References
- A. Ababneh, F. Matalkah, Potential use of Jordanian volcanic
tuffs as supplementary cementitious materials, Case Stud.
Constr. Mater., 8 (2018) 193–202.
- N. Elboughdiri, The use of natural zeolite to remove heavy
metals Cu(II), Pb(II) and Cd(II), from industrial wastewater,
Cogent Eng., 7 (2020) 1–13.
- K.K. Al-Zboon, J.A. Al-Tabbal, N.M. Al-Kharabsheh,
N.K. Al-Mefleh, Natural volcanic tuff as a soil mulching: effect
on plant growth and soil chemistry under water stress, Appl.
Water Sci., 9 (2019) 123,
doi: 10.1007/s13201-019-1000-2.
- M. Dines, V.K. Gupta, S.K. Srivastava, S. Chander, Kinetics of
mercury adsorption from wastewater using activated carbon
derived from fertilizer waste, Colloids Surf., A, 177 (2001)
169–181.
- K.B. Payne, T.M. Abdel-Fattah, Adsorption of divalent lead ions
by zeolites and activated carbon: effects of pH, temperature,
and ionic strength, J. Environ. Sci. Health. Part A Toxic/Hazard.
Subst. Environ. Eng., 39 (2004) 2275–2291.
- B. Kozera-Sucharda, B. Gworek, I. Kondzielski, The simultaneous
removal of zinc and cadmium from multicomponent aqueous
solutions by their sorption onto selected natural and synthetic
zeolites, Minerals, 10 (2020) 343, doi: 10.3390/min10040343.
- R.Y. Wu, Y. Wang, X.Y. Xue, T.P. Hu, J.F. Gao, F.Q. An, Selective
adsorption and removal ability of pine needle-based activated
carbon towards Al(III) from La(III), J. Dispersion Sci. Technol.,
40 (2019) 186–191.
- K.K. Al-Zboon, B.M. Al-Smadi, S. Al-Khawaldh, Natural
volcanic tuff-based geopolymer for Zn removal: adsorption
isotherm, kinetic, and thermodynamic study, Water Air Soil
Pollut., 227 (2016) 248,
doi:10.1007/s11270-016-2937-5.
- R. Menhaje-Bena, H. Kazemian, S. Shahtaheri, M. Ghazi-
Khansari, M. Hosseini, Evaluation of iron modified zeolites for
removal of arsenic from drinking water, Stud. Surf. Sci. Catal.,
154 (2004) 1892–1899.
- N. Mojoudi, N. Mirghaffari, M. Soleimani, H. Shariatmadari,
C. Belver, J. Bedia, Phenol adsorption on high microporous
activated carbons prepared from oily sludge: equilibrium,
kinetic and thermodynamic studies, Sci. Rep., 9 (2019) 19352,
doi: 10.1038/s41598-019-55794-4.
- Y. Taamneh, S. Sharadqah, The removal of heavy metals from
aqueous solution using natural Jordanian zeolite, Appl. Water
Sci., 7 (2017) 2021–2028.
- M. Malihe, S. Parastar, M. Mahdavi, A. Ebrahimi, Evaluation
efficiency of Iranian natural zeolites and synthetic resin to
removal of lead ions from aqueous solutions, Appl. Water Sci.,
10 (2020) 60,
doi: 10.1007/s13201-019-1135-1.
- J.C. Hsu, C.J. Lin, C.H. Liao, S.T. Chen, Removal of As(V) and
As(III) by reclaimed iron-oxide coated sands, J. Hazard. Mater.,
153 (2008) 817–826.
- M. Al-Anbar, Z. Al-Anbar, Utilization of natural zeolite as
ion-exchange and sorbent material in the removal of iron(III),
Desalination, 225 (2008) 70–81.
- M. El Hajam, N.K. Idrissi, G.-I. Plavan, H. Abdel Halim,
L. Mansour, F. Boufahja, A. Zerouale, Pb2+ ions adsorption onto
raw and chemically activated Dibetou sawdust: application
of experimental designs, J. King Saud Univ. – Sci., 32 (2020)
2176–2189.
