References
- J.G. Speight, Fuel Science and Technology Handbook, Marcel
Dekkar, New York, 1990.
- M. Mousavi, T. Abdollahi, F. Pahlavan, E.H. Fini, The influence
of asphaltene-resin molecular interactions on the colloidal
stability of crude oil, Fuel, 183 (2016) 262–271.
- C.H. Bartholomew, Upgrading of Heavy Oils and Residue, M.C.
Oballa, S.S. Shih, Eds., Catalytic Hydroprocessing of Petroleum
and Distillates, Marcel Decker, New York, 1994, p. 42.
- P. Painter, B. Veytsman, J. Youtcheff, Asphaltene aggregation
and solubility, Energy Fuels, 29 (2015) 2120–2133.
- M. Hasan, M.N. Siddiqui, M. Arab, Separation and
characterization of asphaltenes from Saudi Arabian crudes,
Fuel, 67 (1988) 1131–1134.
- J.W. Shirokoff, M.N. Siddiqui, M.F. Ali, Characterization of
the structure of Saudi crude asphaltenes by X-ray diffraction,
Energy Fuels, 11 (1997) 561–565.
- J. Sokolowska-Gajda, H.S. Freeman, A. Reife, Synthetic dyes based
on environmental considerations, Dye Pigm., 30 (1996) 1–20.
- G. Camci-Unal, N.L.B. Pohl, Quantitative determination of
heavy metal contaminant complexation by the carbohydrate
polymer chitin, J. Chem. Eng. Data, 55 (2010) 1117–1121.
- R. Kiefer, W.H. Höll, Sorption of heavy metals onto selective
ion-exchange adsorbents with aminophosphonate functional
groups, Ind. Eng. Chem. Res., 40 (2001) 4570–4576.
- G. Güçlü, G. Gürdağ, S. Özgümüş, Competitive removal of
heavy metal ions by cellulose graft copolymers, J. Appl. Polym.
Sci., 90 (2003) 2034–2039.
- M.V. Subbaiah, D.S. Kim, Adsorption of methyl orange from
aqueous solution by aminated pumpkin seed powder: kinetics,
isotherms, and thermodynamic studies, Ecotoxicol. Environ.
Saf., 128 (2016) 109–117.
- L. Ai, C. Zhang, L. Meng, Adsorption of methyl orange from
aqueous solution on hydrothermal synthesized Mg–Al layered
double hydroxide, J. Chem. Eng. Data, 56 (2011) 4217–4225.
- E. Mekatel, S. Amokrane, A. Aid, D. Nibou, M. Trari, Adsorption
of methyl orange on nanoparticles of a synthetic zeolite NaA/CuO, C.R. Chim., 18 (2015) 336–344.
- K. Mahmoudi, N. Hamdi, A. Kriaa, E. Srasra, Adsorption of
methyl orange using activated carbon prepared from lignin by
ZnCl2 treatment, Russ. J. Phys. Chem. A, 86 (2012) 1294–1300.
- D.R. Tchuifon, S.G. Anaghoa, E. Njanja, J.N. Ghogomu, N.G.
Ndifor-Angwafor, T. Kamgaing, Equilibrium and kinetic
modelling of methyl orange adsorption from aqueous solution
using rice husk and egussi peeling, Int. J. Chem. Sci., 12 (2014)
741–761.
- M. Kumar, R. Tamilarasan, Modeling of experimental data for
the adsorption of methyl orange from aqueous solution using a
low cost activated carbon prepared from Prosopis juliflora, Pol. J.
Chem. Technol., 15 (2013) 29–39.
- A.A. Jalil, S. Triwahyono, S.H. Adam, N.D. Rahim, M.A.A.
Aziz, N.H.H. Hairom, N.A.M. Razali, M.A.Z. Abidin, M.
Mohamadiah, Adsorption of methyl orange from aqueous
solution onto calcined Lapindo volcanic mud, J. Hazard. Mater.,
181 (2010) 755–762.
- K.R. Ramakrishna, T. Viraraghavan, Dye removal using low
cost adsorbents, Water Sci. Technol., 36 (1997) 189–196.
- S. Babel, T.A. Kurniawan, Low-cost adsorbents for heavy metals
uptake from contaminated water: a review, J. Hazard. Mater., 97
(2003) 219–243.
- V.K. Garg, R. Kumar, R. Gupta, Removal of malachite green
dye from aqueous solution by adsorption using agro-industry
waste: a case study of Prosopis cineraria, Dyes Pigm., 62 (2004)
1–10.
- C. Namasivayam, S. Sumithra, Removal of direct red 12B and
methylene blue from water by adsorption onto Fe(III)/Cr(III)
hydroxide, an industrial solid waste, J. Environ. Manage., 74
(2005) 207–215.
- P. Janos, H. Buchtova, M. Ryznarova, Sorption of dyes from
aqueous solutions onto fly ash, Water Res., 37 (2003) 4938–4944.
