References
- M. Kida, S. Ziembowicz, P.J.S. Koszelnik, P. Technology,
Removal of organochlorine pesticides (OCPs) from aqueous
solutions using hydrogen peroxide, ultrasonic waves, and a
hybrid process, Sep. Purif. Technol., 192 (2018) 457–464.
- M. Rani, U. Shanker, V. Jassal, Recent strategies for removal
and degradation of persistent and toxic organochlorine pesticides
using nanoparticles: a review, J. Environ. Manage., 190 (2017)
208–222.
- N. Bolong, A. Ismail, M.R. Salim, T.J.D. Matsuura, A review of
the effects of emerging contaminants in wastewater and options
for their removal, Desalination, 239 (2009) 229–246.
- H.-S. Chang, K.-H. Choo, B. Lee, S.-J. Choi, The methods of
identification, analysis, and removal of endocrine disrupting
compounds (EDCs) in water, J. Hazard. Mater., 172 (2009) 1–12.
- L. Zhu, L. Qiu, L. Zhang, J. Wang, K. Xie, Harmfulness,
Detection and Treatment of EDCs in Water Environment,
2015 4th International Conference on Sustainable Energy
and Environmental Engineering, Atlantis Press, Amsterdan,
North Holland, 2016, pp. 468–472.
- C. Sophia A., E.C. Lima, Removal of emerging contaminants
from the environment by adsorption, Ecotoxicol. Environ. Saf.,
150 (2018) 1–17.
- A. El-Bindary, A. El-Sonbati, A. Al-Sarawy, K.S. Mohamed,
M.A. Farid, Adsorption of hazardous azocoumarin from
aqueous solution using activated carbon made from rice straw,
J. Mater. Environ. Sci., 6 (2015) 1–10.
- A. Omri, A. Wali, M. Benzina, Adsorption of bentazon on
activated carbon prepared from Lawsonia inermis wood:
equilibrium, kinetic and thermodynamic studies, Arabian
J. Chem., 9 (2016) S1729–S1739.
- M.G. Alalm, A. Tawfik, S. Ookawara, Combined solar advanced
oxidation and PAC adsorption for removal of pesticides from
industrial wastewater, J. Mater. Environ. Sci., 6 (2015) 800–809.
- A. Katsigiannis, C. Noutsopoulos, J. Mantziaras, M. Gioldasi,
Removal of emerging pollutants through granular activated
carbon, Chem. Eng. J., 280 (2015) 49–57.
- A.A. Oladipo, A.O. Ifebajo, R. Vaziri, Green Adsorbents for
Removal of Antibiotics, Pesticides and Endocrine Disruptors,
G. Crini, E. Lichtfouse, Eds., Green Adsorbents for Pollutant
Removal, Springer, Cham, 2018, pp. 327–351.
- O. Iglesias, M.F. de Dios, T. Tavares, M. Sanromán, M. Pazos,
Heterogeneous electro-Fenton treatment: preparation,
characterization and performance in groundwater pesticide
removal, J. Ind. Eng. Chem., 27 (2015) 276–282.
- S. Martinez, M. Delgado, P. Jarvis, Removal of herbicide
mecoprop from surface water using advanced oxidation
processes (AOPS), Int. J. Environ., 10 (2016) 291–296.
- M. Vagı, A. Petsas, Advanced Oxidation Processes for the
Removal of Pesticides from Wastewater: Recent Review and
Trends, 15th International Conference on Environmental
Science and Technology, CEST2017, Rhodes, Greece, 2017.
- Y.A. Mustafa, S.J. Mohammed, Removing of pesticides from
water using advanced oxidation processes including: O3, H2O2
and UV in combination, J. Assoc. Arab Univ. Basic Appl. Sci.,
24 (2017) 31–46.
- V. Arya, L. Philip, Removal of Pharmaceuticals from Water
Using Adsorption, F. Kurisu, A. Ramanathan, A. Kazmi,
M. Kumar, Eds., Trends in Asian Water Environmental Science
and Technology, Springer, Cham, 2017, pp. 105–114.
- J. Plattner, C. Kazner, G. Naidu, T. Wintgens, S. Vigneswaran,
Pesticide and microbial contaminants of groundwater and their
removal methods: a mini review, J. Jaffna Sci. Assoc., 1 (2019)
12–18.
