References
- K. Rahmani, A.H. Mahvi, Biosorption of cadmium and copper
ions from industrial wastewaters by waste activated sludge,
Int. J. Environ. Anal. Chem., 102 (2020) 1109–1117.
- E. Bazrafshan, L. Mohammadi, A. Ansari-Moghaddam,
A.H. Mahvi, Heavy metals removal from aqueous environments
by electrocoagulation process – a systematic review, J. Environ.
Health Sci. Eng., 13 (2015) 1–16, doi: 10.1186/s40201-015-0233-8.
- K. Naddafi, R. Nabizadeh, R. Saeedi, A.H. Mahvi, F. Vaezi,
K. Yaghmaeian, A. Ghasri, S. Nazmara, Biosorption of lead(II)
and cadmium(II) by protonated Sargassum glaucescens biomass
in a continuous packed bed column, J. Hazard. Mater.,
147 (2007) 785–791.
- A. Maleki, A.H. Mahvi, M.A. Zazouli, H. Izanloo, A.H. Barati,
Aqueous cadmium removal by adsorption on barley hull and
barley hull ash, Asian J. Chem., 23 (2011) 1373–1376.
- I. Gul, M. Manzoor, N. Hashim, G.M. Shah, S.P.T. Waani,
M. Shahid, V. Antoniadis, J. Rinklebe, M. Arshad, Challenges
in microbially and chelate-assisted phytoextraction of cadmium
and lead – a review, Environ. Pollut., 287 (2021) 117667,
doi: 10.1016/j.envpol.2021.117667.
- A. Mahvi, F. Gholami-borujeni, S. Nazmara, Cadmium
biosorption from wastewater by Ulmus leaves and their ash,
Eur. J. Sci. Res., 23 (2008) 197–203.
- A. Kubier, R.T. Wilkin, T. Pichler, Cadmium in soils and
groundwater: a review, Appl. Geochem., 108 (2019) 104388,
doi: 10.1016/j.apgeochem.2019.104388.
- D. Diaz, F. Ujueta, G. Mansur, G.A. Lamas, A. Navas-Acien,
I.A. Arenas, Low-level cadmium exposure and atherosclerosis,
Curr. Environ. Health Rep., 8 (2021) 42–53.
- C. Xu, Z. Weng, L. Zhang, J. Xu, M. Dahal, T.B. Basnet,
A. Gu, HDL cholesterol: a potential mediator of the association
between urinary cadmium concentration and cardiovascular
disease risk, Ecotoxicol. Environ. Saf., 208 (2021) 111433,
doi: 10.1016/j.ecoenv.2020.111433.
- B. Kakavandi, R.R. Kalantary, M. Farzadkia, A.H. Mahvi,
A. Esrafili, A. Azari, A.R. Yari, A.B. Javid, Enhanced
chromium(VI) removal using activated carbon modified by
zero valent iron and silver bimetallic nanoparticles, J. Environ.
Health Sci. Eng., 12 (2014) 1–10, doi: 10.1186/s40201-014-0115-5.
- G. Genchi, M.S. Sinicropi, G. Lauria, A. Carocci, A. Catalano,
The effects of cadmium toxicity, Int. J. Environ. Res. Public
Health, 17 (2020) 3782, doi: 10.3390/ijerph17113782.
- Y. Vasseghian, F. Almomani, E.-N. Dragoi, Health risk
assessment induced by trace toxic metals in tap drinking water:
condorcet principle development, Chemosphere, 286 (2021)
131821, doi:10.1016/j.chemosphere.2021.131821.
- R. Aruna Devi, M. Latha, S. Velumani, G. Oza, P. Reyes-Figueroa,
M. Rohini, I.G. Becerril-Juarez, J.-H. Lee, J. Yi, Synthesis and
characterization of cadmium sulfide nanoparticles by chemical
precipitation method, J. Nanosci. Nanotechnol., 15 (2015)
8434–8439.
- Sadani, T. Rasolevandi, H. Azarpira, A.H. Mahvi,
M. Ghaderpoori, S.M. Mohseni, A. Atamaleki, Arsenic selective
adsorption using a nanomagnetic ion imprinted polymer:
optimization, equilibrium, and regeneration studies, J. Mol.
