Research Article
BibTex RIS Cite

EXPLORING MIL-53 (Al) ADSORPTION EFFICIENCY FOR INDIGO CARMINE DYE

Year 2024, Volume: 12 Issue: 2, 419 - 431, 01.06.2024
https://doi.org/10.36306/konjes.1414113

Abstract

Synthetic dyes are extensively used in industrial areas, including plastic, textile, and food. However, they are a major environmental problem due to their negative effects on water quality and living organisms. To address one of these problems, MIL-53 (Al) is served as an adsorbent for removing indigo carmine dye, being widely used in textile industries. The synthesis of MIL-53 (Al) was carried through the hydrothermal method and different synthesis conditions were studied to find the best adsorbent to remove indigo carmine. FTIR, XRD, SEM, and EDS were used to assess materials. Isotherm models and kinetic models were investigated for indigo carmine adsorption, revealing that the Langmuir isotherm model and pseudo-second-order kinetic model provided best fit to data. The highest adsorption capacity was calculated as 145 mg/g. The study contributes valuable insights into the adsorption of indigo carmine by MIL-53 (Al).

References

  • K. Sharma, A. K. Dalai, and R. K. Vyas, "Removal of synthetic dyes from multicomponent industrial wastewaters," Reviews in Chemical Engineering, vol. 34, no. 1, pp. 107-134, 2017.
  • L. Jiao, J. Y. R. Seow, W. S. Skinner, Z. U. Wang, and H.-L. Jiang, "Metal–organic frameworks: Structures and functional applications," Materials Today, vol. 27, pp. 43-68, 2019.
  • M. Ding, R. W. Flaig, H.-L. Jiang, and O. M. Yaghi, "Carbon capture and conversion using metal–organic frameworks and MOF-based materials," Chemical Society Reviews, vol. 48, no. 10, pp. 2783-2828, 2019.
  • P. Kumar, K. Vellingiri, K.-H. Kim, R. J. Brown, and M. J. Manos, "Modern progress in metal-organic frameworks and their composites for diverse applications," Microporous and Mesoporous Materials, vol. 253, pp. 251-265, 2017.
  • Z. Harrache, M. Abbas, T. Aksil, and M. Trari, "Thermodynamic and kinetics studies on adsorption of Indigo Carmine from aqueous solution by activated carbon," Microchemical Journal, vol. 144, pp. 180-189, 2019.
  • M. El-Kammah, E. Elkhatib, S. Gouveia, C. Cameselle, and E. Aboukila, "Cost-effective ecofriendly nanoparticles for rapid and efficient indigo carmine dye removal from wastewater: Adsorption equilibrium, kinetics and mechanism," Environmental Technology & Innovation, vol. 28, p. 102595, 2022.
  • N. AbouSeada, M. Ahmed, and M. G. Elmahgary, "Synthesis and characterization of novel magnetic nanoparticles for photocatalytic degradation of indigo carmine dye," Materials Science for Energy Technologies, vol. 5, pp. 116-124, 2022.
  • M. Oliveira, L. F. Garcia, A. Siqueira, V. Somerset, and E. Gil, "Electrocoagulation of the indigo carmine dye using electrodes produced from the compression of metallurgical filing wastes," International Journal of Environmental Science and Technology, vol. 17, pp. 1657-1662, 2020.
