References
- T.W. Seow, C.K. Lim, Removal of dye by adsorption: a review,
Int. J. Appl. Eng. Res., 11 (2016) 2675–2679.
- 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.
- S. Banerjee, M.C. Chattopadhyaya, Adsorption characteristics
for the removal of a toxic dye, tartrazine from aqueous solutions
by a low cost agricultural by-product, Arabian J. Chem.,
10 (2017) 1629–1638.
- I. Balta, B. Sevastre, V. Mireşan, M. Taulescu, C. Raducu,
A.L. Longodor, Z. Marchiş, C.S. Mariş, A. Coroian, Protective
effect of blackthorn fruits (Prunus spinosa) against tartrazine
toxicity development in albino Wistar rats, BMC Chem.,
13 (2019) 104–115.
- I.S. Khan, N. Ali, R. Hamid, S.A. Ganie, Genotoxic effect of
two commonly used food dyes metanil yellow and carmoisine
using Allium cepa L. as indicator, Toxicol. Rep., 7 (2020) 370–375.
- A. Gičević, L. Hindija, A. Karačić, Toxicity of Azo Dyes
in Pharmaceutical Industry, A. Badnjevic, R. Škrbić,
L. Gurbeta Pokvić, Eds., International Conference on
Medical and Biological Engineering, IFMBE Proceedings,
Vol. 73, Springer, Cham, 2020, pp. 581–587, https://doi.
org/10.1007/978-3-030-17971-7_88.
- A. Salehi, E.N. Kani, Green cylindrical mesoporous adsorbent
based on alkali-activated phosphorous slag: synthesis, dye
removal, and RSM modeling, Adsorption, 24 (2018) 647–666.
- G.L. Dotto, T.R.S. Cadaval, L.A.A. Pinto, Use of Spirulina
platensis micro and nanoparticles for the removal synthetic
dyes from aqueous solutions by biosorption, Process Biochem.,
47 (2012) 1335–1343.
- F. Korkut, D. Saloglu, Synthesis, characterization and
tetracycline adsorption behaviour of activated carbon doped
alginate beads: isotherms, kinetics, thermodynamic and
adsorption mechanism, Desal. Water Treat., 206 (2020) 315–330.
- J.A.V. Costa, L. Maria Colla, P.F. Duarte Filho, Improving
Spirulina platensis biomass yield using a fed-batch process,
Bioresour. Technol., 92 (2004) 237–241.
- M. Nicoletti, Microalgae nutraceuticals, Food, 5 (2016) 54–62,
doi: 10.3390/foods5030054.
- G.L. Dotto, J.O. Gonçalves, T.R.S. Cadaval Jr., L.A.A. Pinto,
Biosorption of phenol onto bionanoparticles from Spirulina sp.
LEB 18, J. Colloid Interface Sci., 407 (2013) 450–456.
- D. Saloglu, N. Ozcan, Activated carbon embedded chitosan/polyvinyl alcohol biocomposites for adsorption of nonsteroidal
anti-inflammatory drug-naproxen from wastewater, Desal.
Water Treat., 107 (2018) 72–84.
- E. Bilgin Simsek, D. Saloglu, N. Ozcan, I. Novak, D. Berek,
Carbon fiber embedded chitosan/PVA composites for
decontamination of endocrine disruptor bisphenol-A from
water, J. Taiwan Inst. Chem. Eng., 70 (2017) 291–301.
- L. Liu, S.S. Fan, Y. Li, Removal behavior of Methylene blue
from aqueous solution by tea waste: kinetics, isotherms and
mechanism, Int. J. Environ. Res. Public Health, 15 (2018)
1321–1337.
- T.V. Rêgo, T.R.S. Cadaval Jr., G.L. Dotto, L.A.A. Pinto, Statistical
optimization, interaction analysis and desorption studies for
the azo dyes adsorption onto chitosan films, J. Colloid Interface
Sci., 411 (2013) 27–33.
- Y.X. Luo, A. Lode, C.T. Wu, J. Chang, M. Gelinsky, Alginate/nanohydroxyapatite scaffolds with designed core/shell
structures fabricated by 3D plotting and in situ mineralization
for bone tissue engineering, ACS Appl. Mater. Interfaces,
7 (2015) 6541–6549.
- M. Mushtaq, I.M. Tan, L. Ismail, M. Nadeem, M. Sagir,
R. Azam, R. Hashmet, Influence of PZC (point of zero charge)
on the static adsorption of anionic surfactants on a Malaysian
sandstone, J. Dispersion Sci. Technol., 35 (2014) 343–349.
