References
- T. Wang, S. Ai, Y. Zhou, Z. Luo, C. Dai, Y. Yang, J. Zhang,
H. Huang, S. Luo, L. Luo, Adsorption of agricultural wastewater
contaminated with antibiotics, pesticides and toxic metals by
functionalized magnetic nanoparticles, J. Environ. Chem. Eng.,
6 (2018) 6468–6478.
- L. Peña, L. Delgado-Moreno, J.A. Rodríguez-Liébana, A review
of the impact of wastewater on the fate of pesticides in soils:
effect of some soil and solution properties, Sci. Total Environ.,
718 (2020) 134468, doi:10.1016/j.scitotenv.2019.134468.
- I.A. Saleh, N. Zouari, M.A. Al-Ghouti, Removal of pesticides
from water and wastewater: chemical, physical and biological
treatment approaches, Environ. Technol. Innovation, 19 (2020)
101026, doi:10.1016/j.eti.2020.101026.
- J.S. Abdul, H. Zubair, A. Retno, Y. Adhi, A.M. Shaukat,
A. Faheem, M.M. Nabisab, Recent trends and future challenges
of pesticide removal techniques – a comprehensive review,
J. Environ. Chem. Eng., 9 (2021) 105571, doi: 10.1016/j.
jece.2021.105571.
- R. Tröger, H. Ren, D. Yin, C. Postigo, P.D. Nguyen, C. Baduel,
O. Golovko, F. Been, H. Joerss, M.R. Boleda, S. Polesello,
M. Roncoroni, S. Taniyasu, F. Menger, L. Ahrens, F. Yin Lai,
K. Wiberg, What’s in the water? – target and suspect screening
of contaminants of emerging concern in raw water and drinking
water from Europe and Asia, Water Res., 198 (2021) 117099,
doi: 10.1016/j.watres.2021.117099.
- M. Anu, T.G. Egil, L. Tanja, L. Hed, B. Amit, S. Mika,
An overview of the methods used in the characterization of
natural organic matter (NOM) in relation to drinking water
treatment, Chemosphere, 83 (2011) 1431–1442.
- A.S. Iman, Z. Nabil and M.A. Al-Ghouti, Removal of pesticides
from water and wastewater: chemical, physical and biological
treatment approaches, Environ. Technol. Innovation, 19 (2020)
101026, doi:10.1016/j.eti.2020.101026.
- R. Shrestha, S. Ban, S. Devkota, S. Sharma, R. Joshi, A.P. Tiwari,
H. Yong Kim, M.K. Joshi, Technological trends in heavy metals
removal from industrial wastewater: a review, J. Environ.
Chem. Eng., 9 (2021) 105688, doi:10.1016/j.jece.2021.105688.
- L. Rizzo, S. Malato, D. Antakyali, V.G. Beretsou, M.B. Đolić,
W. Gernjak, E. Heath, V. Ivancev-Tumbas, K. Popi,
A.R. Lado
Ribeiro, G. Mascolo, C.S. McArdell, H. Schaar, A.M.T. Silva,
D. Fatta-Kassinos, Consolidated vs. new advanced treatment
methods for the removal of contaminants of emerging concern
from urban wastewater, Sci. Total Environ., 655 (2019) 986–1008.
- S. De Gisi, G. Lofrano, M. Grassi, M. Notarnicola, Characteristics
and adsorption capacities of low-cost sorbents for wastewater
treatment: a review, Sustainable Mater. Technol., 9 (2016)
10–40.
- W.S. Chai, J.Y. Cheun, P. Senthil Kumar, M. Mubashir, Z. Majeed,
F. Banat, S.-H. Ho, P. Loke Show, A review on conventional and
novel materials towards heavy metal adsorption in wastewater
treatment application, J. Cleaner Prod., 296 (2021) 126589,
doi: 10.1016/j.jclepro.2021.126589.
- A. Aghababai Beni, E. Akbar, Biosorption, an efficient method
for removing heavy metals from industrial effluents: a review,
Environ. Technol. Innovation, 17 (2020) 100503, doi: 10.1016/j.
eti.2019.100503.