  • S. Gopi, P. Balakrishnan, A. Pius, and S. Thomas, "Chitin nanowhisker (ChNW)-functionalized electrospun PVDF membrane for enhanced removal of Indigo carmine," Carbohydrate polymers, vol. 165, pp. 115-122, 2017.
  • M. El-Kammah, E. Elkhatib, S. Gouveia, C. Cameselle, and E. Aboukila, "Enhanced removal of Indigo Carmine dye from textile effluent using green cost-efficient nanomaterial: Adsorption, kinetics, thermodynamics and mechanisms," Sustainable Chemistry and Pharmacy, vol. 29, p. 100753, 2022.
  • T. Gupta et al., "Adsorption of Indigo Carmine Dye by Acacia nilotica sawdust activated carbon in fixed bed column," Scientific Reports, vol. 12, no. 1, p. 15522, 2022.
  • R. Rashid, I. Shafiq, P. Akhter, M. J. Iqbal, and M. Hussain, "A state-of-the-art review on wastewater treatment techniques: the effectiveness of adsorption method," Environmental Science and Pollution Research, vol. 28, pp. 9050-9066, 2021.
  • L. Xie, K.-Y. Chan, and V. C.-Y. Li, "Molecular dynamics simulation of hydration and free energy of ions in nanochannels of polyelectrolyte threaded metal organic framework and the impacts on selective ion transport," Journal of Molecular Liquids, vol. 367, p. 120553, 2022.
  • Y. Gao, R. Kang, J. Xia, G. Yu, and S. Deng, "Understanding the adsorption of sulfonamide antibiotics on MIL-53s: Metal dependence of breathing effect and adsorptive performance in aqueous solution," Journal of colloid and interface science, vol. 535, pp. 159-168, 2019.
  • M. Al Sharabati and R. Sabouni, "Selective removal of dual dyes from aqueous solutions using a metal organic framework (MIL-53 (Al))," Polyhedron, vol. 190, p. 114762, 2020.
  • X. Ma et al., "Fabrication of stable MIL-53 (Al) for excellent removal of rhodamine B," Langmuir, vol. 38, no. 3, pp. 1158-1169, 2022.
  • X.-D. Du et al., "Extensive and selective adsorption of ZIF-67 towards organic dyes: Performance and mechanism," Journal of Colloid and Interface Science, vol. 506, pp. 437-441, 2017.
  • X. Cheng et al., "Size-and morphology-controlled NH 2-MIL-53 (Al) prepared in DMF–water mixed solvents," Dalton Transactions, vol. 42, no. 37, pp. 13698-13705, 2013.
  • L. Silvester et al., "Fine tuning of the physico-chemical properties of a MIL-53 (Al) type-Mesoporous alumina composite using a facile sacrificial-template synthesis approach," Microporous and Mesoporous Materials, vol. 306, p. 110443, 2020.
  • M. S. Rostami and M. M. Khodaei, "Effect of incorporated hybrid MIL-53 (Al) and MWCNT into PES membrane for CO2/CH4 and CO2/N2 separation," Fuel, vol. 356, p. 129598, 2024.
  • C. Li, Z. Xiong, J. Zhang, and C. Wu, "The strengthening role of the amino group in metal–organic framework MIL-53 (Al) for methylene blue and malachite green dye adsorption," Journal of Chemical & Engineering Data, vol. 60, no. 11, pp. 3414-3422, 2015.
  • F. Ahmadijokani, S. Ahmadipouya, H. Molavi, and M. Arjmand, "Amino-silane-grafted NH 2-MIL-53 (Al)/polyethersulfone mixed matrix membranes for CO 2/CH 4 separation," Dalton Transactions, vol. 48, no. 36, pp. 13555-13566, 2019.
