195
Views
9
CrossRef citations to date
0
Altmetric
Original Articles

Stereographic and energetic studies of acid blue 9 adsorption onto Spirulina platensis (strain LEB-52) based on statistical physics approach

, , , &

References

  • Azaroual, M., Pettenati, M., Ollivier, P., Besnard, K., Casanova, J., and Rampnoux, N. (2013). Reactive transfer of pollutants through the unsaturated soil zone during an artificial aquifer recharge process, Procedia Earth Planetary Sci., 7, 40–43.
  • Andrade, F. I., Guedes, M. I. F., sVieira, I. G. P., Mende, F. N. P., and Rodrigues, P. A. S. (2014). Determination of synthetic food dyes in commercial soft drinks by TLC and ion–pair HPLC, Food Chem., 157, 193–198.
  • Ali, I., Aboul-Enein, H. Y., and Gupta, V. K. (2009). Nano Chromatography and Capillary Electrophoresis: Pharmaceutical and Environmental Analyses. Wiley & Sons, Hoboken, NJ.
  • Ali, I., Al-Othman, Z. A., and Alwarthan, A. (2016). Green synthesis of functionalized iron nano particles and molecular liquid phase adsorption of ametryn from water, J. Mol. Liq., 221, 1168–1174.
  • Ali, I., Al-Othman, Z. A., Alwarthan, A., Asim, M., and Khan, T. A. (2014). Removal of arsenic species from water by batch and column operations on bagasse fly ash, Environ. Sci. Pollut. Res. Int. Int., 21, 3218–3229.
  • Ali, I. (2018). Microwave assisted economic synthesis of multi walled carbon nanotubes for arsenic species removal in water: batch and column operations, J. Mol. Liq., 271, 677–685.
  • Alharbi, O. M. L., Basheer, A. A., Khattab, R. A., and Ali, I. (2018). Health and environmental effects of persistent organic pollutants, J. Mol. Liq., 263, 442–453.
  • Ali, I., Khan, T. A., and Asim, M. (2011). Removal of arsenic from water by electrocoagulation and electrodialysis techniques, Sep. Purif. Rev., 40, 25–42.
  • Ali, I., Alothman, Z. A., and Alwarthan, A. (2017). Uptake of propranolol on ionic liquid iron nanocomposite adsorbent: Kinetic, thermodynamics and mechanism of adsorption, J. Mol. Liq., 236, 205–213.
  • Azha, S. F., Sellaoui, L., Shamsudin, M. S., Ismail, S., Bonilla-Petriciolet, A., Ben Lamine, A., and Erto, A. (2018). Synthesis and characterization of a novel amphoteric adsorbent coating for anionic and cationic dyes adsorption: Experimental investigation and statistical physics modelling, Chem. Eng. J, 351, 221–229.
  • Ben Lamine, A., and Bouazra, Y. (1997). Application of statistical thermodynamics to the olfaction mechanism, Chem. Senses, 22, 67–75.
  • Ben Torkia, Y., Dotto, G. L., and Ben Lamine, A. (2018). Statistical physics modeling of synthetic dyes adsorption onto spirulina platensis nanoparticles, Environ. Sci. Pollut. Res., 25, 28973–28984.
  • Ben Torkia, Y., Ben Yahia, M., Khalfaoui, M., Al–Muhtaseb, S. A., and Ben Lamine, A. (2014a). Energetic investigation of the adsorption process of CH4, C2H6 and N2 on activated carbon: Numerical and statistical physics treatment, Phys. B: Condensed Matter, 433, 55–61.
  • Ben Torkia, Y., Bouaziz, N., Al–Muhtaseb, S. A., and Ben Lamine, A. (2014b). Adsorption energy and pore–size distributions of activated carbons calculated using hill’s model, Adsorp. Sci. Technol., 32, 571–590.
  • Bouzid, M., Ben Torkia, Y., Wjihi, S., and Ben Lamine, A. (2017). Kinetic adsorption modeling of ethanol molecules onto three types of activated carbons: Microscopic interpretation of adsorption and diffusion parameters, J. Mol. Liq., 242, 98–108.
  • Cerofolini, G. F. (1974). Localized adsorption on heterogeneous surfaces, Thin Solid Films, 23, 129–152.
  • Dotto, G. L., Esquerdo, V. M., Vieira, M. L. G., and Pinto, L. A. A. (2012). Optimization and kinetic analysis of food dyes biosorption by spirulina platensis, Colloids Surf. B: Biointerf., 91, 234–241.
  • Dotto, G. L., Cadaval, T. R. S., and Pinto, L. A. A. (2012). Use of spirulina platensis micro and nanoparticles for the removal synthetic dyes from aqueous solutions by biosorption, Proc. Biochem., 47, 1335–1343.
  • Dotto, G. L., and Pinto, L. A. A. (2012). Analysis of mass transfer kinetics in the biosorption of synthetic dyes onto spirulina platensis nanoparticles, Biochemi. Eng. J., 68, 85–90.
  • Gupta, V. K., and Suhas, I. (2009). Application of low-cost adsorbents for dye removal: A review, J. Environ. Manage., 90, 2313–2342.
