271
Views
3
CrossRef citations to date
0
Altmetric
Articles

Improvement of SO2 adsorption capacity of fiber web surface produced from continous graphene oxide fiber

, , , &
Pages 358-367 | Received 21 Feb 2018, Accepted 20 May 2018, Published online: 05 Jun 2018

References

  • Alptoğa, Ö. (2017). Graphene oxide fibers, production, characterization and utilization on the adsorption of sulfur dioxide (M.Sc. Thesis). Istanbul Technical University, Institute of Science and Technology, Polymer Science and Technology programme. Istanbul.
  • Alptoğa, Ö., Uçar, N., Yavuz, N. K., & Önen, A. (2017). Effects of the coagulation bath and reduction process on so2 adsorption capacity of graphene oxide fiber. World Academy of Science, Engineering and Technology International Journal of Materials and Metallurgical Engineering, 11no.(6), 426–429.
  • Andre Mkhoyan, K., Contryman, A. W., Silcox, J., Stewart, D. A., Eda, G., Mattevi, C., … Chhowalla, M. (2009). Atomic and electronic structure of graphene-oxide. Nano Letters, 9(3), 1058–1063.10.1021/nl8034256
  • Babu, D. J., Kühl, F. G., Yadav, S., Markert, D., Bruns, M., Hampe, M. J., & Schneider, J. J. (2016). Adsorption of pure SO2 on nanoscaled graphene oxide. RSC Advances, 6, 36834–36839.10.1039/C6RA07518E
  • Bagreev, A., Bashkova, S., & Bandosz, T. J. (2002). Adsorption of SO2 on activated carbons: The effect of nitrogen functionality and pore sizes. Langmuir, 18, 1257–1264.10.1021/la011320e
  • Boudou, J. P., Chehimi, M., Broniek, E., Siemieniewska, T., & Bimer, J. (2003). Adsorption of H2S or SO2 on an activated carbon cloth modified by ammonia treatment. Carbon, 41, 1999–2007.10.1016/S0008-6223(03)00210-0
  • Bradder, P., Ling, S. K., Wang, S., & Liu, S. (2011). Dye adsorption on layered graphite oxide. Journal of Chemical & Engineering Data, 56, 138–141.10.1021/je101049g
  • Cen, W., Hou, M., Liu, J., Yuan, S., Liu, Y., & Chu, Y. (2015). Oxidation of SO2 and NO by epoxy groups on graphene oxides: The role of the hydroxyl group. RSC Advances, 5, 22802–22810.10.1039/C4RA15179H
  • Childres, I., Jauregui, L. A., Tian, J., & Chen, Y. P. (2011). Effect of oxygen plasma etching on graphene studied using Raman spectroscopy and electronic transport measurements. New Journal of Physics, 13, 1–12.
  • Chu, K. H., Huang, Y., Yu, M., Heo, J., Flora, J. R. V., Jang, A., … Yoon, Y. (2017). Evaluation of graphene oxide-coated ultrafiltration membranes for humic acid removal at different pH and conductivity conditions. Separation and Purification Technology, 181, 139–147.10.1016/j.seppur.2017.03.026
  • Dikin, D. A., Stankovich, S., Zimney, E. J., Piner, R. D., Dommett, G. H., Evmenenko, G., … Ruoff, R. S. (2007). Preparation and characterization of graphene oxide paper. Nature, 448, 457–460.10.1038/nature06016
  • Elsagh, A., Moradi, O., Fakhri, A., Najafi, F., Alizadeh, R., & Haddadi, V. (2017). Evaluation of the potential cationic dye removal using adsorption by graphene and carbon nanotubes as adsorbents surfaces. Arabian Journal of Chemistry, 10(Suppl. 2), 2862–2869.
  • Fakhri, A. (2017). Adsorption characteristics of graphene oxide as a solid adsorbent for aniline removal from aqueous solutions: Kinetics, thermodynamics and mechanism studies. Journal of Saudi Chemical Society, 21(Suppl. 1), 52–57.