  • W. W. Lestari et al., "Fabrication of hybrid membranes based on poly (ether-sulfone)/Materials Institute Lavoisier (MIL-53)(Al) and its enhanced CO2 gas separation performance," Chemical Papers, vol. 75, no. 12, pp. 6519-6530, 2021.
  • G. Guzel Kaya, E. Yilmaz, and H. Deveci, "A novel silica xerogel synthesized from volcanic tuff as an adsorbent for high‐efficient removal of methylene blue: parameter optimization using Taguchi experimental design," Journal of Chemical Technology & Biotechnology, vol. 94, no. 8, pp. 2729-2737, 2019.
  • D. Yanardag, G. G. Kaya, and S. Edebali, "Ciprofloxacin adsorption performance of Co‐doped UiO‐66," Applied Organometallic Chemistry, p. e7311, 2023.
  • A. Stavrinou, C. Aggelopoulos, and C. Tsakiroglou, "Exploring the adsorption mechanisms of cationic and anionic dyes onto agricultural waste peels of banana, cucumber and potato: Adsorption kinetics and equilibrium isotherms as a tool," Journal of environmental chemical engineering, vol. 6, no. 6, pp. 6958-6970, 2018.
  • F. Çengel and F. Temel, "p-NİTRO FENOLÜN KALİKSAREN TEMELLİ GRAFEN OKSİT İLE SULU ÇÖZELTİLERDEN UZAKLAŞTIRILMASI," Konya Journal of Engineering Sciences, vol. 9, pp. 79-90, 2021.
  • P. S. Kumar, S. Ramalingam, S. D. Kirupha, A. Murugesan, T. Vidhyadevi, and S. Sivanesan, "Adsorption behavior of nickel (II) onto cashew nut shell: Equilibrium, thermodynamics, kinetics, mechanism and process design," Chemical Engineering Journal, vol. 167, no. 1, pp. 122-131, 2011.
  • S. Korde, S. Deshmukh, S. Tandekar, and R. Jugade, "Implementation of response surface methodology in physi-chemisorption of Indigo carmine dye using modified chitosan composite," Carbohydrate Polymer Technologies and Applications, vol. 2, p. 100081, 2021.
  • R. S. Salama, E.-S. M. El-Sayed, S. M. El-Bahy, and F. S. Awad, "Silver nanoparticles supported on UiO-66 (Zr): as an efficient and recyclable heterogeneous catalyst and efficient adsorbent for removal of Indigo Carmine," Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 626, p. 127089, 2021.
  • J. Zhang, P. Zhang, S. Zhang, and Q. Zhou, "Comparative study on the adsorption of tartrazine and indigo carmine onto maize cob carbon," Separation Science and Technology, vol. 49, no. 6, pp. 877-886, 2014.
  • R. M. Ferreira, N. M. de Oliveira, L. L. Lima, A. L. D. Campista, and D. M. Stapelfeldt, "Adsorption of indigo carmine on Pistia stratiotes dry biomass chemically modified," Environmental Science and Pollution Research, vol. 26, pp. 28614-28621, 2019.
  • R. Zein, L. Hevira, Zilfa, Rahmayeni, S. Fauzia, and J. O. Ighalo, "The improvement of indigo carmine dye adsorption by Terminalia catappa shell modified with broiler egg white," Biomass Conversion and Biorefinery, vol. 13, no. 15, pp. 13795-13812, 2023.
  • O. Pezoti et al., "NaOH-activated carbon of high surface area produced from guava seeds as a high-efficiency adsorbent for amoxicillin removal: Kinetic, isotherm and thermodynamic studies," Chemical Engineering Journal, vol. 288, pp. 778-788, 2016.
Year 2024, Volume: 12 Issue: 2, 419 - 431, 01.06.2024
https://doi.org/10.36306/konjes.1414113

