References
- A. Alengebawy, S.T. Abdelkhalek, S.R. Qureshi, M.-Q. Wang,
Heavy metals and pesticides toxicity in agricultural soil and
plants: ecological risks and human health implications, Toxics,
9 (2021) 42, doi: 10.3390/toxics9030042.
- K. Narita, Y. Matsui, T. Matsushita, N. Shirasaki, Selection
of priority pesticides in Japanese drinking water quality
regulation: validity, limitations, and evolution of a risk
prediction method, Sci. Total Environ., 751 (2021) 141636,
doi: 10.1016/j.scitotenv.2020.141636.
- V.P. Konstantinos, J.K. Anastasios, Removal of pesticides from
water by NF and RO membranes — a review, Desalination,
287 (2012) 255–265.
- A.Q. Wahla, S. Iqbal, S. Anwar, S. Firdous, J.A. Mueller,
Optimizing the metribuzin degrading potential of a novel
bacterial consortium based on Taguchi design of experiment,
J. Hazard. Mater., 366 (2019) 1–9.
- E.F.G.C. Dores, S. Navickiene, M.L.F. Cunha, L. Carbo,
M.L. Ribeiro, E.M. De-Lamonica-Freire, Multiresidue
determination of herbicides in environmental waters from
Primavera do Leste Region (Middle West of Brazil) by SPE-GCNPD,
J. Braz. Chem. Soc., 17 (2006) 866–873.
- M. Essandoh, D. Wolgemuth, C.U. Pittman, D. Mohan,
T. Mlsna, Adsorption of metribuzin from aqueous solution
using magnetic and nonmagnetic sustainable low-cost biochar
adsorbents, Environ. Sci. Pollut. Res., 24 (2017) 4577–4590.
- A. ul Haq, M. Saeed, M. Muneer, M.A. Jamal, T. Maqbool,
T. Tahir, Biosorption of metribuzin pesticide by Cucumber
(Cucumis sativus) peels-zinc oxide nanoparticles composite,
Sci. Rep., 12 (2022) 5840, doi: 10.1038/s41598-022-09860-z.
- S.F.B. Suboh, S.H. Mohd-Setapar, M.B. Alshammari, A. Ahmad,
Utilization of Trametes versicolor for the production of laccase
and its application in oxytetracycline degradation from
wastewater, Desal. Water Treat., 266 (2022) 284–290.
- S. Kostopoulou, G. Ntatsi, G. Arapis, K.A. Aliferis, Assessment
of the effects of metribuzin, glyphosate, and their mixtures on
the metabolism of the model plant Lemna minor L. applying
metabolomics, Chemosphere, 239 (2020) 124582, doi: 10.1016/j.chemosphere.2019.124582.
- M.S. Sharifzadeh, G. Abdollahzadeh, The impact of different
education strategies on rice farmers’ knowledge, attitude and
practice (KAP) about pesticide use, J. Saudi Soc. Agric. Sci.,
20 (2021) 312–323.
- X. Huang, H. Zhang, F. Chen, M. Song, Colonization of Paracoccus
sp. QCT6 and enhancement of metribuzin degradation in
maize rhizosphere soil, Curr. Microbiol., 75 (2018) 156–162.
- A. ul Haq, J. Shah, M.R. Jan, S. ud Din, Kinetic, equilibrium and
thermodynamic studies for the sorption of metribuzin from
aqueous solution using banana peels, an agro-based biomass,
Toxicol. Environ. Chem., 97 (2015) 124–134.
- H. Katsumata, T. Kobayashi, S. Kaneco, T. Suzuki, K. Ohta,
Degradation of linuron by ultrasound combined with
photo-Fenton treatment, Chem. Eng. J., 166 (2011) 468–473.
- L.J. Banasiak, B. Van der Bruggen, A.I. Schäfer, Sorption
of pesticide endosulfan by electrodialysis membranes,
Chem. Eng. J., 166 (2011) 233–239.
- M. Uğurlu, M.H. Karaoğlu, TiO2 supported on sepiolite:
preparation, structural and thermal characterization and
catalytic behaviour in photocatalytic treatment of phenol and
lignin from olive mill wastewater, Chem. Eng. J., 166 (2011)
859–867.
- T. Zhou, T.T. Lim, S.S. Chin, A.G. Fane, Treatment of organics
in reverse osmosis concentrate from a municipal wastewater
reclamation plant: feasibility test of advanced oxidation
processes with/without pretreatment, Chem. Eng. J., 166 (2011)
932–939.
- M.I. Maldonado, S. Malato, L.A. Pérez-Estrada, W. Gernjak,
I. Oller, X. Doménech, J. Peral, Partial degradation of five
pesticides and an industrial pollutant by ozonation in a
pilot-plant scale reactor, J. Hazard. Mater., 138 (2006) 363–369.
- H.R. Murthy, H.K. Manonmani, Aerobic degradation of
technical hexachlorocyclohexane by a defined microbial
consortium, J. Hazard. Mater., 149 (2007) 18–25.