- P. Vanraes, N. Wardenier, P. Surmont, F. Lynen, A. Nikiforov,
S.W. Van Hulle, C. Leys, A. Bogaerts, Removal of alachlor,
diuron and isoproturon in water in a falling film dielectric
barrier discharge (DBD) reactor combined with adsorption on
activated carbon textile: Reaction mechanisms and oxidation
by-products, J. Hazard. Mater., 354 (2018) 180–190.
- C.R. Landeros, C.E.B. Díaz, A.A. Cháves, G.R. Morales,
Evaluation of a coupled system of electro-oxidation and
ozonation to remove the pesticide Thiodan® 35 CE (endosulfan)
in aqueous solution, Fuel, 198 (2017) 91–98.
- E. Orlandini, Pesticide Removal by Combined Ozonation and
Granular Activated Carbon Filtration, Routledge, UK, 2018.
- A. Zafarzadeha, M. Sadeghia, A. Golbini-Mofrad, S. Beiramia,
Removal of Lead by Activated Carbon and Citrus Coal
from Drinking Water, Presented at the EDS Conference on
Desalination for the Environment: Clean Water and Energy,
Italy, 2016, p. 26.
- H. Bader, J. Hoigné, Determination of ozone in water by the
indigo method, Water Res., 15 (1981) 449–456.
- A. Jusoh, W. Hartini, A. Endut, Study on the removal of
pesticide in agricultural run off by granular activated carbon,
Bioresour. Technol., 102 (2011) 5312–5318.
- Y. Kumar, N. Singh, S. Singh, Removal of atrazine, metribuzin,
metolachlor and alachlor by granular carbon, J. Environ.
Anal. Toxicol., 3 (2013) 1–5.
- A.P.H. Association, A.W.W. Association, W.P.C. Federation,
W.E. Federation, Standard Methods for the Examination of
Water and Wastewater, American Public Health Association,
1915.
- K.-L. Chang, J.-F. Hsieh, B.-M. Ou, M.-H. Chang, W.-Y. Hseih,
J.-H. Lin, P.-J. Huang, K.-F. Wong, S.-T. Chen, Adsorption
studies on the removal of an endocrine-disrupting compound
(Bisphenol A) using activated carbon from rice straw
agricultural waste, Sep. Sci. Technol., 47 (2012) 1514–1521.
- X. Wang, N. Liu, Y. Liu, L. Jiang, G. Zeng, X. Tan, S. Liu, Z. Yin,
S. Tian, J. Li, Adsorption removal of 17β-estradiol from water
by rice straw-derived biochar with special attention to pyrolysis
temperature and background chemistry, Int. J. Environ. Res.
Public Health, 14 (2017) 1–17, doi: 10.3390/ijerph14101213.
- J. Charles, S. Muthusamy, Comparative study of butyl rubber
(IIR) and bromobuty1 rubber (BIIR) based on FTIR, dielectric
and thermal studies, J. Appl. Sci. Eng., 2 (2016) 206–211.
- I. Cohen-Ofri, L. Weiner, E. Boaretto, G. Mintz, S. Weiner,
Modern and fossil charcoal: aspects of structure and diagenesis,
J. Archaeol. Sci., 33 (2006) 428–439.
- J. Salman, V. Njoku, B. Hameed, Adsorption of pesticides
from aqueous solution onto banana stalk activated carbon,
Chem. Eng. J., 174 (2011) 41–48.
- J. Pastor-Villegas, J.M. Rodríguez, J. Pastor-Valle, M.G. García,
Changes in commercial wood charcoals by thermal treatments,
J. Anal. Appl. Pyrolysis, 80 (2007) 507–514.
- Y. Zhao, C.-W. Cho, L. Cui, W. Wei, J. Cai, G. Wu, Y.-S. Yun,
Adsorptive removal of endocrine-disrupting compounds and a
pharmaceutical using activated charcoal from aqueous solution:
kinetics, equilibrium, and mechanism studies, Environ. Sci.
Pollut. Res., 26 (2019) 33897–33905.
- W. Khanday, F. Marrakchi, M. Asif, B. Hameed, Mesoporous
zeolite–activated carbon composite from oil palm ash as an
effective adsorbent for methylene blue, J. Taiwan Inst. Chem.
Eng., 70 (2017) 32–41.
