References
- C. Zaharia, D. Suteu, Textile Organic Dyes—Characteristics,
Polluting Effects, and Separation/Elimination Procedures
from Industrial Effluents, A Critical Overview, T. Puzyn, A.
Mostrag-Szlichtyng, Eds., Organic Pollutants Ten Years After
the Stockholm Convention—Environmental and Analytical
Update, Intech, Rijeka, 2012, pp. 57–86.
- C. Zaharia, D. Suteu, A. Muresan, Options and solutions of
textile effluent decolorization using some specific physicochemical
treatment steps, Environ. Eng. Manage. J., 11 (2012)
493–509.
- A. Machulek, S.C. Oliveira, M.E. Osugi, V.S. Ferreira, F.H.
Quina, R.F. Dantas, S.L. Oliveira, G.A. Casagrande, F.J. Anaissi,
V.O. Silva, R.P. Cavalcante, F. Gozzi, D.D. Ramos, A.P.P. da
Rosa, A.P.F. Santos, D.C. de Castro, J.A. Nogueira, In: M.N.
Rashed, Organic Pollutants – Monitoring, Risk and Treatment,
Adsorption Technique for the Removal of Organic Pollutants
from Water and Wastewater, InTech Publications, Rijeka, 2013.
- L. Pereira, M. Alves, A. Malik, E. Grohmann, Eds., Environmental
Protection Strategies for Sustainable Development, Chapter
4, Dyes–Environmental Impact and Remediation, Springer
Science + Business Media B.V., 2012, pp. 111–162.
- V.V. Panic, S.I. Seslija, A.R. Nesic, S.J. Velikovic, Adsorption of
azo dyes in polymer materials, Hem. Ind., 67 (2013) 881–900.
- M. Kharub, Use of various technologies, methods and
adsorbents for removal of dyes, J. Environ. Res. Develop., 6
(2012) 879–883.
- S.M. Kanawade, Treatment on dye industrial wastewater by
using adsorption, Int. J. Chem. Mater. Sci., 2 (2014) 59–67.
- P.L. Bragd, H. van Bekkum, A.C. Besemer, TEMPO-Mediated
oxidation of polysaccharides: survey of methods and
applications, Top. Catal., 27 (2004) 49–66.
- Y. Kato, R. Matsuo, A. Isogai, Oxidation process of watersoluble
starch in TEMPO-mediated system, Carbohydr. Polym.,
51 (2003) 69–75.
- A.E.J. de Nooy, A.C. Besemer, H. van Bekkum, Highly selective
TEMPO mediated oxidation of primary alcohol groups in
polysaccharides, Rec. Trav. Chim. Pays Bas, 113 (1994) 165–166.
- V.M. Gorduza, L. Tofan, D. Suteu, E.V. Gorduza, Biomaterials–Biotehnologies–Biocontrol, CERMI Publishing House, Iasi,
2002.
- S. Coseri, G. Biliuta, B.C. Simionescu, K. Stana-Kleinschek, V.
Ribitsch, V. Harabagiu, Oxidized cellulose-survey of the most
recent achievements, Carbohydr. Polym., 93 (2013) 207–215.
- M. Filipi, M. Milichovský, Adsorption organic cationic dyes of
oxycelluloses and linters, J. Encapsul. Adsorpt. Sci., 4 (2014) 1–7.
- S. Coseri, G. Biliuta, L. Fras-Zemljic, J. Stevanic Srndovic, T.
Larsson, S. Strnad, T. Kreze, A. Naderi, T. Lindstrom, Oneshot
carboxylation of microcrystalline cellulose in the presence
of nitroxyl radicals and sodium periodate, RSC Adv., 5 (2015)
85889–85897.
- S. Coseri, Cellulose: to depolymerize or not to? Biotechnol.
Adv., 35 (2017) 251–266.
- C.D. Tran, T.M. Mututuvari, Cellulose, chitosan and keratin
composite materials, controlled drug release, Langmuir, 31
(2015) 1516–1526.
- M. Dobromir, G. Biliuta, D. Luca, M. Aflori, V. Harabagiu, S.
Coseri, XPS study of the ion-exchange capacity of the native
and surface oxidized viscose fibers, Colloids Surf., A, 381 (2011)
106–110.
- D. Klemm, F. Kramer, S. Moritz, T. Lindstrom, M. Ankerfors, D.
Gray, A. Dorris, Nanocelluloses: a new family of nature based
materials, Angew. Chem. Int. Ed., 50 (2011) 5438–5466.
- P. Kollár, P. Suchý, J. Muselík, M. Bajerová, P. Havelka, T.
Sopuch, Hemostatic effects of oxidized cellulose, Ceska Slov.
Farm., 57 (2008) 11–16.