Liq., 317 (2020) 114246, doi: 10.1016/j.molliq.2020.114246.
- M.H. Ehrampoush, M. Miria, M.H. Salmani, A.H. Mahvi,
Cadmium removal from aqueous solution by green synthesis
iron oxide nanoparticles with tangerine peel extract, J. Environ.
Health Sci. Eng., 13 (2015) 1–7, doi:10.1186/s40201-015-0237-4.
- H. Alamgholiloo, B. Hashemzadeh, N.N. Pesyan,
A. Sheikhmohammadi, E. Asgari, J. Yeganeh, H. Hashemzadeh,
A facile strategy for designing core-shell nanocomposite of
ZIF-67/Fe3O4: a novel insight into ciprofloxacin removal from
wastewater, Process Saf. Environ. Prot., 147 (2021) 392–404.
- H. Rasoulzadeh, A. Sheikhmohammadi, M. Abtahi, B. Roshan,
R. Jokar, Eco-friendly rapid removal of palladium from aqueous
solutions using alginate-diatomite magnano composite,
J. Environ. Chem. Eng., 9 (2021) 105954, doi: 10.1016/j.
jece.2021.105954.
- L. Rafati, A.H. Mahvi, A.R. Asgari, S.S. Hosseini, Removal of
chromium(VI) from aqueous solutions using Lewatit FO36
nano ion exchange resin, Int. J. Environ. Sci. Technol., 7 (2010)
147–156.
- T.K. Tran, N. Kim, Q.C. Le, M.T. Nguyen, H.J. Leu, K.N.V. Thi,
Electrochemical preparation and characterization of polyaniline
enhanced electrodes: an application for the removal of cadmium
metals in industrial wastewater, Mater. Chem. Phys., 261 (2021)
124221, doi: 10.1016/j.matchemphys.2021.124221.
- H.J. Mansoorian, A.H. Mahvi, A.J. Jafari, Removal of lead and
zinc from battery industry wastewater using electrocoagulation
process: influence of direct and alternating current by using
iron and stainless steel rod electrodes, Sep. Purif. Technol.,
135 (2014) 165–175.
- H. Liu, K. Liu, H. Fu, R. Ji, X. Qu, Sunlight mediated cadmium
release from colored microplastics containing cadmium
pigment in aqueous phase, Environ. Pollut., 263 (2020) 114484,
doi:10.1016/j.envpol.2020.114484.
- E. Asgari, B. Hashemzadeh, G. Hassani, M. Manshouri,
A. Sheikhmohammadi, Y. Fakhri, Enhancement the BuP photocatalytic
degradability by UVC/ZnO through adding exogenous
oxidant: mechanism, kinetic, energy consumption, J. Environ.
Chem. Eng., 8 (2020) 103576, doi: 10.1016/j.jece.2019.103576.
- A. Figoli, C. Ursino, S. Santoro, I. Ounifi, J. Chekir, A. Hafiane,
E. Ferjani, Cellulose acetate nanofiltration membranes for
cadmium remediation, J. Membr. Sci. Res., 6 (2020) 226–234.
- E. Asgari, A. Sheikhmohammadi, H. Nourmoradi, S. Nazari,
M. Aghanaghad, Degradation of ciprofloxacin by photocatalytic
ozonation process under irradiation with UVA: comparative
study, performance and mechanism, Process Saf. Environ. Prot.,
147 (2021) 356–366.
- M.R. Samarghandi, J. Nouri, A.R. Mesdaghinia, A. Mahvi,
S. Nasseri, F. Vaezi, Efficiency removal of phenol, lead and
cadmium by means of UV/TiO2/H2O2 processes, Int. J. Environ.
Sci. Technol., 4 (2007) 19–25.
