References
- V. Katheresan, J. Kansedo, S.Y. Lau, Efficiency of various recent
wastewater dye removal methods: a review, J. Environ. Chem.
Eng., 6 (2018) 4676–4697.
- J. Wang, Y. Shih, P.Y. Wang, Y.H. Yu, J.F. Su, C-P. Huang,
Hazardous waste treatment technologies, Water Environ. Res.,
91 (2019) 1177–1198.
- M.A. Rauf, S. Salman Ashraf, Survey of recent trends in
biochemically assisted degradation of dyes, Chem. Eng. J.,
209 (2012) 520–530.
- C.R. Holkar, A.J. Jadhav, D.V. Pinjari, N.M. Mahamuni,
A.B. Pandit, A critical review on textile wastewater treatments:
possible approaches, J. Environ. Manage., 182 (2016) 351–366.
- M.T. Yagub, T.K. Sen, S. Afroze, H.M. Ang, Dye and its removal
from aqueous solution by adsorption: a review, Adv. Colloid
Interface Sci., 209 (2014) 172–184.
- N.B. Singh, G. Nagpal, S. Agrawal, Rachna, Water purification
by using adsorbents: a review, Environ. Technol. Innovation,
11 (2018) 187–240.
- L.B.L. Lim, N. Priyantha, S. Amanina, A. Latip, Y. Chen,
A. Hanif, Converting Hylocereus undatus (white dragon fruit)
peel waste into a useful potential adsorbent for the removal of
toxic Congo red dye, Des. Water Treat., 185 (2020) 307–317.
- L.B.L. Lim, N. Priyantha, D.T.B. Tennakoon, H. Ing, M. Khairud,
M. Suklueng, Breadnut peel as a highly effective low-cost
biosorbent for methylene blue: equilibrium, thermodynamic
and kinetic studies, Arabian J. Chem., 10 (2017) S3216–S3228.
- L. Bulgariu, L.B. Escudero, O.S. Bello, M. Iqbal, J. Nisar,
K.A. Adegoke, F. Alakhras, M. Kornaros, I. Anastopoulos,
The utilization of leaf-based adsorbents for dyes removal:
a review, J. Mol. Liq., 276 (2019) 728–747.
- L.B.L. Lim, N. Priyantha, Y. Lu, N.A.H. Mohamad Zaidi,
Adsorption of heavy metal lead using Citrus grandis (Pomelo)
leaves as low-cost adsorbent, Desal. Water Treat., 166 (2019)
44–52.
- A.G. Adeniyi, J.O. Ighalo, Biosorption of pollutants by plant
leaves: an empirical review, J. Environ. Chem. Eng., 7 (2019)
103100, doi: 10.1016/j.jece.2019.103100.
- L.B.L. Lim, N. Priyantha, K.J. Mek, N.A.H.M. Zaidi, Application
of Momordica charantia (bitter gourd) waste for the removal of
malachite green dye from aqueous solution, Desal. Water Treat.,
154 (2019) 385–394.
- H.V. Mehr, J. Saffari, S.Z. Mohammadi, S. Shojaei, The removal
of methyl violet 2B dye using palm kernel activated carbon:
thermodynamic and kinetics model, Int. J. Environ. Sci.
Technol., 17 (2020) 1773–1782.
- Y. Zhou, L. Zhang, Z. Cheng, Removal of organic pollutants
from aqueous solution using agricultural wastes: a review,
J. Mol. Liq., 212 (2015) 739–762.
- L. Zhou, H. Zhou, Y. Hu, S. Yan, J. Yang, Adsorption removal of
cationic dyes from aqueous solutions using ceramic adsorbents
prepared from industrial waste coal gangue, J. Environ.
Manage., 234 (2019) 245–252.
- A.A. Adeyemo, I.O. Adeoye, O.S. Bello, Adsorption of dyes
using different types of clay: a review, Appl. Water Sci., 7 (2017)
543–568.
- B. Cojocariu, A.M. Mocanu, G. Nacu, L. Bulgariu, Possible
utilization of PET waste as adsorbent for orange G dye
removal from aqueous media, Des. Water Treat., 104 (2018)
338–345.
- 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.
