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Year 2021, Volume: 16 Issue: 3, 123 - 132, 30.09.2021

Abstract

References

  • Aksu A, Murathan A, Koçyiğit H, (2011) Adsorption of Reactive Blue 221 on Pumice Stone and Kinetic Study. Journal of the Faculty of Engineering and Architecture of Gazi University,26(4), 807-12.
  • Bilgin A, Hasdemir E, Murathan A, (2014) Investigation of Adsorption Parameters Effects for Removal of Cyanide In Water By Using Clinoptilolite. Fresenius Environmental Bulletin 23, (12a), 3222-3226.
  • Bozkan H, (2012) Removal of Azo Dyes by Adsorption Method Using Olive Waste (Pirina), M.Sc. Thesis, Selcuk University Institute of Science and Technology, Environmental Engineering Department, Konya, Turkey, 1-56.
  • Ding L, Zou B, Gao W, Liu Q, Wang Z, Guo Y, Wang X, Liu Y, (2014). Adsorption of Rhodamine-B from aqueous solution using treated rice husk-based activatd carbon, Colloids and Surfaces A: Physicochem. Eng.Aspects, 446, 1-7.
  • Haddad ME, Mamouni R, Saffaj N, and Lazar S, (2012) Adsorptive Removal of Basic Dye Rhodamine B from Aquoeus Media onto Animal Bone Meal as New Low Cost Adsorbent. Global Journal of Human Social Science, Geography & Environmental GeoSciences, 12, Issue 10.
  • Jain R, Mathur M, Sikarwar S, Mittal A, (2007) Removal of The Hazardous Dye Rhodamine B Through Photocatalytic and Adsorption Treatments. J Environ Manage., 85(4), 956-64.
  • Khan TA, Sharma S, Ali I, (2011) Adsorption of Rhodamine B Dye from Aqueous Solution onto Acid Activated Mango (Magnifera Indica) Leaf Powder: Equilibrium, Kinetic and Thermodynamic Studies. Journal of Toxicology and Environmental Health Sciences, 3(10), 286-297.
  • Lacerda VS, Lopez-Sotelo JB, Correa-Guimaraes A, Hernandez-Navarro S, Sanchez-Bascones M, Navas-Gracia LM, Martin-Ramos P, and Martin-Gil J, (2015) Rhodamine B Removal With Activated Carbons Obtained From Lignocellulosic Waste. Journal of Environmental Management, 155, 67-76.
  • Motahari F, Mozdianfard MR, Salavati-Niasari M, (2015) Synthesis and Adsorption Studies of Nio Nanoparticles In The Presence of H2 Acacen Ligand for Removing Rhodamine B In Waste Water Treatment. Process Safety and Environmental Protection, 93, 282-292.
  • Murathan Selek A, Bütün M, (2006) Removal of lead ions from dilute aqueous solution in packed column by using natural fruit shells through adsorption. Fresen. Env. Bull., 15, (12A): 1491-1498.
  • Orman F., Murathan H., Murathan A, (2015) Low Cost Removal of Reactive Dye From Water Using Sepiolite. Fresen Environ Bull, 24, (9),1-8.
  • Santhi T, Prasad AL, Manonmani S, (2014) A Comparative Study of Microwave and Chemically Treaed Acacia Nilotica Leaf as An Ecofriendly Adsorbent For The Removal of Rhodamine B Dye From Aqueous Solution. Arabian Journal of Chemistry, 7, Issue 4, 494-503.
  • Tasmakıran AF, (2010). Preparation of New Adsorbents by Modifying Agricultural By-Products and Adsorption of Dyes. M.Sc. Thesis, Department of Chemical Engineering, Graduate School of Natural and Applied Sciences, Selçuk University, Konya, Turkey, 1-74.
  • Thakur A, Kaur H, (2016) Removal of Hazardous Rhodamine B Dye by Using Chemically Activated Low Cost Adsorbent: Pine Cone Charcoal. International Journal of Chemical and Physical Sciences, 5(4), 17-28.
  • Vijayakumar G, Tamilarasan R, Dharmendirakumar M, (2012) Adsorption, Kinetic, Equilibrium And Thermodynamic Studies on The Removal of Basic Dye Rhodamine-B From Aqueous Solution by The Use of Natural Adsorbent Perlite. J. Mater. Environ. Sci., 3 (1) , 157-170.
  • Zamouche M, Arris S, LeHocine MB, (2014) Removal of Rhodamine B from Water by Cedar Cone: Effect of Calcinations and Chemical Activation. International Journal of Hydrogen Energy, 39(3), 1523–1531.
  • Zamouche M, Hamdaoui O, (2012a) Sorption of Rhodamine B by Cedar Cone: Effect of Ph and Ionic Strength. Energy Procedia, 18, 1228-1239. Zamouche M, Hamdaoui O, (2012b) A Use of Cedar Cone for The Removal of A Cationic Dye from Aqueous Solutions by Sorption. Energy Procedia, 18, 1047 – 1058.

REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3

Year 2021, Volume: 16 Issue: 3, 123 - 132, 30.09.2021

Abstract

In the experimental study, optimum conditions were determined for the adsorption of Rhodamine B dye, which is frequently used in the textile industry, on modified pine cone adsorbent. It was observed that the adsorption duration, solution pH, temperature and initial dye concentration affected the adsorption capacity of HNO3 activated pine cone. The maximum dye removal efficiency was found to be 97% on pine cone pretreated with HNO3 at T = 55 oC, pH = 3, Co=10-4 M dye concentration. Experimental data were applied to pseudo first order and pseudo second order kinetic models and Langmuir and Freundlich adsorption isotherms for investigating rate and kinetics of adsorption process. Kinetic analyzes demonstrated that the experimental data were highly compatible with the pseudo second order kinetic model. Besides it was seen that the equilibrium values were represented by the Langmuir isotherm equivalence for the whole process. From the calculations made as a result of thermodynamic studies, (∆Ho) and (∆So) were found to be positive, while (∆Go) was found to be negative. As a result, in this study, the applicability of pine cones, which is a cheap and natural material that can be used in the removal of dyestuffs from aqueous media, has been demonstrated.

References

  • Aksu A, Murathan A, Koçyiğit H, (2011) Adsorption of Reactive Blue 221 on Pumice Stone and Kinetic Study. Journal of the Faculty of Engineering and Architecture of Gazi University,26(4), 807-12.
  • Bilgin A, Hasdemir E, Murathan A, (2014) Investigation of Adsorption Parameters Effects for Removal of Cyanide In Water By Using Clinoptilolite. Fresenius Environmental Bulletin 23, (12a), 3222-3226.
  • Bozkan H, (2012) Removal of Azo Dyes by Adsorption Method Using Olive Waste (Pirina), M.Sc. Thesis, Selcuk University Institute of Science and Technology, Environmental Engineering Department, Konya, Turkey, 1-56.
  • Ding L, Zou B, Gao W, Liu Q, Wang Z, Guo Y, Wang X, Liu Y, (2014). Adsorption of Rhodamine-B from aqueous solution using treated rice husk-based activatd carbon, Colloids and Surfaces A: Physicochem. Eng.Aspects, 446, 1-7.
  • Haddad ME, Mamouni R, Saffaj N, and Lazar S, (2012) Adsorptive Removal of Basic Dye Rhodamine B from Aquoeus Media onto Animal Bone Meal as New Low Cost Adsorbent. Global Journal of Human Social Science, Geography & Environmental GeoSciences, 12, Issue 10.
  • Jain R, Mathur M, Sikarwar S, Mittal A, (2007) Removal of The Hazardous Dye Rhodamine B Through Photocatalytic and Adsorption Treatments. J Environ Manage., 85(4), 956-64.
  • Khan TA, Sharma S, Ali I, (2011) Adsorption of Rhodamine B Dye from Aqueous Solution onto Acid Activated Mango (Magnifera Indica) Leaf Powder: Equilibrium, Kinetic and Thermodynamic Studies. Journal of Toxicology and Environmental Health Sciences, 3(10), 286-297.
  • Lacerda VS, Lopez-Sotelo JB, Correa-Guimaraes A, Hernandez-Navarro S, Sanchez-Bascones M, Navas-Gracia LM, Martin-Ramos P, and Martin-Gil J, (2015) Rhodamine B Removal With Activated Carbons Obtained From Lignocellulosic Waste. Journal of Environmental Management, 155, 67-76.
  • Motahari F, Mozdianfard MR, Salavati-Niasari M, (2015) Synthesis and Adsorption Studies of Nio Nanoparticles In The Presence of H2 Acacen Ligand for Removing Rhodamine B In Waste Water Treatment. Process Safety and Environmental Protection, 93, 282-292.
  • Murathan Selek A, Bütün M, (2006) Removal of lead ions from dilute aqueous solution in packed column by using natural fruit shells through adsorption. Fresen. Env. Bull., 15, (12A): 1491-1498.
  • Orman F., Murathan H., Murathan A, (2015) Low Cost Removal of Reactive Dye From Water Using Sepiolite. Fresen Environ Bull, 24, (9),1-8.
  • Santhi T, Prasad AL, Manonmani S, (2014) A Comparative Study of Microwave and Chemically Treaed Acacia Nilotica Leaf as An Ecofriendly Adsorbent For The Removal of Rhodamine B Dye From Aqueous Solution. Arabian Journal of Chemistry, 7, Issue 4, 494-503.
  • Tasmakıran AF, (2010). Preparation of New Adsorbents by Modifying Agricultural By-Products and Adsorption of Dyes. M.Sc. Thesis, Department of Chemical Engineering, Graduate School of Natural and Applied Sciences, Selçuk University, Konya, Turkey, 1-74.
  • Thakur A, Kaur H, (2016) Removal of Hazardous Rhodamine B Dye by Using Chemically Activated Low Cost Adsorbent: Pine Cone Charcoal. International Journal of Chemical and Physical Sciences, 5(4), 17-28.
  • Vijayakumar G, Tamilarasan R, Dharmendirakumar M, (2012) Adsorption, Kinetic, Equilibrium And Thermodynamic Studies on The Removal of Basic Dye Rhodamine-B From Aqueous Solution by The Use of Natural Adsorbent Perlite. J. Mater. Environ. Sci., 3 (1) , 157-170.
  • Zamouche M, Arris S, LeHocine MB, (2014) Removal of Rhodamine B from Water by Cedar Cone: Effect of Calcinations and Chemical Activation. International Journal of Hydrogen Energy, 39(3), 1523–1531.
  • Zamouche M, Hamdaoui O, (2012a) Sorption of Rhodamine B by Cedar Cone: Effect of Ph and Ionic Strength. Energy Procedia, 18, 1228-1239. Zamouche M, Hamdaoui O, (2012b) A Use of Cedar Cone for The Removal of A Cationic Dye from Aqueous Solutions by Sorption. Energy Procedia, 18, 1047 – 1058.
There are 17 citations in total.