- T. Rasolevandi, S. Naseri, H. Azarpira, A.H. Mahvi, Photodegradation
of dexamethasone phosphate using UV/Iodide
process: kinetics, intermediates, and transformation pathways,
J. Mol. Liq., 295 (2019) 111703.
- H. Azarpira, M. Abtahi, M. Sadani, S. Rezaei, Z. Atafar,
A. Bay, S.M. Mohseni, M. Sarkhosh, M. Shanbedi, H. Alidadi,
Y. Fakhri, H. Keramati, V. Fanai, Photo-catalytic degradation
of Trichlorophenol with UV/sulfite/ZnO process, simultaneous
usage of homogeneous reductive and heterogeneous oxidative
agents generator as a new approach of advanced oxidation/
reduction processes (AO/RPs), J. Photochem. Photobiol., A,
374 (2019) 43–51.
- S. Azizi, M. Sarkhosh, A.A. Najafpoor, S.M. Mohseni, M. Mazza,
M. Sadani, Degradation of codeine phosphate by simultaneous
usage of eaq− and •OH radicals in photo-redox processes:
influencing factors, energy consumption, kinetics, intermediate
products and degradation pathways, Optik, 243 (2021) 167415,
doi:10.1016/j.ijleo.2021.167415.
- M. Massoudinejad, S.M. Zarandi, M.M. Amini, S.M. Mohseni,
Enhancing photo-precipitation of chromate with carboxyl
radicals: kinetic, energy analysis and sludge survey, Process Saf.
Environ. Prot., 134 (2020) 440–447.
- T. Rasolevandia, H. Azarpira, A.H. Mahvi, Modeling and
optimizing chromate photo-precipitation with iodide exciting
under UV irradiation, Desal. Water Treat., 195 (2020) 369–376.
- J. Xu, W. Ding, F. Wu, G. Mailhot, D. Zhou, K. Hanna, Rapid
catalytic oxidation of arsenite to arsenate in an iron(III)/sulfite
system under visible light, Appl. Catal., B, 186 (2016) 56–61.
- D.T.F. Kuo, D.W. Kirk, C.Q. Jia, The chemistry of aqueous S(IV)-Fe-O2 system: state of the art, J. Sulfur Chem., 27 (2006) 461–530.
- C.-G. Lee, H. Javed, D. Zhang, J.-H. Kim, P. Westerhoff, Q. Li,
P.J.J. Alvarez, Porous electrospun fibers embedding TiO2 for
adsorption and photocatalytic degradation of water pollutants,
Environ. Sci. Technol., 52 (2018) 4285–4293.
- H. Gekko, K. Hashimoto, H. Kominami, Photocatalytic
reduction of nitrite to dinitrogen in aqueous suspensions
of metal-loaded titanium(IV) oxide in the presence of a
hole scavenger: an ensemble effect of silver and palladium
co-catalysts, Phys. Chem. Chem. Phys., 14 (2012) 7965–7970.
- U. Alam, T.A. Shah, A. Khan, M. Muneer, One-pot ultrasonic
assisted sol-gel synthesis of spindle-like Nd and V codoped ZnO
for efficient photocatalytic degradation of organic pollutants,
Sep. Purif. Technol., 212 (2019) 427–437.
- L. Kong, Y. Wang, X. Hu, X. Peng, Z. Xia, J. Wang, Improving
removal rate and efficiency of As(V) by sulfide from strongly
acidic wastewater in a modified photochemical reactor, Environ.
Technol., (2021) 1–25, doi:10.1080/09593330.2021.1877360.
- L. Kong, X. Hu, X. Peng, X. Wang, Specific H2S release from
thiosulfate promoted by UV irradiation for removal of arsenic
and heavy metals from strongly acidic wastewater, Environ. Sci.
Technol., 54 (2020) 14076–14084.
- D. He, Y. Xiong, L. Wang, W. Sun, R. Liu, T. Yue, Arsenic(III)
removal from a high-concentration arsenic(III) solution by
forming ferric arsenite on red mud surface, Minerals, 10 (2020)
583, doi: 10.3390/min10070583.
- V.N.H. Nguyen, R. Amal, D. Beydoun, Effect of formate and
methanol on photoreduction/removal of toxic cadmium ions
using TiO2 semiconductor as photocatalyst, Chem. Eng. Sci.,
58 (2003) 4429–4439.