- Y. Lu, N. Priyantha, L.B.L. Lim, Ipomoea aquatica roots as
environmentally friendly and green adsorbent for efficient
removal of Auramine O dye, Surf. Interfaces, 20 (2020) 100543,
doi: 10.1016/j.surfin.2020.100543.
- L.B.L. Lim, N. Priyantha, X. Han, N. Afiqah, H. Mohamad,
Enhancement of adsorption characteristics of Methyl violet 2B
dye through NaOH treatment of Cucumis melo var. cantalupensis
(rock melon) skin, Des. Water Treat., 180 (2020) 336–348.
- S.N. Tambat, D.J. Ahirrao, A.B. Pandit, N. Jha, S.M. Sontakke,
Hydrothermally synthesized N2–UiO–66 for enhanced and
selective adsorption of cationic dyes, Environ. Technol.
Innovation, 19 (2020) 101021, doi: 10.1016/j.eti.2020.101021.
- A. Essekri, A. Hsini, Y. Naciri, M. Laabd, Z. Ajmal, M. El Ouardi,
A. Ait Addi, A. Albourine, Novel citric acid-functionalized
brown algae with a high removal efficiency of crystal violet dye
from colored wastewaters: insights into equilibrium, adsorption
mechanism, and reusability, Int. J. Phytorem., 23 (2021) 336–346.
- M. Oplatowska, R.F. Donnelly, R.J. Majithiya, D. Glenn
Kennedy, C.T. Elliott, The potential for human exposure, direct
and indirect, to the suspected carcinogenic triphenylmethane
dye Brilliant Green from green paper towels, Food Chem.
Toxicol., 49 (2011) 1870–1876.
- R. Kant, Textile dyeing industry an environmental hazard,
Nat. Sci., 04 (2012) 22–26.
- R.G. El-sharkawy, Anchoring of green synthesized silver
nanoparticles onto various surfaces for enhanced heterogeneous
removal of brilliant green dye from aqueous solutions with
error analysis study, Colloids Surf., A, 583 (2019) 123871, doi:
10.1016/j.colsurfa.2019.123871.
- N. Kataria, V.K. Garg, Removal of Congo red and Brilliant
green dye from aqueous solution using flower shaped ZnO
nanoparticles, Biochem. Pharmacol., 5 (2017) 5420–5428.
- F. de Castro Silva, M.M.F. da Silva, L.C.B. Lima, J.A. Osajima,
E.C. da Silva Filho, Modifying cellulose with metaphosphoric
acid and its efficiency in removing brilliant green dye, Int. J.
Biol. Macromol., 114 (2018) 470–478.
- A. Aichour, H. Zaghouane-Boudiaf, Highly brilliant green
removal from wastewater by mesoporous adsorbents: kinetics,
thermodynamics and equilibrium isotherm studies, Microchem.
J., 146 (2019) 1255–1262.
- E.A. Moawed, A.E. Wahba, R.A. Gabr, Synthesis and application
of LGB/St/Al2O3 biocomposite for sensitive detection and
efficient removal of brilliant green dye from wastewater, J.
Environ. Chem. Eng., 6 (2018) 7225–7232.
- L. Ernawati, R.A. Wahyuono, H. Widiyandari, D.D. Risanti,
A.W. Yusariarta, Rebeka, V. Sitompul, Experimental data of
CaTiO3 photocatalyst for degradation of organic pollutants
(Brilliant green dye) – green synthesis, characterization and
kinetic study, Data Brief, 32 (2020) 106099, doi: 10.1016/j.
dib.2020.106099.
- B.K. Tripathy, S. Kumar, M. Kumar, A. Debnath, Microwave
induced catalytic treatment of brilliant green dye with carbon
doped zinc oxide nanoparticles: central composite design,
toxicity assessment and cost analysis, Environ. Nanotechnol.
Monit. Manage., 14 (2020), doi: 10.1016/j.enmm.2020.100361.
- B. Sarkar, M. Basak, M. Chowdhury, A.P. Das, Importance of
Diplazium esculentum (Retz.) Sw. (Athyriaceae) on the lives, of
loccal ethnic communities in Terai and Duars of West Bengal –
a report, Plant Arch., 18 (2018) 439–442.