- G. Nishesh Kumar, G. Anjali, P. Ramteke, H. Sahoo, S. Arijit,
Biosorption-a green method for the preconcentration of rare
earth elements (REEs) from waste solutions: a review, J. Mol.
Liq., 274 (2019) 148–164.
- G. Nishesh Kumar, S. Arijit, G. Anjali, R.S. Jagruti,
H. Sahoo, Biosorption-an alternative method for nuclear waste
management: a critical review, J. Environ. Chem. Eng., 6 (2018)
2159–2175.
- B. Chiranjit, D. Suman, V.K. Saxena, A review on biosorptive
removal of dyes and heavy metals from wastewater using
watermelon rind as biosorbent, Environ. Adv., 2 (2020) 100007,
doi:10.1016/j.envadv.2020.100007.
- W. Ting, A. Shali, Y. Zhou, Z. Luo, C. Dai, Y. Yang, J. Zhang,
H. Huang, S. Luo, L. Luo, Adsorption of agricultural wastewater
contaminated with antibiotics, pesticides and toxic metals by
functionalized magnetic nanoparticles, J. Environ. Chem. Eng.,
6 (2018) 6468–6478.
- S. Mustafa, H.N. Bhatti, M. Maqbool, M. Iqbal, Microalgae
biosorption, bioaccumulation and biodegradation efficiency for
the remediation of wastewater and carbon dioxide mitigation:
prospects, challenges and opportunities, J. Water Process Eng.,
41 (2021) 102009, doi: 10.1016/j.jwpe.2021.102009.
- K. Reddy, R. Nirmal, S. Kumari, F. Bux, Algae-mediated
processes for the treatment of antiretroviral drugs in
wastewater: prospects and challenges, Chemosphere, 280 (2021)
130674, doi:10.1016/j.chemosphere.2021.130674.
- L.P. Mazur, M.A.P. Cechinel, S.M.A. Guelli U. de Souza,
A.R.B. Rui, V.J.P. Vilar, Brown marine macroalgae as natural
cation exchangers for toxic metal removal from industrial
wastewaters: a review, J. Environ. Manage., 223 (2018) 215–253.
- B. Laura, Efficient use of algae biomass loaded with essential
metal ions in the manufacture of feed additives, J. Appl. Phycol.,
32 (2020) 1779–1788.
- I.G. Cara, M. Filip, L. Bulgariu, L. Raus, D. Topa, G. Jitareanu,
Environmental remediation of metribuzin herbicide by
mesoporous carbon—rich from wheat straw, Appl. Sci.,
11 (2021) 4935, doi:10.3390/app11114935.
- L. Liang, F. Xi, W. Tan, X. Meng, B. Hu, X. Wang, Review of
organic and inorganic pollutants removal by biochar and
biochar-based composites, Biochar, 3 (2021) 255–281.
- R.F. Sara, B. Luisa, F.O. Rita, A. Cruz, C. Prudêncio, I.O. Ana,
C. Pinho, N. Santos, J. Morgado, Chemistry, bioactivities,
extraction and analysis of Azadirachtin: state-of-the-art,
Fitoterapia, 134 (2019) 141–150.
- APHA, Standard Methods for the Examinations of Water and
Wastewater, 21st ed., American Public Health Association
(APHA), American Water Works Association (AWWA), Water
Environment Federation (WEF), Washington, DC, 2005.
- E.S. Cossich, C.R.G. Tavares, T.M.K. Ravagnani, Biosorption of
chromium(III) by Sargassum sp. biomass, Electron. J. Biotechnol.,
5 (2002) 133–140.
- Z. Jing, D. Cai, G. Zhang, C. Cai, C. Zhang, G. Qui, K. Zheng,
Z. Wu, Adsorption of methylene blue from aqueous solution
onto multiporous palygorskite modified by ion beam
bombardment: effect of contact time, temperature, pH and ionic
strength, Appl. Clay Sci., 83–84 (2013) 137–143.
- M.A. Segun, K.S. Idowu, O.M. Adejuwon, T. Adeyemi-Adejolu,
A review on the influence of chemical modification on the
performance of adsorbents, Resour. Environ. Sustainability,
1 (2020) 100001, doi:10.1016/j.resenv.2020.100001.