- M. Ahmed, B. Hameed, Removal of emerging pharmaceutical
contaminants by adsorption in a fixed-bed column: a review,
Ecotoxicol. Environ. Saf., 149 (2018) 257–266.
- S. Kim, H. Shon, H. Ngo, Adsorption characteristics of
antibiotics trimethoprim on powdered and granular activated
carbon, J. Ind. Eng. Chem., 16 (2010) 344–349.
- A.A. Oladipo, M.A. Abureesh, M. Gazi, Bifunctional composite
from spent “Cyprus coffee” for tetracycline removal and phenol
degradation: solar-Fenton process and artificial neural network,
Int. J. Biol. Macromol., 90 (2016) 89–99.
- S. Mondal, K. Aikat, G. Halder, Ranitidine hydrochloride
sorption onto superheated steam activated biochar derived
from mung bean husk in fixed bed column, J. Environ. Chem.
Eng., 4 (2016) 488–497.
- J. Fan, J. Zhang, C. Zhang, L. Ren, Q. Shi, Adsorption of 2, 4,
6-trichlorophenol from aqueous solution onto activated carbon
derived from loosestrife, Desalination, 267 (2011) 139–146.
- C.R. Silva, T.F. Gomes, G.C. Andrade, S.H. Monteiro, A.C. Dias,
E.A. Zagatto, V.L. Tornisielo, Banana peel as an adsorbent for
removing atrazine and ametryne from waters, J. Agric. Food
Chem., 61 (2013) 2358–2363.
- A. Chaparadza, J.M. Hossenlopp, Adsorption kinetics,
isotherms and thermodynamics of atrazine removal using
a banana peel based sorbent, Water Sci. Technol., 65 (2012)
940–947.
- A. Mustafa, S.J. Mohammed, Removing of atrazine from water
using advanced oxidation processes, Assoc. Arab Univ. J. Eng.
Sci., 24 (2017) 18–32.
- Y. Lester, D. Avisar, I. Gozlan, H. Mamane, Removal of
pharmaceuticals using combination of UV/H2O2/O3 advanced
oxidation process, Water Sci. Technol., 64 (2011) 2230–2238.
- D. Šojić, V. Despotović, D. Orčić, E. Szabó, E. Arany,
S. Armaković, E. Illés, K. Gajda-Schrantz, A. Dombi, T. Alapi,
Degradation of thiamethoxam and metoprolol by UV, O3 and
UV/O3 hybrid processes: kinetics, degradation intermediates
and toxicity, J. Hydrol., 472 (2012) 314–327.
- I. Grčić, N. Koprivanac, D. Vujević, S. Papić, Removal of atrazine
from simulated groundwater by AOTs, J. Adv. Oxid. Technol.,
11 (2008) 91–96.
- R. Rajeswari, S. Kanmani, Degradation of pesticide by
photocatalytic ozonation process and study of synergistic
effect by comparison with photocatalysis and UV/ozonation
processes, J. Adv. Oxid. Technol., 12 (2009) 208–214.
- J. Santiago Morales, Ozonation and Irradiation Treatments
for the Removal of Emerging Water Pollutants, PhD Thesis,
Universidad de Alcalá, 2013.
- M.M. Amin, M.M.G. Mofrad, H. Pourzamani, S.M. Sebaradar,
K. Ebrahim, Treatment of industrial wastewater contaminated
with recalcitrant metal working fluids by the photo-Fenton
process as post-treatment for DAF, J. Ind. Eng. Chem., 45 (2017)
412–420.
- M.M.G. Mofrad, H. Pourzamani, M.M. Amin, I. Parseh,
M. Alipour, In situ treatment of metalworking wastewater by
chemical addition-dissolved air flotation coupled with UV,
H2O2 & ZnO, Heliyon, 6 (2020) 1–7, doi: 10.1016/j.heliyon.2019.
e03091.
- Z. Qiang, C. Liu, B. Dong, Y. Zhang, Degradation mechanism
of alachlor during direct ozonation and O3/H2O2 advanced
oxidation process, Chemosphere, 78 (2010) 517–526.
- A. Zaleska, J. Hupka, M. Wiergowski, M. Biziuk, Photocatalytic
degradation of lindane, p,p′-DDT and methoxychlor in an
aqueous environment, J. Photochem. Photobiol., A, 135 (2000)
213–220.