- L.B.L. Lim, A. Usman, M.H. Hassan, N.A.H. Mohamad Zaidi,
Tropical wild fern (Diplazium esculentum) as a new and effective
low-cost adsorbent for removal of toxic crystal violet dye,
J. Taibah Univ. Sci., 14 (2020) 621–627.
- J.A. Junejo, G. Gogoi, J. Islam, M. Rudrapal, P. Mondal,
H. Hazarika, K. Zaman, Exploration of antioxidant, antidiabetic
and hepatoprotective activity of Diplazium esculentum - a wild
edible plant from North Eastern India, Future J. Pharm. Sci.,
4 (2018) 93–101.
- H.I. Chieng, L.B.L. Lim, N. Priyantha, Enhancement of crystal
violet dye adsorption on artocarpus camansi peel through
sodium hydroxide treatment, Des. Water Treat., 58 (2017)
320–331.
- N.A.H. Mohamad Zaidi, L.B.L. Lim, N. Priyantha, A. Usman,
Artocarpus odoratissimus leaves as an eco-friendly adsorbent
for the removal of toxic Rhodamine B dye in aqueous
solution: equilibrium isotherm, kinetics, thermodynamics and
regeneration studies, Arabian J. Sci. Eng., 43 (2018) 6011–6020.
- H.I. Chieng, N. Priyantha, L.B.L. Lim, Effective adsorption
of toxic brilliant green from aqueous solution using peat of
Brunei Darussalam: isotherms, thermodynamics, kinetics and
regeneration studies, RSC Adv., 5 (2015) 34603–34615.
- A. Asheeba, L.B.L. Lim, C. Mei, N. Priyantha, Application of
Dimocarpus longan ssp. malesianus leaves in the sequestration of
toxic brilliant green dye, Des. Water Treat., 189 (2020) 428–439.
- D. Zhang, M. Zhu, J. Yu, H. Meng, F. Jiao, Effective removal
of brilliant green from aqueous solution with magnetic Fe3O4@SDBS@LDHs composites, Trans. Nonferrous Met. Soc. China,
27 (2017) 2673–2681.
- M.S.U. Rehman, M. Munir, M. Ashfaq, N. Rashid, M.F. Nazar,
M. Danish, J.-I. Han, Adsorption of Brilliant Green dye from
aqueous solution onto red clay, Chem. Eng. J., 228 (2013) 54–62.
- V.S. Mane, P.V.V. Babu, Studies on the adsorption of Brilliant
Green dye from aqueous solution onto low-cost NaOH treated
saw dust, Desalination, 273 (2011) 321–329.
- M.K. Dahri, L.B.L. Lim, C.C. Mei, Cempedak durian as a
potential biosorbent for the removal of Brilliant Green dye from
aqueous solution: equilibrium, thermodynamics and kinetics
studies, Environ. Monit. Assess., 187 (2015) 1–13.
- S. Iftekhar, D.L. Ramasamy, V. Srivastava, M.B. Asif,
M. Sillanpää, Understanding the factors affecting the adsorption
of lanthanum using different adsorbents: a critical review,
Chemosphere, 204 (2018) 413–430.
- Y. Zhang, C. Zhu, F. Liu, Y. Yuan, H. Wu, A. Li, Effects of ionic
strength on removal of toxic pollutants from aqueous media
with multifarious adsorbents: a review, Sci. Total Environ., 646
(2019) 265–279.
- Y. Hu, T. Guo, X. Ye, Q. Li, M. Guo, H. Liu, Z. Wu, Dye
adsorption by resins: effect of ionic strength on hydrophobic
and electrostatic interactions, Chem. Eng. J., 228 (2013)
392–397.
- C. Li, Y. Dong, J. Yang, Y. Li, C. Huang, Modified nano-graphite/Fe3O4 composite as efficient adsorbent for the removal of methyl
violet from aqueous solution, J. Mol. Liq., 196 (2014) 348–356.
- N. Priyantha, L.B.L. Lim, M.K. Dahri, Dragon fruit skin as a
potential biosorbent for the removal of methylene blue dye
from aqueous solution, Int. Food Res. J., 22 (2015) 2141–2148.
- S. Lagergren, Zur theorie der sogenannten adsorption geloster
stoffe, Kungl. Svens. Vetenskapsakad. Handl., 24 (1898) 1–39.