Details

Primary Language English
Subjects Chemical Engineering
Journal Section Articles
Authors

Meryem Gören 0000-0003-4733-7113

Hatice Begüm Murathan 0000-0002-0491-098X

Nihan Kaya 0000-0001-8676-6768

Atilla M. Murathan 0000-0002-8784-3611

Publication Date September 30, 2021
Acceptance Date September 22, 2021
Published in Issue Year 2021 Volume: 16 Issue: 3

Cite

APA Gören, M., Murathan, H. B., Kaya, N., Murathan, A. M. (2021). REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3. Journal of International Environmental Application and Science, 16(3), 123-132.
AMA Gören M, Murathan HB, Kaya N, Murathan AM. REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3. J. Int. Environmental Application & Science. September 2021;16(3):123-132.
Chicago Gören, Meryem, Hatice Begüm Murathan, Nihan Kaya, and Atilla M. Murathan. “REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3”. Journal of International Environmental Application and Science 16, no. 3 (September 2021): 123-32.
EndNote Gören M, Murathan HB, Kaya N, Murathan AM (September 1, 2021) REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3. Journal of International Environmental Application and Science 16 3 123–132.
IEEE M. Gören, H. B. Murathan, N. Kaya, and A. M. Murathan, “REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3”, J. Int. Environmental Application & Science, vol. 16, no. 3, pp. 123–132, 2021.
ISNAD Gören, Meryem et al. “REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3”. Journal of International Environmental Application and Science 16/3 (September 2021), 123-132.
JAMA Gören M, Murathan HB, Kaya N, Murathan AM. REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3. J. Int. Environmental Application & Science. 2021;16:123–132.
MLA Gören, Meryem et al. “REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3”. Journal of International Environmental Application and Science, vol. 16, no. 3, 2021, pp. 123-32.
Vancouver Gören M, Murathan HB, Kaya N, Murathan AM. REMOVAL OF RHODAMINE B FROM AQUEOUS SOLUTION BY USING PINE CONE ACTIVATED WITH HNO3. J. Int. Environmental Application & Science. 2021;16(3):123-32.

“Journal of International Environmental Application and Science”