- B.G. Yasnitsky, G.M. Tsukanova, V.A. Oridoroga, J.A. Furmanov,
Method of Making Absorbable Surgical Threads, Patent US
4347056 A, 1982.
- L. Zhu, V. Kumar, G.S. Banker, Examination of aqueous
oxidized cellulose dispersions as a potential drug carrier.
I. Preparation and characterization of oxidized cellulosephenylpropanolamine
complexes, AAPS Pharm. Sci. Technol.,
5 (2004) 138–144.
- T. Morooka, M. Norimoto, T. Yamada, Periodate oxidation of
cellulose by homogeneous reaction, J. Appl. Polym. Sci., 38
(1989) 849–858.
- C. Schonauer, E. Tessitore, G. Barbagallo, V. Albanese, A.
Moraci, The use of local agents: bone wax, gelatin, collagen,
oxidized cellulose, Eur. Spine J., 13 (2004) S89–S96.
- D.J. Lentz, M.A. Khan, Oxidized Cellulose as a Medical
Lubricant, Patent US 4773902 A, 1983.
- R. Weishaupt, G. Siqueira, M. Schubert, P. Tingaut, K. Maniura-
Weber, T. Zimmermann, L. Thöny-Meyer, G. Faccio, J. Ihssen,
TEMPO-oxidized nanofibrillated cellulose as a high density
carrier for bioactive molecules, Biomacromolecules, 16 (2015)
3640–3650.
- L.H. Zhu, V. Kumar, G.S. Banker, Examination of oxidized
cellulose as a macromolecular prodrug carrier: preparation
and characterization of an oxidized cellulose–phenyl propanol
amine conjugate, Int. J. Pharm., 223 (2001) 35–47.
- G.Z. Kyzas, M. Kostoglon, Green adsorbants for wastewaters: a
critical review, Materials, 7 (2014) 333–364.
- B.O. Opeolu, O. Bamgbose, T.A. Arowolo, M.T. Adetunji,
Utilization of biomaterials as adsorbent for heavy metals removal
from aqueous matrices, Sci. Res. Essays, 5 (2010) 1780–1787.
- O.A. Titi, O.S. Bello, An overview of low cost adsorbents for
copper (II) ions removal, J. Biotechnol. Biomater., 5 (2015) http://
dx.doi.org/10.4172/2155-952X.1000163.
- A. Bajpai, N. Tripathi, A hybrid material for sustainable
environmental protection, Procedia Eng., 75 (2014) 56–60.
- G. Crini, Recent developments in polysaccharide – based
materials used as adsorbents in wastewater treatment, Progr.
Polym. Sci., 30 (2005) 38–70.
- L.R. Martins, J.A.V. Rodrigues, O.F.H. Adarme, T.M. Sacramento
Melo, L.V. Alves Gurgel, L.F. Gil, Optimization of cellulose
and sugarcane bagasse oxidation: application for adsorptive
removal of crystal violet and auramine-O from aqueous
solution, J. Colloid Interface Sci., 494 (2017) 223–241.
- H.N. Bhatti, A. Jabeen, M. Iqbal, S. Noreen, Zubera Naseem,
Adsorptive behavior of rice bran-based composites for
malachite green dye: isotherm, kinetic and thermodynamic
studies, J. Mol. Liq., 237 (2017) 322–333.
- N. Tahir, H.N. Bhatti, M. Iqbal, S. Noreena, Biopolymers
composites with peanut hull waste biomass and application
for Crystal Violet adsorption, Int. J. Biol. Macromol., 94 (2017)
210–220.
- S. Shoukat, H.N. Bhatti, M. Iqbal, S. Noreen, Mango stone
biocomposite preparation and application for crystal violet
adsorption: a mechanistic study, Microporous Mesoporous
Mater., 239 (2017) 180–189.
- H. Sihtola, B. Kyrklund, L. Laamanen, I. Palenlus, Comparison
and conversion of viscosity and DP values determined by
different methods, Paperi Ja Puu, 45 (1963) 225–323.
- B. Sun, C. Gu, J. Ma, B. Liang, Kinetic study on TEMPO-mediated
selective oxidation of regenerated cellulose, Cellulose, 12 (2005)
59–66.
- A. Chaparadza, J.M. Hossenlop, Adsorption kinetics,
isotherms and thermodynamics of tartrazine removal using
a banana peel based sorbent, Water Sci. Technol., 65 (2012)
940–947.
- H. Sohrabi, E. Ameri, Adsorption equilibrium, kinetics and
thermodynamics assessment of the removal of the reactive
red 141 dye using sesame waste, Desal. Wat. Treat., 57 (2016)
18087–18098.
- T. Santhi, S. Manonmani, Removal of malachite green from
aqueous solution by activated carbon prepared from the peel
of Cucumis sativa fruit by adsorption, Clean Soil Air Water, 39
(2011) 162–170.