- K. He, Y. Chen, Z. Tang, Y. Hu, Removal of heavy metal ions
from aqueous solution by zeolite synthesized from fly ash,
Environ. Sci. Pollut. Res., 3 (2016) 2778–2788.
- M. Alsawalha, Overview of current and future perspectives
of Saudi Arabian Natural Clinoptilolite Zeolite: a case review,
J. Chem., 2019 (2019) 3153471, doi: 10.1155/2019/3153471.
- N. Elboughdiri, Effect of time, solvent-solid ratio, ethanol
concentration and temperature on extraction yield of phenolic
compounds from olive leaves, Eng. Technol. Appl. Sci. Res.,
8 (2018) 2805–2808.
- E. Aboud, N. El-Masry, A. Qaddah, F. Alqahtani, M.R.H. Moufti,
Magnetic and gravity data analysis of Rahat Volcanic Field,
El-Madinah city, Saudi Arabia, NRIAG J. Astron. Geophys.,
4 (2015) 154–162.
- S.F. Lütke, A.V. Igansi, L. Pegoraro, G.L. Dotto, L.A.A. Pinto,
T.R.S. Cadaval Jr., Preparation of activated carbon from black
wattle bark waste and its application for phenol adsorption,
J. Environ. Chem. Eng., 7 (2019) 103396, doi:10.1016/
j.jece.2019.103396.
- S. Rekha, R. Sapna, N. Manjula, K. Dinesh, Kinetics and
adsorption studies of mercury and lead by ceria nanoparticles
entrapped in tamarind powder, ACS Omega, 3 (2018)
14606–14619.
- A.S. Nizami, O.K.M. Ouda, M. Rehan, A.M.O. El-Maghraby,
J. Gardy, A. Hassanpour, S. Kumar, I.M.I. Ismail, The potential of
Saudi Arabian natural zeolites in energy recovery technologies,
Energy, 108 (2016) 162–171.
- M. Visa, N. Popa, Adsorption of heavy metals cations onto
zeolite material from aqueous solution, J. Membr. Sci. Technol.,
5 (2015) 133.
- U.T. Mehmet, A.A. Mehmet, Possibility of using Kütahya
Volcanic Tuff as building stone: microstructural evaluation and
strength enhancement through heat treatment, Constr. Build.
Mater., 110 (2016) 128–134.
- M.M. Sakineh, N.E. Alireza, Supported iron oxide onto
an Iranian clinoptilolite as a heterogeneous catalyst for
photodegradation of furfural in a wastewater sample, Desal.
Water Treat., 57 (2016) 10802–10814.
- G. Garcia, E. Cardenasa, S. Cabrera, J. Hedlund, J. Mouzon,
Synthesis of zeolite Y from diatomite as silica source,
Microporous Mesoporous Mater., 219 (2019) 29–37.
- R. Burt, Soil Survey Laboratory Methods Manual, United States
Department of Agriculture, 2004, pp. 173–180.
- R.P. Han, L.N. Zou, X. Zhao, Y.F. Xu, F. Xu, Y.L. Li, Y. Wang,
Characterization and properties of iron oxide-coated zeolite as
adsorbent for removal of copper(II) from solution in fixed bed
column, Chem. Eng. J., 149 (2009) 123–131.
- P. Belousov, A. Semenkova, T. Egorova, A. Romanchuk,
S. Zakusin, O. Dorzhieva, E. Tyupina, Y. Izosimova, I. Tolpeshta,
M. Chernov, V. Krupskaya, Cesium sorption and desorption
on glauconite, gentonite, zeolite, and diatomite, Minerals,
9–10 (2019) 625, doi: 10.3390/min9100625.
- M.R. Hassan Moufti, K. Nemeth, The Intra-Continental Al
Madinah Volcanic Field, Western Saudi Arabia: A Proposal to
Establish Harrat Al Madinah as the First Volcanic Geopark in
the Kingdom of Saudi Arabia, Geoheritage, 5 (2013) 185–206.
- N. Elboughdiri, Olive mill wastewater phenolic compounds
adsorption onto active olive stones: equilibrium isotherms and
kinetics study, Int. J. Forensic Eng., 4 (2018) 31–46.