- P. Mullai, S. Vishali, Biodegradation of penicillin-G wastewater
using Phanerochate chrysosporium - an equilibrium and kinetic
modeling, Afr. J. Biotechnol., 6 (2007) 1450–1454.
- Y. Zhou, Y. Zhang, P. Li, G. Li, T. Jiang, Comparative study on the
adsorption interactions of humic acid onto natural magnetite,
hematite and quartz: effect of initial HA concentration, Powder
Technol., 251 (2014) 1–8.
- S. Noreen, U. Khalid, S.M. Ibrahim, T. Javed, A. Ghani, S. Naz,
M. Iqbal, ZnO, MgO and FeO adsorption efficiencies for direct
sky Blue dye: equilibrium, kinetics and thermodynamics
studies, J. Mater. Res. Technol., 9 (2020) 5881–5893.
- Y. Zhang, B.E. Rittmann, J. Wang, Y. Sheng, J. Yu, H. Shi, Y. Qian,
High-carbohydrate wastewater treatment by IAL-CHS with
immobilized Candida tropicalis, Process Biochem., 40 (2005)
857–963.
- Y. Prasanna Kumar, P. King, V.S.R.K. Prasad, Adsorption of zinc
from aqueous solution using marine green algae—Ulva fasciata
sp., Chem. Eng. J., 129 (2007) 161–166.
- J. Cao, Z. Xiong, B. Lai, Effect of initial pH on the tetracycline
(TC) removal by zero-valent iron: adsorption, oxidation and
reduction, Chem. Eng. J., 343 (2018) 492–499.
- A. Hasan, Production of low-cost adsorbent with small particle
size from calcium carbonate rich residue carbonatation cake
and their high performance phosphate adsorption applications,
J. Mater. Res. Technol., 11 (2021) 428–447.
- S. Vishali, P. Mullai, Analysis of two-parameter and threeparameter
isotherms by nonlinear regression for the treatment
of textile effluent using immobilized Trametes versicolor:
comparison of various error functions, Desal. Water Treat.,
57 (2016) 27061–27072.
- A.A. Inyinbor, F.A. Adekola, G.A. Olatunji, Kinetics, isotherms
and thermodynamic modeling of liquid phase adsorption
of Rhodamine B dye onto Raphia hookerie fruit epicarp, Water
Resour. Ind., 15 (2016) 14–27.
- M. Akhtar, S. Iqbal, M.I. Bhanger, M. Zia-Ul-Haq, M. Moazzam,
Sorption of organophosphorous pesticides onto chickpea husk
from aqueous solutions, Colloids Surf., B., 69 (2009) 63–70.
- N. Ayawei, A.N. Ebelegi, D. Wankasi, Modelling and
interpretation of adsorption isotherms, J. Chem., 2017 (2017)
3039817, doi: 10.1155/2017/3039817.
- U. Israel, U.M. Eduok, Biosorption of zinc from aqueous
solution using coconut (Cocos nucifera L) coir dust, Arch. Appl.
Sci. Res., 4 (2012) 809–819.
- P.E. Ohale, C.E. Onu, N.J. Ohale, S.N. Oba, Adsorptive
kinetics, isotherm and thermodynamic analysis of fishpond
effluent coagulation using chitin derived coagulant from
waste Brachyura shell, Chem. Eng. J. Adv., 4 (2020) 100036,
doi: 10.1016/j.ceja.2020.100036.
- Y. Yuwei, Z. Tingting, L. Hanjin, G. Junjie, Y. Wenyi, J. Zhongjie,
Adsorption of arsenic by activated charcoal coated zirconiummanganese
nanocomposite: performance and mechanism,
Colloids Surf., A, 575 (2019) 318–328.
- S. Vishali, R. Karthikeyan, Application of green coagulants
on paint industry effluent – a coagulation-flocculation kinetic
study, Desal. Water Treat., 122 (2018) 112–123.
- S. Vishali, M. Rajdeep, S. Picasso, R. Nihal, Evaluation of
promising coagulant shrimp shell on paint factory effluent:
studies on mixing pattern, isotherms, kinetics, and thickener
design, Desal. Water Treat., 201 (2020) 204–218.