Abstract

References

  • K. Sharma, A. K. Dalai, and R. K. Vyas, "Removal of synthetic dyes from multicomponent industrial wastewaters," Reviews in Chemical Engineering, vol. 34, no. 1, pp. 107-134, 2017.
  • L. Jiao, J. Y. R. Seow, W. S. Skinner, Z. U. Wang, and H.-L. Jiang, "Metal–organic frameworks: Structures and functional applications," Materials Today, vol. 27, pp. 43-68, 2019.
  • M. Ding, R. W. Flaig, H.-L. Jiang, and O. M. Yaghi, "Carbon capture and conversion using metal–organic frameworks and MOF-based materials," Chemical Society Reviews, vol. 48, no. 10, pp. 2783-2828, 2019.
  • P. Kumar, K. Vellingiri, K.-H. Kim, R. J. Brown, and M. J. Manos, "Modern progress in metal-organic frameworks and their composites for diverse applications," Microporous and Mesoporous Materials, vol. 253, pp. 251-265, 2017.
  • Z. Harrache, M. Abbas, T. Aksil, and M. Trari, "Thermodynamic and kinetics studies on adsorption of Indigo Carmine from aqueous solution by activated carbon," Microchemical Journal, vol. 144, pp. 180-189, 2019.
  • M. El-Kammah, E. Elkhatib, S. Gouveia, C. Cameselle, and E. Aboukila, "Cost-effective ecofriendly nanoparticles for rapid and efficient indigo carmine dye removal from wastewater: Adsorption equilibrium, kinetics and mechanism," Environmental Technology & Innovation, vol. 28, p. 102595, 2022.
  • N. AbouSeada, M. Ahmed, and M. G. Elmahgary, "Synthesis and characterization of novel magnetic nanoparticles for photocatalytic degradation of indigo carmine dye," Materials Science for Energy Technologies, vol. 5, pp. 116-124, 2022.
  • M. Oliveira, L. F. Garcia, A. Siqueira, V. Somerset, and E. Gil, "Electrocoagulation of the indigo carmine dye using electrodes produced from the compression of metallurgical filing wastes," International Journal of Environmental Science and Technology, vol. 17, pp. 1657-1662, 2020.
  • S. Gopi, P. Balakrishnan, A. Pius, and S. Thomas, "Chitin nanowhisker (ChNW)-functionalized electrospun PVDF membrane for enhanced removal of Indigo carmine," Carbohydrate polymers, vol. 165, pp. 115-122, 2017.
  • M. El-Kammah, E. Elkhatib, S. Gouveia, C. Cameselle, and E. Aboukila, "Enhanced removal of Indigo Carmine dye from textile effluent using green cost-efficient nanomaterial: Adsorption, kinetics, thermodynamics and mechanisms," Sustainable Chemistry and Pharmacy, vol. 29, p. 100753, 2022.
  • T. Gupta et al., "Adsorption of Indigo Carmine Dye by Acacia nilotica sawdust activated carbon in fixed bed column," Scientific Reports, vol. 12, no. 1, p. 15522, 2022.
  • R. Rashid, I. Shafiq, P. Akhter, M. J. Iqbal, and M. Hussain, "A state-of-the-art review on wastewater treatment techniques: the effectiveness of adsorption method," Environmental Science and Pollution Research, vol. 28, pp. 9050-9066, 2021.
  • L. Xie, K.-Y. Chan, and V. C.-Y. Li, "Molecular dynamics simulation of hydration and free energy of ions in nanochannels of polyelectrolyte threaded metal organic framework and the impacts on selective ion transport," Journal of Molecular Liquids, vol. 367, p. 120553, 2022.
  • Y. Gao, R. Kang, J. Xia, G. Yu, and S. Deng, "Understanding the adsorption of sulfonamide antibiotics on MIL-53s: Metal dependence of breathing effect and adsorptive performance in aqueous solution," Journal of colloid and interface science, vol. 535, pp. 159-168, 2019.
  • M. Al Sharabati and R. Sabouni, "Selective removal of dual dyes from aqueous solutions using a metal organic framework (MIL-53 (Al))," Polyhedron, vol. 190, p. 114762, 2020.
  • X. Ma et al., "Fabrication of stable MIL-53 (Al) for excellent removal of rhodamine B," Langmuir, vol. 38, no. 3, pp. 1158-1169, 2022.
  • X.-D. Du et al., "Extensive and selective adsorption of ZIF-67 towards organic dyes: Performance and mechanism," Journal of Colloid and Interface Science, vol. 506, pp. 437-441, 2017.
  • X. Cheng et al., "Size-and morphology-controlled NH 2-MIL-53 (Al) prepared in DMF–water mixed solvents," Dalton Transactions, vol. 42, no. 37, pp. 13698-13705, 2013.
  • L. Silvester et al., "Fine tuning of the physico-chemical properties of a MIL-53 (Al) type-Mesoporous alumina composite using a facile sacrificial-template synthesis approach," Microporous and Mesoporous Materials, vol. 306, p. 110443, 2020.