- H. Salmanvandi, P. Rezaei, Y. Tamsilian, Photoreduction and
removal of cadmium ions over bentonite
clay-supported zinc
oxide microcubes in an aqueous solution, ACS Omega, 5 (2020)
13176–13184.
- J. Rinklebe, A.S. Knox, M. Paller, Eds., Trace Elements in
Waterlogged Soils and Sediments, CRC Press, Florida, United
States, 2016.
- A. Rastogi, S.R. Al-Abed, D.D. Dionysiou, Sulfate radicalbased
ferrous–peroxymonosulfate oxidative system for PCBs
degradation in aqueous and sediment systems, Appl. Catal., B,
85 (2009) 171–179.
- Q. Xiao, S. Yu, L. Li, T. Wang, X. Liao, Y. Ye, An overview of
advanced reduction processes for bromate removal from drinking
water: reducing agents, activation methods, applications
and mechanisms, J. Hazard. Mater., 324 (2017) 230–240.
- W. Zhang, G. Zhang, C. Liu, J. Li, T. Zheng, J. Ma, L. Wang,
J. Jiang, X. Zhai, Enhanced removal of arsenite and arsenate by
a multifunctional Fe-Ti-Mn composite oxide: photooxidation,
oxidation and adsorption, Water Res., 147 (2018) 264–275.
- M.J. Lim, N.N.M. Shahri, H. Taha, A.H. Mahadi, E. Kusrini,
J.W. Lim, A. Usman, Biocompatible chitin-encapsulated
CdS quantum dots: fabrication and antibacterial screening,
Carbohydr. Polym., 260 (2021) 117806, doi:10.1016/j.
carbpol.2021.117806.
- M. Khairy, H.A. Ayoub, C.E. Banks, Large-scale production of
CdO/Cd(OH)2 nanocomposites for non-enzyme sensing and
supercapacitor applications, RSC Adv., 8 (2018) 921–930.
- L. Na, F. Maohong, J. Van Leeuwen, B. Saha, Y. Hongqun,
C.P. Huang, Oxidation of As(III) by potassium permanganate,
J. Environ. Sci., 19 (2007) 783–786.
- A.U. Rahmah, S. Harimurti, T. Murugesan, Experimental
investigation on the effect of wastewater matrix on
oxytetracycline mineralization using UV/H2O2 system, Int. J.
Environ. Sci. Technol., 14 (2017) 1225–1233.
- M. Sarkhosh, M. Sadani, M. Abtahi, S.M. Mohseni,
A. Sheikhmohammadi, H. Azarpira, A.A. Najafpoor, Z. Atafar,
S. Rezaei, R. Alli, A. Bay, Enhancing photo-degradation of
ciprofloxacin using simultaneous usage of eaq−
and •OH over UV/ZnO/I– process: efficiency, kinetics, pathways, and mechanisms,
J. Hazard. Mater., 377 (2019) 418–426.
- C. Hou, J. Zhao, Y. Zhang, Y. Qian, J. Chen, M. Yang, J. Du,
T. Chen, B. Huang, X. Zhou, Enhanced simultaneous removal
of cadmium, lead, and acetochlor in hyporheic zones with
calcium peroxide coupled with zero-valent iron: mechanisms
and application, Chem. Eng. J., 427 (2022) 130900, doi: 10.1016/j.
cej.2021.130900.
- T. Mishra, J. Hait, N. Aman, R.K. Jana, S. Chakravarty, Effect
of UV and visible light on photocatalytic reduction of lead and
cadmium over titania based binary oxide materials, J. Colloid
Interface Sci., 316 (2007) 80–84.
- P. Chowdhury, S. Athapaththu, A. Elkamel, A.K. Ray, Visiblesolar-
light-driven photo-reduction and removal of cadmium
ion with eosin Y-sensitized TiO2 in aqueous solution of
triethanolamine, Sep. Purif. Technol., 174 (2017) 109–115.
- Y. Shen, B. Xu, S. Zhu, F. Zhang, Q. Zhao, X. Li, Enhanced
photocatalytic reduction of cadmium on calcium ferrite-based
nanocomposites by simulated solar radiation, Mater. Lett.,
211 (2018) 142–145.