- V. Gupta, R. Kumarc, A. Nayaka, T. Saleh, M.A. Barakat,
Adsorptive removal of dyes from aqueous solution onto carbon
nanotubes: a review, Adv. Colloid Interface Sci., 193–194 (2013)
24–34.
- J.P. Wang, H.C. Yang, C.T. Hsieh, Adsorption of phenol and
basic dye on carbon nanotubes/carbon fabric composites from
aqueous solution, Sep. Sci. Technol., 46 (2010) 340–348.
- R. Coughlin, F. Ezra, Role of surface acidity in the adsorption
of organic pollutants on the surface of carbon, Environ. Sci.
Technol., 2 (1968) 291–297.
- K. Yang, B. Xing, Adsorption of organic compounds by carbon
nanomaterials in aqueous phase: Polanyi theory and its
application, Chem. Rev., 110 (2010) 5989–6008.
- G. McKay, M.S. Otterburn, A.J. Aga, Fuller’s earth and fired clay
as absorbents for dyestuffs external mass transport processes
during adsorption, Water Air Soil Pollut., 24 (1985) 307–322.
- M.N. Sddiqui, Infrared study of hydrogen bond types in
asphaltenes, Pet. Sci. Technol., 21 (2003) 1601–1615.
- M.F. Ali, M.N. Siddiqui, A.A. Al-Hajji, Structural studies on
residual fuel oil asphaltenes by RICO method, Pet. Sci. Technol.,
22 (2004) 631–645.
- M.N. Siddiqui, Catalytic pyrolysis of arab heavy residue and
effects on the chemistry of asphaltene, J. Anal. Appl. Pyrolysis,
89 (2010) 278–285.
- Y. Akama, A. Tongb, M. Itoa, S. Tanakaa, The study of the
partitioning mechanism of methyl orange in an aqueous twophase
system, Talanta, 48 (1999) 1133–1137.
- J.A. Dean, Lange’s Handbook of Chemistry, 15th ed.,
McGraw-Hill, New York, USA, 1998.
- A. Cabeza, X. Ouyang, C.V.K. Sharma, M.A.G. Aranda,
S. Bruque, A. Clearfield, Complexes formed between
nitrilotris(methylenephosphonic acid) and M2+ transition
metals: isostructural organic−inorganic hybrids, Inorg. Chem.,
41 (2002) 2325–2333.
- M.R. Samarghandi, M. Hadi, S. Moayedi, F. Barjasteh Askari,
Two-parameter isotherms of methyl orange sorption by
pinecone derived activated carbon, Iran. J. Environ. Health Sci.
Eng., 6 (2009) 285–294.
- G. Annadurai, R.S. Juang, D.J. Lee, Use of cellulose-based
wastes for adsorption of dyes from aqueous solutions, J.
Hazard. Mater., 92 (2002) 263–274.
- Z.M. Ni, S.J. Xia, L.G. Wang, F.F. Xing, G.X. Pan, Treatment
of methyl orange by calcined layered double hydroxides in
aqueous solution: adsorption property and kinetic studies, J.
Colloid Interface Sci., 316 (2007) 284–291.
- J.H. Huang, K.L Huang, S.Q. Liu, A.T. Wang, C. Yan, Adsorption of
Rhodamine B and methyl orange on a hypercrosslinked polymeric
adsorbent in aqueous solution, Colloid. Surf., A, 330 (2008) 55–61.
- M. Kucukosmanoglu, O. Gezici, A. Ayar, The adsorption
behaviors of methylene blue and methyl orange in a
diaminoethane sporopollenin-mediated column system, Sep.
Purif. Technol., 52 (2006) 280–287.
- Y. Iida, T. Kozuka, T. Tuziuti, K. Yasui, Sonochemically enhanced
adsorption and degradation of methyl orange with activated
aluminas, Ultrasonics, 42 (2004) 635–639.
- A. Mittal, A. Malviya, D. Kaur, J. Mittal, L. Kurup, Studies on the
adsorption kinetics and isotherms for the removal and recovery
of methyl orange from waste waters using waste materials, J.
Hazard. Mater., 148 (2007) 229–240.
- M.J. Temkin, V. Pyzhev, Recent modifications to Langmuir
isotherms, Acta Phys. Chim. Sin., 12 (1940) 217–222.
- R. Coşkun, C. Soykan, M. Saçak, Removal of some heavy metal
ions from aqueous solution by adsorption using poly(ethylene
terephthalate)-g-itaconic acid/acrylamide fiber, React. Funct.
Polym., 66 (2006) 599–608.
- A. Ramesh, H. Hasegawa, T. Maki, K. Ueda, Adsorption of
inorganic and organic arsenic from aqueous solutions by
polymeric Al/Fe modified montmorillonite, Sep. Purif. Technol.,
56 (2007) 90–100.