  • Gadipelli, S., & Guo, Z. X. (2015). Graphene-based materials: Synthesis and gas sorption, storage and separation. Progress in Materials Science, 69, 1–60.10.1016/j.pmatsci.2014.10.004
  • He, N., Pan, Q., Liu, Y., & Gao, W. (2017). Graphene-fiber-based supercapacitors favor N-methyl-2- pyrrolidone/ethyl acetate as the spinning solvent/coagulant combination. ACS Applied Materials & Interfaces, 9, 24568–24576.10.1021/acsami.7b05982
  • Huang, T., Zheng, B., Kou, L., Gopalsamy, K., Xu, Z., Gao, C., … Wei, Z. (2013). Flexible high performance wet-spun graphene fiber supercapacitors. RSC Advances, 3, 23957–23962.10.1039/c3ra44935a
  • Hummers, W. S., & Offeman, R. E. (1958). Preparation of graphitic oxide. Journal of the American Chemical Society, 80, 1339.10.1021/ja01539a017
  • Jalili, R., Aboutalebi, S. H., Esrafilzadeh, D., Shepherd, R. L., Chen, J., Aminorroaya-Yamini, S., … Wallace, G.G. (2013). Scalable one-step wet-spinning of graphene fibers and yarns from liquid crystalline dispersions of graphene oxide: Towards multifunctional textiles. Advanced Functional Materials, 23, 5345–5354.10.1002/adfm.v23.43
  • Jia, P., Pan, F., & Chen, T. (2017). Effect of oxygen plasma etching on graphene’s mechanical and electrical properties. IOP Conf. Series: Materials Science and Engineering, 182, 1–7.
  • Jiang, Y., Biswas, P., & Fortner, J. D. (2016). A review of recent developments in graphene-enabled membranes for water treatment. Environmental Science: Water Research & Technology, 2, 915–922.10.1039/C6EW00187D
  • Joshi, R. K., Carbone, P., Wang, F. C., Kravets, V. G., Su, Y., Grigorieva, I. V., … Nair, R. R. (2014). Precise and ultrafast molecular sieving through graphene oxide membranes. Science, 343, 752–754.10.1126/science.1245711
  • Karatepe, N., Orbak, I., Yavuz, R., & Özyuguran, A. (2008). Sulfur dioxide adsorption byactivated carbons having different textural and chemical properties. Fuel, 87, 3207–3215.10.1016/j.fuel.2008.06.002
  • Kohno, J., Mafune, F., & Kondow, T. (2000). Formation of Ca+ (EtOH)m from Alcohol Solutions of CaCl2. The Journal of Physical Chemistry A, 104(6), 1079.10.1021/jp992472+
  • Kong, L. B. (2017). Carbon Nanomaterials Based on Graphene Nanosheets. London: CRC Press.
  • Kumar, P., Subrahmanyam, K. S., & Rao, C. N. R. (2011). Graphene produced by radıatıon-ınduced reductıon of graphene oxıde. International Journal of Nanoscience, 10(04n05), 559–566.10.1142/S0219581X11008824
  • Lee, Y. W., Park, J. W., Choung, J. H., & Choi, D. K. (2002). Adsorption characteristics of SO2 on activated carbon prepared from coconut shell with potassium hydroxide activation. Environmental Science & Technology, 36, 1086–1092.10.1021/es010916 l
  • Lisovskii, A., Semiat, R., & Aharoni, C. (1997). Adsorption of sulphur dioxide by active carbon treated by nitcic acid:I. Effect of treatment on adsorption of SO2 and Extractability of the acid formed. Carbon, 35, 1639–1643.10.1016/S0008-6223(97)00129-2
  • Lui, C. H., Liu, L., Mak, K. F., Flynn, G. W., & Heinz, T. F. (2009). Ultraflat graphene. Nature, 462, 339–341.10.1038/nature08569
  • Ma, J., Ping, D., & Dong, X. (2017). Recent Developments of graphene oxide-based membranes: A review. Membranes, 7(52), 1–29.
  • Min Yoo, B., Shin, J. E., Lee, H. D., & Park, H. B. (2017). Graphene and graphene oxide membranes for gas separation applications. Current Opinion in Chemical Engineering, 16, 39–47.