  • M. S. Rostami and M. M. Khodaei, "Effect of incorporated hybrid MIL-53 (Al) and MWCNT into PES membrane for CO2/CH4 and CO2/N2 separation," Fuel, vol. 356, p. 129598, 2024.
  • C. Li, Z. Xiong, J. Zhang, and C. Wu, "The strengthening role of the amino group in metal–organic framework MIL-53 (Al) for methylene blue and malachite green dye adsorption," Journal of Chemical & Engineering Data, vol. 60, no. 11, pp. 3414-3422, 2015.
  • F. Ahmadijokani, S. Ahmadipouya, H. Molavi, and M. Arjmand, "Amino-silane-grafted NH 2-MIL-53 (Al)/polyethersulfone mixed matrix membranes for CO 2/CH 4 separation," Dalton Transactions, vol. 48, no. 36, pp. 13555-13566, 2019.
  • W. W. Lestari et al., "Fabrication of hybrid membranes based on poly (ether-sulfone)/Materials Institute Lavoisier (MIL-53)(Al) and its enhanced CO2 gas separation performance," Chemical Papers, vol. 75, no. 12, pp. 6519-6530, 2021.
  • G. Guzel Kaya, E. Yilmaz, and H. Deveci, "A novel silica xerogel synthesized from volcanic tuff as an adsorbent for high‐efficient removal of methylene blue: parameter optimization using Taguchi experimental design," Journal of Chemical Technology & Biotechnology, vol. 94, no. 8, pp. 2729-2737, 2019.
  • D. Yanardag, G. G. Kaya, and S. Edebali, "Ciprofloxacin adsorption performance of Co‐doped UiO‐66," Applied Organometallic Chemistry, p. e7311, 2023.
  • A. Stavrinou, C. Aggelopoulos, and C. Tsakiroglou, "Exploring the adsorption mechanisms of cationic and anionic dyes onto agricultural waste peels of banana, cucumber and potato: Adsorption kinetics and equilibrium isotherms as a tool," Journal of environmental chemical engineering, vol. 6, no. 6, pp. 6958-6970, 2018.
  • F. Çengel and F. Temel, "p-NİTRO FENOLÜN KALİKSAREN TEMELLİ GRAFEN OKSİT İLE SULU ÇÖZELTİLERDEN UZAKLAŞTIRILMASI," Konya Journal of Engineering Sciences, vol. 9, pp. 79-90, 2021.
  • P. S. Kumar, S. Ramalingam, S. D. Kirupha, A. Murugesan, T. Vidhyadevi, and S. Sivanesan, "Adsorption behavior of nickel (II) onto cashew nut shell: Equilibrium, thermodynamics, kinetics, mechanism and process design," Chemical Engineering Journal, vol. 167, no. 1, pp. 122-131, 2011.
  • S. Korde, S. Deshmukh, S. Tandekar, and R. Jugade, "Implementation of response surface methodology in physi-chemisorption of Indigo carmine dye using modified chitosan composite," Carbohydrate Polymer Technologies and Applications, vol. 2, p. 100081, 2021.
  • R. S. Salama, E.-S. M. El-Sayed, S. M. El-Bahy, and F. S. Awad, "Silver nanoparticles supported on UiO-66 (Zr): as an efficient and recyclable heterogeneous catalyst and efficient adsorbent for removal of Indigo Carmine," Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 626, p. 127089, 2021.
  • J. Zhang, P. Zhang, S. Zhang, and Q. Zhou, "Comparative study on the adsorption of tartrazine and indigo carmine onto maize cob carbon," Separation Science and Technology, vol. 49, no. 6, pp. 877-886, 2014.
  • R. M. Ferreira, N. M. de Oliveira, L. L. Lima, A. L. D. Campista, and D. M. Stapelfeldt, "Adsorption of indigo carmine on Pistia stratiotes dry biomass chemically modified," Environmental Science and Pollution Research, vol. 26, pp. 28614-28621, 2019.
  • R. Zein, L. Hevira, Zilfa, Rahmayeni, S. Fauzia, and J. O. Ighalo, "The improvement of indigo carmine dye adsorption by Terminalia catappa shell modified with broiler egg white," Biomass Conversion and Biorefinery, vol. 13, no. 15, pp. 13795-13812, 2023.
  • O. Pezoti et al., "NaOH-activated carbon of high surface area produced from guava seeds as a high-efficiency adsorbent for amoxicillin removal: Kinetic, isotherm and thermodynamic studies," Chemical Engineering Journal, vol. 288, pp. 778-788, 2016.
There are 34 citations in total.

Details

Primary Language English
Subjects Wastewater Treatment Processes, Materials Science and Technologies
Journal Section Research Article
Authors

Duygu Yanardağ Kola 0000-0003-1396-3925

Serpil Edebalı 0000-0002-2098-580X

Publication Date June 1, 2024
Submission Date January 3, 2024
Acceptance Date March 18, 2024
Published in Issue Year 2024 Volume: 12 Issue: 2

Cite

IEEE D. Yanardağ Kola and S. Edebalı, “EXPLORING MIL-53 (Al) ADSORPTION EFFICIENCY FOR INDIGO CARMINE DYE”, KONJES, vol. 12, no. 2, pp. 419–431, 2024, doi: 10.36306/konjes.1414113.