  • Gupta, V. K., and Ali, I. (2012). Environmental Water: Advances in Treatment, Remediation and Recycling. Elsevier, Amsterdam, The Netherlands.
  • Hills, A. G. (1973). pH and the Henderson–Hasselbalch equation, Am. J. Med., 55, 131–133.
  • Hessel, C., Allegre, C., Maisseu, M., Charbit, F., and Moulin, P. (2007). Guidelines and legislation for dye house effluents, J. Environ. Manage., 83, 171–180.
  • Hou, Q., Lu, X., Liu, X., Hu, B., Yuan, J., and Shen, J. (2004). Variation in surface energy heterogeneity of graphite due to adsorption of polyoxyethylene sorbitan monooleate, J. Colloid Interf. Sci., 280, 98–101.
  • Hanif, M. A., and Bhatti, H. N. (2015). Remediation of heavymetalsusing easily cultivable, fast growing, and highly accumulating white rot fungi from hazardous aqueous streams, Desalin, Water Treat, 53, 238–248.
  • Kayalvizhi, K., Vijayaraghavan, K., and Velan, M. (2015). Biosorption of Cr(VI) using a novel microalga rhizoclonium hookeri: equilibrium, kinetics and thermodynamic studies, Desalin. Water Treat, 56, 194–203.
  • Knani, S., Mathlouthi, M., and Ben Lamine, A. (2007). Modeling of the psychophysical response curves using the grand canonical ensemble in statistical physics, Food Biophysics, 2, 183–192.
  • Knani, S., Aouaini, F., Bahloul, N., Khalfaoui, M., Hachicha, M. A., Ben Lamine, A., and Kechaou, N. (2014). Modeling of adsorption isotherms of water vapor on Tunisian olive leaves using statistical mechanical formulation, Physica A, 400, 57–70.
  • Kumar, K. V., de Castro, M. M., Escandell, M. M., Sabio, M. M., and Reinoso, F. R. (2011). A site energy distribution function from Ttoth isotherm for adsorption of gases on heterogeneous surfaces, Phys. Chem. Chem. Phys., 13, 5753–5759.
  • Luo, S., Li, X., Chen, L., Chen, J., Wan, Y., and Liu, C. (2014). Layer–by–layer strategy for adsorption capacity fattening of endophytic bacterial biomass for highly effective removal of heavy metals, Chem. Eng. J., 239, 312–321.
  • Mondal, S. (2008). Methods of dye removal from dye house effluent: an overview, Environ. Eng. Sci. 25, 383–396.
  • Mohammadi, N., Khani, H., Gupta, V. K., Amereh, E., and Agarwal, S. (2011). Adsorption process of methyl orange dye onto mesoporous carbon material–kinetic and thermodynamic studies, J. colloid Interf. Sci., 362, 457–462.
  • Mahmoud, D. K., Salleh, M. A. M., Karim, W. A. W. A., Idris, A., and Abidin, Z. Z. (2012). Batch adsorption of basic dye using acid treated kenaf fibre char: Equilibrium, kinetic and thermodynamic studies, Chem. Eng. J., 181, 449–457.
  • Russell, B. P., and Levan, M. D. (1994). Pore size distribution of BPL activated carbon determined by different methods, Carbon, 32, 845–885.
  • Saleh, T. A., and Gupta, V. K. (2014). Processing methods: characteristics and adsorption behavior of tire derived carbons: a review, Adv. Colloid Interf. Sci., 211, 93–101.
  • Saravanan, R., Khan, M. M., Gupta, V. K., Mosquera, E., Gracia, F., Narayanan, V., and Stephen, A. (2012). ZnO/Ag/Mn2O3 nanocomposite for visible light–induced industrial textile effluent degradation, uric acid and ascorbic acid sensing and antimicrobial activities, RSC Adv., 5, 34645–34651.
  • Sellaoui, L., Guedidi, H., Masson, S., Reinert, L., Levêque, J.-M., Knani, S., Lamine, A. B., Khalfaoui, M., and Duclaux, L. (2016). Steric and energetic interpretations of the equilibrium adsorption of two new pyridinium ionic liquids and ibuprofen on a microporous activated carbon cloth: Statistical and COSMO–RS models, Fluid Phase Equil., 414, 156–163.
  • Sellaoui, L., Dotto, G. L., Ben Lamine, A., and Erto, A. (2017). Interpretation of single and competitive adsorption of cadmium and zinc on activated carbon using monolayer and exclusive extended monolayer models, Environ. Sci. Pollut. Res., 24, 19902–19908.
  • Vocciante, M., Trofa, M., Rodríguez-Estupiñán, P., Giraldo, L., D'Auria, T., Moreno-Piraján, J. C., and Erto, A. (2014). A rigorous procedure for the design of adsorption units for the removal of cadmium and nickel from process wastewaters, J. Cleaner Prod., 77, 35–46.
  • Verma, A. K., Dash, R. R., and Bhunia, P. A. (2012). A review on chemical coagulation/flocculation technologies for removal of colour from textile wastewaters, J. Environ. Manag., 93, 154–168.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.