.
- Z. Ab Ghani, M.S. Yusoff, N.Q. Zaman, M.F.M.A. Zamri,
J. Andas, Optimization of preparation conditions for activated
carbon from banana pseudo-stem using response surface
methodology on removal of color and COD from landfill
leachate, Waste Manage., 62 (2017) 177–187.
- D. Adamcová, M. Radziemska, J. Zloch, M.D. Vaverková,
Removal of landfill leachate toxicity by adsorption on white rot
fungi (Pleurotus ostreatus), Pol. J. Nat. Sci., 32 (2017) 761–770.
- M.A. Ashraf, K.S. Balkhair, A.J.K. Chowdhury, M.M. Hanafiah,
Treatment of Taman Beringin landfill leachate using the column
technique, Desal. Wat. Treat., 149 (2019) 370–387.
- A.A.H. Faisal, L.A. Naji, Simulation of ammonia nitrogen
removal from simulated wastewater by sorption onto waste
foundry sand using artificial neural network, Assoc. Arab Univ.
J. Eng. Sci., 26 (2019) 28–34.
- D. Jun, Z. Yongsheng, Z. Weihong, H. Mei, Laboratory study
on sequenced permeable reactive barrier remediation for
landfill leachate-contaminated groundwater, J. Hazard. Mater.,
161 (2009) 224–230.
- M.J.K. Bashir, H.A. Aziz, M.S. Yusoff, A.A. Huqe, S. Mohajeri,
Effects of ion exchange resins in different mobile ion forms on
semi-aerobic landfill leachate treatment, Water Sci. Technol.,
61 (2010) 641–649.
- Y. Ding, M. Sartaj, Optimization of ammonia removal by ionexchange
resin using response surface methodology, Int. J.
Environ. Sci. Technol., 13 (2016) 985–994.
- V.K. Gupta, Equilibrium uptake, sorption dynamics, process
development, and column operations for the removal of
copper and nickel from aqueous solution and wastewater
using activated slag, a low-cost adsorbent, Ind. Eng. Chem.
Res., 37 (1998) 192–202.
- L. Curković, Š. Cerjan-Stefanović, A. Rastovèan-Mioè, Batch Pb
and Cu removal by electric furnace slag, Water Res., 35 (2000)
3436–3440.
- M. Basibuyuk, D.G. Kalat, The use of waterworks sludge for
the treatment of vegetable oil refinery industry wastewater,
Environ. Technol. (UK), 25 (2004) 373–380.
- R.A.R. Boaventura, A.A.S. Duarte, M.F. Almeida, Aluminum
Recovery from Water Treatment Sludges, IV International
Conference Water Supply and Water Quality, Kraków – Poland,
September 11–13, 2000, pp. 1–4.
- Y.Q. Zhao, A.O. Babatunde, Y.S. Hu, J.L.G. Kumar, X.H. Zhao,
Pilot field-scale demonstration of a novel alum sludge-based
constructed wetland system for enhanced wastewater treatment,
Process Biochem., 46 (2011) 278–283.
- K.B. Dassanayake, G.Y. Jayasinghe, A. Surapaneni, C. Hetherington,
A review on alum sludge reuse with special reference to
agricultural applications and future challenges, Waste Manage.,
38 (2015) 321–335.
- A. Mohammed, T. Al-Tahmazi, A.O. Babatunde, Attenuation
of metal contamination in landfill leachate by dewatered
waterworks sludges, Ecol. Eng., 94 (2016) 656–667.
- Y.-F. Zhou, R.J. Haynes, Removal of Pb(II), Cr(III) and Cr(VI)
from aqueous solutions using alum-derived water treatment
sludge, Water Air Soil Pollut., 215 (2011) 631–643.
- Y.W. Chiang, K. Ghyselbrecht, R.M. Dos Santos, J.A. Martens,
R. Swennen, V. Cappuyns, B. Meesschaert, Adsorption of multiheavy
metals onto water treatment residuals: sorption capacities
and applications, Chem. Eng. J., 200–202 (2012) 405–415.
- A.P. Mathews, I. Zayas, Particle size and shape effects on
adsorption rate parameters, J. Environ. Eng., 115 (1989) 41–55.
- P. Champagne, C.X. Li, Use of Sphagnum peat moss and
crushed mollusk shells in fixed-bed columns for the treatment
of synthetic landfill leachate, J. Mater. Cycles Waste Manage.,
11 (2009) 339–347.
- Z.X. Li, M. Zhang, Decolorization and biodegradability of
dyeing wastewater treated by a TiO2-sensitized photo-oxidation
process, Water Sci. Technol., 34 (1996) 49–55.
- A.L. Ahmad, S. Ismail, S. Bhatia, Water recycling from palm oil
mill effluent (POME) using membrane technology, Desalination,
157 (2003) 87–95.
