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Received October 28, 2017
Accepted February 12, 2018
- This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
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Adsorption of Congo Red dye by native amine and carboxyl modified biomass of Funalia trogii: Isotherms, kinetics and thermodynamics mechanisms
1Biochemical Processing and Biomaterial Research Laboratory, Gazi University, 06500 Ankara, Turkey 2Department of Chemistry, Faculty of Sciences, Gazi University, 06500 Ankara, Turkey 3Biochemical Processing and Biomaterial Research Laboratory, Gazi University, 06500 Ankara, Turkey, Korea
Korean Journal of Chemical Engineering, June 2018, 35(6), 1303-1311(9), 10.1007/s11814-018-0033-9
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Abstract
Native, iminodiacetic acid and triethylenetetraamine modified biomasses of Funalia trogii were used for removal of Congo Red dye (CRD) from aqueous medium. The native and modified fungal biomasses were characterized using ATR-FTIR, Zeta potential, contact angle studies and analytical methods. FTIR studies of the native and chemically modified adsorbent preparations show that amine, carboxyl and hydroxyl groups are involved in the adsorption of the model dye (i.e., Congo Red). The maximum adsorption of the CRD on the native, carboxyl and amine groups modified fungal biomasses was obtained at pH 5.0. The amount of adsorbed dye on the adsorbent samples increased as the initial concentration of CRD in the solution increased to 200mg/L. The adsorption capacities of native, carboxyl groups and amine modified fungal preparations were 90.4, 153.6 and 193.7mg/g dry adsorbents, respectively. The data was fitted well with the Langmuir isotherm model, and followed the pseudo-second-order equations. Thermodynamic parameters (ΔGo, ΔHo and ΔSo) were also calculated. The results showed that triethylenetetraamine (TETA) modified biomass of F. trogii presented an excellent dye removal performance and can be used in various environmental applications such as various micro-pollutants removal from aqueous medium.
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References
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Zhao C, Liu J, Tu H, Li F, Li X, Yang J, Liao J, Yang Y, Liu N, Sun Q, Environ. Sci. Pollut. Res., 23, 24846 (2016)
Bayramoglu G, Arica MY, Mater. Sci. Eng. C-Biomimetic Supramol. Syst., 29, 1990 (2009)
Bayramoglu G, Arica MY, J. Hazard. Mater., 143(1-2), 135 (2007)
Chaudhry MT, Zohaib M, Rauf N, Tahir SS, Parvez S, Appl. Microbiol. Biotechnol., 98(7), 3133 (2014)
Park HN, Cho CW, Choi HA, Won SW, Korean J. Chem. Eng., 34(9), 2519 (2017)
Zhu M, Tian W, Chai H, Yao J, Korean J. Chem. Eng., 34(4), 1073 (2017)
Yaneva Z, Georgieva N, J. Dispersion Sci. Technol., 35, 193 (2014)
Du J, Zhang L, Gao H, Liao Y, J. Dispersion Sci. Technol., 38, 1489 (2017)
Haroon H, Ashfaq T, Gardazi SMH, Sherazi TA, Ali M, Rashid N, Bilal M, Korean J. Chem. Eng., 33(10), 2898 (2016)
Bouras HD, Yeddoua AR, Bouras N, Hellel D, Holtz MD, Sabaoud N, Chergui A, Nadjemi B, J. Taiwan Inst. Chem. Eng., 80, 915 (2017)
Chew SY, Su A, Ting Y, Desalin. Water. Treat., 57, 13534 (2016)
Anastopoulos I, Bhatnagar A, Hamee BH, Ok YS, Omirou M, J. Mol. Liq., 240, 179 (2017)
Arica TA, Ayas E, Arica MY, Microporous Mesoporous Mater., 243, 164 (2017)
Bayramoglu G, Arica MY, Bioresour. Technol., 100(1), 186 (2009)
Kaushik P, Mishra A, Malik A, Pant KK, Water Air Soil Pollut., 225, 1978 (2014)
Bayramoglu G, Arica MY, J. Radioanal. Nucl. Chem., 307, 373 (2016)
Gimenez GG, Ruiz SP, Caetano W, Peralta RM, Matioli G, World J. Microbiol. Biotechnol., 30, 3229 (2014)
Rybczynska-Tkaczyk K, Kornittowicz-Kowalska T, Int. J. Environ. Sci. Technol., 13, 2837 (2016)
Adnan LA, Sathishkumar P, Yusoff ARM, Hadibarata T, Ameen F, Bioprocess. Biosyst. Eng., 40, 85 (2017)
Won SW, Mao J, Sankar G, Lee HC, Yun YS, Korean J. Chem. Eng., 33(3), 945 (2016)
Bayramoglu G, Celik G, Arica MY, J. Hazard. Mater., 137(3), 1689 (2006)
Marzbali MH, Mir AA, Pazoki M, Pourjamshidian R, Tabeshni M, J. Environ. Chem. Eng., 5, 1946 (2017)
Nguyen TA, Fu CC, Juang RS, Chem. Eng. J., 304, 313 (2016)
Lafi R, Fradj A, Hafiane A, Hameed BH, Korean J. Chem. Eng., 31(12), 2198 (2014)
Behnam S, Zamani A, Karimi K, Mehrabani-Zeinabad A, J. Dispersion Sci. Technol., 36, 866 (2015)
Bayramoglu G, Akbulut A, Liman G, Arica MY, Chem. Eng. Res. Des., 124, 85 (2017)
Espinosa-Ortiz EJ, Rene ER, Pakshirajan K, van Hullebusch ED, Lens PNL, Chem. Eng. J., 283, 553 (2016)
Kaushik P, Mishra A, Malik A, Pant KK, Water Air Soil Pollut., 225, 1978 (2014)
Si J, Cui BK, Yuan Y, Dai YC, Desalin. Water Treat., 57, 8454 (2016)
Din M, Bhatti HN, Yasir M, Ashraf A, Desalin. Water Treat., 57, 9263 (2016)
Franklin DS, Guhanathan S, Ecotox. Environ. Safe., 121, 80 (2015)
Lin C, Wang S, Sun H, Jiang R, J. Dispersion Sci. Technol., 39, 106 (2018)
Bayramoglu G, Gursel I, Tunali Y, Arica MY, Bioresour. Technol., 100(10), 2685 (2009)
Devi S, Murugappana A, Kannan RR, Desalin. Water Treat., 54, 2611 (2015)
Bayramoglu G, Altintas B, Arica MY, J. Chem. Technol. Biotechnol., 87(5), 705 (2012)
Arica MY, Bayramoglu G, Yilmaz M, Bektas S, Genc O, J. Hazard. Mater., 109(1-3), 191 (2004)