- Y.S. Ho, G. McKay, Sorption of dye from aqueous solution by
peat, Chem. Eng. J., 70 (1998) 115–124.
- L. Largitte, R. Pasquier, A review of the kinetics adsorption
models and their application to the adsorption of lead by an
activated carbon, Chem. Eng. Res. Des., 109 (2016) 495–504.
- M.A. Hubbe, S. Azizian, S. Douven, Implications of apparent
pseudo-second-order adsorption kinetics onto cellulosic
materials: a review, Bioresources, 14 (2019) 7582–7626.
- N. Ayawei, A.N. Ebelegi, D. Wankasi, Modelling and interpretation
of adsorption isotherms, J. Chem., 2017 (2017) 1–11.
- Y.C. Lu, N. Priyantha, L.B.L. Lim, M. Suklueng, Toxic yellow
cow dung powder (Auramine O dye) removal via Ipomoea
aquatica waste, Des. Water Treat., 181 (2020) 422–435.
- S.K. Brar, N. Wangoo, R.K. Sharma, Enhanced and selective
adsorption of cationic dyes using novel biocompatible selfassembled
peptide fibrils, J. Environ. Manage., 255 (2020)
109804, doi: 10.1016/j.jenvman.2019.109804.
- N. Priyantha, L.B.L. Lim, N.H.M. Mansor, A.B. Liyandeniya,
Irreversible sorption of Pb(II) from aqueous solution on
breadfruit peel to mitigate environmental pollution problems,
Water Sci. Technol., 80 (2019) 2241–2249.
- N.B.M. Hamzaoui, B. Bestani, The use of linear and nonlinear
methods for adsorption isotherm optimization of basic green
4-dye onto sawdust-based activated carbon, J. Mater. Environ.
Sci., 9 (2018) 1110–1118.
- H.R. Ghaffari, H. Pasalari, A. Tajvar, K. Dindarloo, B. BakGoudarzi,
V. Alipour, A. Ghanbarneajd, Linear and nonlinear
two-parameter adsorption isotherm modeling: a case-study,
Int. J. Eng. Sci., 6 (2017) 1–11.
- B. Nagy, C. Mânzatu, A. Măicăneanu, C. Indolean, Barbu-
Tudoran, Lucian, C. Majdika, Linear and nonlinear regression
analysis for heavy metals removal using Agaricus bisporus
macrofungus, Arabian J. Chem., 10 (2017) S3569–S3579.
- I. Langmuir, The adsorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- H. Freundlich, Over the adsorption in the solution, J. Phys.
Chem., 57 (1906) 385–470.
- M.J. Temkin, V. Pyzhev, Kinetics of ammonia synthesis on
promoted iron catalysts, Acta Physiochim, 12 (1940) 217–222.
- O. Redlich, D.L. Peterson, A useful adsorption isotherm, J. Phys.
Chem., 63 (1959) 1024, doi: 10.1021/j150576a611.
- R. Sips, On the structure of a catalyst surface, J. Chem. Phys.,
16 (1948) 490–495.
- H.N. Tran, S.J. You, A. Hosseini-Bandegharaei, H.P. Chao,
Mistakes and inconsistencies regarding adsorption of
contaminants from aqueous solutions: a critical review, Water
Res., 120 (2017) 88–116.
- M. Yadav, N.K. Singh, Isotherm investigation for the sorption
of fluoride onto Bio-F: comparison of linear and non-linear
regression method, Appl. Water Sci., 7 (2017) 4793–4800.
- L.B.L. Lim, N. Priyantha, T. Zehra, C.W. Then, C.M. Chan,
Adsorption of crystal violet dye from aqueous solution onto
chemically treated Artocarpus odoratissimus skin: equilibrium,
thermodynamics, and kinetics studies, Des. Water Treat.,
57 (2016) 10246–10260.
- L.B.L. Lim, N. Priyantha, N.A.H. Mohamad Zaidi, A superb
modified new adsorbent, Artocarpus odoratissimus leaves, for
removal of cationic methyl violet 2B dye, Environ. Earth Sci.,
75 (2016) 1179, doi: 10.1007/s12665-016-5969-7.