- A.U. Haq, M. Saeed, M. Usman, M. Muneer, S. Adeel, S. Abbas,
A. Iqbal, Removal of butachlor from aqueous solution using
cantaloupe seed shell powder: kinetic, equilibrium and
thermodynamic studies, Int. J. Environ. Sci. Technol., 16 (2019)
6029–6042.
- A. ul Haq, M. Saeed, M. Usman, A.F. Zahoor, M.N. Anjum,
T. Maqbool, S. Naheed, M. Kashif, Mechanisms of halosulfuron
methyl pesticide biosorption onto neem seeds powder,
Sci. Rep., 11 (2021) 9960, doi: 10.1038/s41598-021-88929-7.
- S. Muhammad, U. Muhammad, M. Majid, M. Tahir,
M.K.K. Khosa, A. Nasir, Performance and mechanism of
removal of atrazine pesticide from aqueous media utilizing
pumpkin seeds shell powder, Desal. Water Treat., 160 (2019)
229–239.
- A. ul Haq, M. Saeed, M. Usman, S.A.R. Naqvi, T.H. Bokhari,
T. Maqbool, H. Ghaus, T. Tahir, H. Khalid, Sorption of
chlorpyrifos onto zinc oxide nanoparticles impregnated
Pea peels (Pisum sativum L): equilibrium, kinetic and
thermodynamic studies, Environ. Technol. Innovation,
17 (2020) 100516, doi: 10.1016/j.eti.2019.100516.
- T.R. de Aguiar Jr., J.O.A. Guimarães Neto, U. Şen, H. Pereira,
Study of two cork species as natural biosorbents for five selected
pesticides in water, Heliyon, 5 (2019) e01189, doi: 10.1016/j.heliyon.2019.e01189.
- N. Singh, Adsorption of herbicides on coal fly ash from
aqueous solutions, J. Hazard. Mater., 168 (2009) 233–237.
- S. Boudesocque, E. Guillon, M. Aplincourt, F. Martel,
S. Noël, Use of a low‐cost biosorbent to remove pesticides
from wastewater, J. Environ. Qual., 37 (2008) 631–638.
- M. Akhtar, S.M. Hasany, M.I. Bhanger, S. Iqbal, Low-cost
sorbents for the removal of methyl parathion pesticide from
aqueous solutions, Chemosphere, 66 (2007) 1829–1838.
- C.S. Castro, M.C. Guerreiro, M. Gonçalves, L.C. Oliveira,
A.S. Anastácio, Activated carbon/iron oxide composites for the
removal of atrazine from aqueous medium, J. Hazard. Mater.,
164 (2009) 609–614.
- V.M. Boddu, K. Abburi, J.L. Talbott, E.D. Smith, Removal of
hexavalent chromium from wastewater using a new composite
chitosan biosorbent, Environ. Sci. Technol., 37 (2003) 4449–4456.
- I. Michalak, K. Chojnacka, A. Witek-Krowiak, State of the art for
the biosorption process a review, Appl. Biochem. Biotechnol.,
170 (2013) 1389–1416.
- V.K. Mourya, N.N. Inamdar, Chitosan-modifications and
applications: opportunities galore, React. Funct. Polym.,
68 (2008) 1013–1051.
- K.B. Angelin, S. Siva, R.S. Kannan, Zinc oxide nanoparticles
impregnated polymer hybrids for efficient extraction of
heavy metals from polluted aqueous solution, Asian J. Sci.
Technol., 6 (2015) 2139–2150.
- B. Rahmanifar, S. Moradi Dehaghi, Removal of organochlorine
pesticides by chitosan loaded with silver oxide nanoparticles
from water, Cleaner Technol. Environ. Policy, 16 (2014)
1781–1786.
- N. Ayawei, A.N. Ebelegi, D. Wankasi, Modelling and
interpretation of adsorption isotherms, J. Chem., 2017 (2017)
3039817, doi: 10.1155/2017/3039817.
- A.V. Kiselev, Adsorption of vapours when complexes of
adsorbate molecules are formed on the surface, Colloids J.,
20 (1958) 338–348.
- M.R. Mafra, L. Igarashi-Mafra, D.R. Zuim, É.C. Vasques,
M.A. Ferreira, Adsorption of Remazol brilliant blue on an
orange peel adsorbent, Braz. J. Chem. Eng., 30 (2013) 657–665.
- N.A. Baharum, H.M. Nasir, M.Y. Ishak, N.M. Isa, M.A. Hassan,
A.Z. Aris, Highly efficient removal of diazinon pesticide from
aqueous solutions by using coconut shell-modified biochar,
Arabian J. Chem., 13 (2020) 6106–6121.
- B. Ara, J. Shah, M. Rasul Jan, S. Aslam, Removal of metribuzin
herbicide from aqueous solution using corn cob, Int. J. Sci.
Environ., 2 (2013) 146–161.