- M. Ergüt, D. Uzunoğlu, A. Özer, Efficient decolourization of
malachite green with biosynthesized iron oxide nanoparticles
loaded carbonated hydroxyapatite as a reusable heterogeneous
Fenton-like catalyst, J. Environ. Sci. Health., Part A, 54 (2019)
786–800.
- J. Delleur, The Handbook of Groundwater Engineering, CRC
Press, Boca Raton, 1999.
- A.H. Sulaymon, A.A.H. Faisal, Q.M. Khaliefa, Cement kiln dust
(CKD)-filter sand permeable reactive barrier for the removal of
Cu(II) and Zn(II) from simulated acidic groundwater, J. Hazard.
Mater., 297 (2015) 160–172.
- K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption
isotherm systems, Chem. Eng. J., 156 (2010) 2–10.
- M. Gheju, A. Miulescu, Sorption equilibrium of hexavalent
chromium on granular activated carbon, Chem. Bull. Politehnica,
Univ. Timisoara, 52 (2007) 41–46.
- D. Zhou, L. Zhang, J.P. Zhou, S.L. Guo, Cellulose/chitin beads
for adsorption of heavy metals in aqueous solution, Water Res.,
38 (2004) 2643–2650.
- K.H. Chu, Improved fixed bed models for metal biosorption,
Chem. Eng. J., 97 (2004) 233–239.
- A. Chatterjee, S. Schiewer, Biosorption of cadmium(II) ions
by citrus peels in a packed bed column: effect of process
parameters and comparison of different breakthrough curve
models, CLEAN - Soil Air Water, 39 (2004) 874–881.
- S.S. Tahir, R. Naseem, Removal of Cr(III) from tannery
wastewater by adsorption onto bentonite clay, Sep. Purif.
Technol., 53 (2007) 312–321.
- H.A. Aziz, M.N. Adlan, M.S.M. Zahari, S. Alias, Removal of
ammoniacal nitrogen (N–NH3) from municipal solid waste
leachate by using activated carbon and limestone, Waste
Manage. Res., 22 (2004) 371–375.
- W.-P. Cheng, C.-H. Fu, P.-H. Chen, R.-F. Yu, Dynamics of
aluminum leaching from water purification sludge, J. Hazard.
Mater., 217–218 (2012) 149–155.
- B.M.W.P.K. Amarasinghe, R.A. Williams, Tea waste as a low
cost adsorbent for the removal of Cu and Pb from wastewater,
Chem. Eng. J., 132 (2007) 299–309.
- I. Ozturk, M. Altinbas, I. Koyuncu, O. Arikan, C. Gomec-Yangin,
Advanced physico-chemical treatment experiences on young
municipal landfill leachates, Waste Manage., 23 (2003) 441–446.
- X.-H. Guan, G.-H. Chen, C. Shang, Re-use of water treatment
works sludge to enhance particulate pollutant removal from
sewage, Water Res., 39 (2005) 3433–3440.
- R. Liu, Y. Zhao, C. Sibille, B. Ren, Evaluation of natural organic
matter release from alum sludge reuse in wastewater treatment
and its role in P adsorption utilization areas industrial use risk
concerns land use, Chem. Eng. J., 302 (2016) 120–127.
- 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.
- A. Abdul Halim, N.N.Z. Abidin, N. Awang, A. Ithnin,
M.S. Othman, M.I. Wahab, Ammonia and COD removal
from synthetic leachate using rice husk composite adsorbent,
J. Urban Environ. Eng., 5 (2011) 24–31.
- S.J. Park, B.J. Kim, Ammonia removal of activated carbon
fibers produced by oxyfluorination, J. Colloid Interface Sci.,
291 (2005) 597–599.
- A. Abdul Halim, H. Abdul Aziz, M.A.M. Johari, K.S. Ariffin,
Comparison study of ammonia and COD adsorption on zeolite,
activated carbon and composite materials in landfill leachate
treatment, Desalination, 262 (2010) 31–35.
- A. Zagorodni, Ion exchange Materials: Properties and Applications,
Elsevier Science, UK, 2006, 496 p.
- D. Mohan, C.U. Pittman Jr., Activated carbons and low cost
adsorbents for remediation of tri- and hexavalent chromium
from water, J. Hazard. Mater., 137 (2006) 762–811.
- R.P. Han, Y. Wang, X. Zhao, Y.F. Wang, F.L. Xie, J.M. Cheng,
M.S. Tang, Adsorption of methylene blue by phoenix tree leaf
powder in a fixed-bed column: experiments and prediction of
breakthrough curves, Desalination, 245 (2009) 284–297.
- A.J. Cooke, Modelling of Clogging in Laboratory Column
Experiments Conducted with Synthetic Landfill Leachate,
M.Sc. Thesis, Faculty of Engineering Science Civil Engineering,
University of Western Ontario, Canada, 1997.