- F. Amin, F.N. Talpur, A. Balouch, M.A. Surhio, M.A. Bhutto,
Biosorption of fluoride from aqueous solution by white-rot
fungus Pleurotus eryngii ATCC 90888, Environ. Nanotechnol.
Monit. Manage., 3 (2015) 30–37.
- H.L. Cai, P.C. Li, Z.X. Ge, Y.X. Xian, D.T. Lu, A new method to
determine varying adsorbed density based on Gibbs isotherm
of supercritical gas adsorption, Adsorpt. Sci. Technol., 36 (2018)
1687–1699.
- Z. Al-Qodah, M. Al-Shannag, Heavy metal ions removal
from wastewater using electrocoagulation processes: a
comprehensive review, Sep. Sci. Technol., 52 (2017) 2649–2676.
- S.-S. Liu, C.-K. Lee, H.-C. Chen, C.-C. Wang, L.-C. Juang,
Application of titanate nanotubes for Cu(II) ions adsorptive
removal from aqueous solution, Chem. Eng. J., 147 (2009)
188–193.
- W.F. Liu, J. Zhang, C.L. Zhang, Y.F. Wang, Y. Li, Adsorptive
removal of Cr(VI) by Fe-modified activated carbon prepared
from Trapa natans husk, Chem. Eng. J., 162 (2010) 677–684.
- R. Nadeem, M.A. Naqvi, M.H. Nasir, R. Saeed, T. Iqbal,
M. Ashraf, T.M. Ansari, Efficiency of physically pre-treated
Mangifera indica biomass for Cu2+ and Zn2+ sequestration,
J. Saudi Chem. Soc., 19 (2015) 23–35.
- S. Rengaraj, J.-W. Yeon, Y.H. Kim, Y.J. Jung, Y.-K. Ha, W.-H. Kim,
Adsorption characteristics of Cu(II) onto ion exchange resins
252H and 1500H: kinetics, isotherms and error analysis,
J. Hazard. Mater., 143 (2007) 469–477.
- P. Mondal, B. Mohanty, C.B. Majumder, Removal of arsenic
from simulated groundwater using GAC-Ca in batch reactor:
kinetics and equilibrium studies, Clean–Soil Air Water.,
40 (2012) 506–514.
- S. Vasudevan, J. Lakshmi, Effects of alternating and direct
current in electrocoagulation process on the removal
of cadmium from water – a novel approach, Sep. Sci.
Technol., 80 (2011) 643–651.
- R.Z. Wang, Q.B. Wang, Adsorption mechanism and
improvements of the adsorption equation for adsorption
refrigeration pairs, Int. J. Energy Res., 23 (1999) 887–898.
- S.Y. Wang, T. Vincent, C. Faur, E. Guibal, Alginate and algalbased
beads for the sorption of metal cations: Cu(II) and
Pb(II), Int. J. Mol. Sci., 17 (2016) 1453–1460.
- V.K. Gupta, R. Jain, M. Shrivastava, A. Nayak, Equilibrium and
thermodynamic studies on the adsorption of the dye tartrazine
onto waste “coconut husks” carbon and activated carbon,
J. Chem. Eng., 55 (2010) 5083–5090.
- I.-G. Bacioiu, L. Stoica, C. Constantin, A.-M. Stanescu, Removal
of tartrazine from aqueous solution by adsorption on activated
red mud, Water Air Soil Pollut., 228 (2017) 298, https://doi.
org/10.1007/s11270-017-3469-3.
- A. Murray, B. Örmeci, Competitive effects of humic acid and
wastewater on adsorption of Methylene blue dye by activated
carbon and non-imprinted polymers, J. Environ. Sci., 66 (2018)
310–317.
- B. Damiyine, B. Guenbour, R. Boussen, Adsorption of
Rhodamine B dye onto expanded perlite from aqueous solution:
kinetics, equilibrium and thermodynamics, J. Mater. Environ.
Sci., 8 (2017) 345–355.
- C. Arora, S. Soni, S. Sahu, J. Mittal, P. Kumar, P.K. Bajpai,
Iron based metal organic framework for efficient removal
of Methylene blue dye from industrial waste, J. Mol. Liq.,
284 (2019) 343–352.
- V.K. Gupta, S. Agarwal, R. Ahmad, A. Mirza, J. Mittal,
Sequestration of toxic Congo Red dye from aqueous solution
using ecofriendly guar gum/activated carbon nanocomposite,
Int. J. Biol. Macromol., 158 (2020) 1310–1318.