- S.R. Shirsath, A.P. Patil, R. Patil, J.B. Naik, P.R. Gogate,
S.H. Sonawane, Removal of Brilliant Green from wastewater
using conventional and ultrasonically prepared poly(acrylic
acid) hydrogel loaded with kaolin clay: a comparative study,
Ultrason. Sonochem., 20 (2013) 914–923.
- M.K. Dahri, M.R.R. Kooh, L.B.L. Lim, Adsorption characteristics
of pomelo skin toward toxic Brilliant Green dye, Sci. Bruneiana,
16 (2017) 49–56.
- V.S. Mane, I. Deo Mall, V. Chandra Srivastava, Kinetic and
equilibrium isotherm studies for the adsorptive removal of
Brilliant Green dye from aqueous solution by rice husk ash,
J. Environ. Manage., 84 (2007) 390–400.
- J. Anwar, R. Rehman, T. Mahmud, M. Salman, Isothermal
modeling of batch biosorption of brilliant green dye from water
by chemically modified Eugenia jambolana leaves, 34 (2012)
136–143.
- N.A.H. Mohamad Zaidi, W.J. Liew, L.B.L. Lim, Adsorptionof
brilliant green dye on Nephelium mutabile (Pulasan) leaves, Sci.
Bruneiana, 17 (2018) 25–34.
- A. Sharma, K.G. Bhattacharyya, Utilization of a biosorbent
based on Azadirachta indica (Neem) leaves for removal of watersoluble
dyes, Indian J. Chem. Technol., 12 (2005) 285–295.
- R. Rehman, T. Mahmud, M. Irum, Brilliant green dye elimination
from water using Psidium guajava leaves and Solanum tuberosum
peels as adsorbents in environmentally Benign Way, J. Chem.,
2015 (2015) 1–8.
- S. Agarwal, V.K. Gupta, M. Ghasemi, J. Azimi-Amin, Peganum
harmala-L seeds adsorbent for the rapid removal of noxious
brilliant green dyes from aqueous phase, J. Mol. Liq., 231 (2017)
296–305.
- N. Akter, M.A. Hossain, M.J. Hassan, M.K. Amin, M. Elias,
M.M. Rahman, A.M. Asiri, I.A. Siddiquey, M.A. Hasnat, Amine
modified tannin gel for adsorptive removal of Brilliant Green
dye, J. Environ. Chem. Eng., 4 (2016) 1231–1241.
- R. Lakshmipathy, N.A. Reddy, N.C. Sarada, Optimization
of brilliant green biosorption by native and acid-activated
watermelon rind as low-cost adsorbent, Des. Water Treat.
54 (2015) 235–244.
- L. Kong, F. Qiu, Z. Zhao, X. Zhang, T. Zhang, J. Pan, D. Yang,
Removal of brilliant green from aqueous solutions based on
polyurethane foam adsorbent modified with coal, J. Cleaner
Prod., 137 (2016) 51–59.
- Y. Kismir, A.Z. Aroguz, Adsorption characteristics of the
hazardous dye Brilliant Green on Saklıkent mud, Chem. Eng. J.,
172 (2011) 199–206.
- M.K. Dahri, L.B.L. Lim, M.R.R. Kooh, C.M. Chan, Adsorption
of brilliant green from aqueous solution by unmodified and
chemically modified tarap (Artocarpus odoratissimus) peel, Int.
J. Environ. Sci. Technol., 14 (2017) 2683–2694.
- R. Kumar, M.A. Barakat, Decolourization of hazardous brilliant
green from aqueous solution using binary oxidized cactus fruit
peel, Chem. Eng. J., 226 (2013) 377–383.
- M. Vakili, S. Deng, G. Cagnetta, W. Wang, P. Meng, D. Liu,
G. Yu, Regeneration of chitosan-based adsorbents used
in heavy metal adsorption: a review, Sep. Purif. Technol.,
224 (2019) 373–387.
- O. León, A. Muñoz-Bonilla, D. Soto, D. Pérez, M. Rangel,
M. Colina, M. Fernández-García, Removal of anionic and
cationic dyes with bioadsorbent oxidized chitosans, Carbohydr.
Polym., 194 (2018) 375–383.