  • Mladenov, I., & Ljubcheva, M. (1983). Polyacrylonitrile fibers treated by hydrazine hydrate as a basis for the production of carbon fibers. Journal of Polymer Science: Polymer Chemistry Edition, 21, 1223–1226.
  • Niu, Z., Chen, J., Hng, H. H., Ma, J., & Chen, X. (2012). A leavening strategy to prepare reduced graphene oxide foams. Advanced Materials, 24, 4144–4150.10.1002/adma.201200197
  • Paredes, J. I., Villar-Rodil, S., Solís-Fernández, P., Martínez-Alonso, A., & Tascón, J. M. D. (2009). Atomic force and scanning tunnelling microscopy imaging of graphene nanosheets derived from graphite oxide. Langmuir, 25(10), 5957–5968.10.1021/la804216z
  • Pastrana-Martı ́nez, L. M., Morales-Torres, S., Figueiredo, J. L., Faria, J. L., Silva, A. M. T. (2015). Graphene oxide based ultrafiltration membranes for photocatalytic degradation of organic pollutants in salty water. Water Research, 77, 179–190.10.1016/j.watres.2015.03.014
  • Ramesha, G. K., Kumara, A. V., Muralidhara, H. B., & Sampath, S. (2011). Graphene and graphene oxide as effective adsorbents toward anionic and cationic dyes. Journal of Colloid and Interface Science, 361, 270–277.10.1016/j.jcis.2011.05.050
  • Sharon, M., & Sharon, M. (2015). Graphene: An ıntroduction to the fundamentals and industrial applications. Hoboken: Wiley.10.1002/9781118842577
  • Slepicka, P., Kasálková, N. S., Stránská, E., Bacáková, L., & Svorcík, V. (2013). Surface characterization of plasma treated polymers for applications as biocompatible carriers. Express Polymer Letters, 7(6), 535–545.10.3144/expresspolymlett.2013.50
  • Song, X., Wang, Z., Li, Z., & Wang, C. (2008). Ultrafine porous carbon fibers for SO2 adsorption via electrospinning of polyacrylonitrile solution. Journal of Colloid and Interface Science, 327, 388–392.10.1016/j.jcis.2008.02.070
  • Szczęśniak, B., Choma, J., & Jaroniec, M. (2017). Gas adsorption properties of graphene-based materials. Advances in Colloid and Interface Science, 243, 46–59.10.1016/j.cis.2017.03.007
  • Takechi, K., & Lieberman, M. A. (2001). Effect of Ar addition to an plasma in an inductively coupled, traveling wave driven, large area plasma source: Mixture plasma modeling and photoresist etching. Journal of Applied Physics, 90, 3205–3211. doi:10.1063/1.1398600
  • Uçar, N., Gökçeli, G., Karatepe, N., & Önen, A. (2015). The Effect of dispersion preparation type and last coagulation bath on graphene oxide fibers produced by wet spinning technique. Textile and Apperal Journal, 25(3), 215–219.
  • Uçar, N., Gökceli, G., Yuksek, I. O., Onen, A., Yavuz, N. K. (2016). Graphene oxide and graphene fiber produced by different nozzle size, feed rate and reduction time with vitamin C. Published online: 26 December 2016 in Journal of Industrial Textiles. https://doi.org/10.1177/1528083716685903.
  • Uçar, N., Can, E., Yuksek, I. O., Olmez, M., Onen, A., & Yavuz, N. K. (2017a). The effect of exfoliation and plasma application on the properties of continuous graphene oxide fiber. Fullerenes, Nanotubes and Carbon Nanostructures, 25(10), 570–575.
  • Uçar, N., Ölmez, M., Kayaoğlu, B. K., Önen, A., Yavuz, N.K., Eksik, O. (2017b). Structural Properties of Graphene Oxide Fibers: From Graphene Oxide Dispersion until Continuous Graphene Oxide Fiber. Published online: 26 Mar 2018 in The Journal of the Textile Institute.
  • Wang, Y., Li, Z., Wang, J., Li, J., & Lin, Y. (2011). Graphene and graphene oxide: Biofunctionalization and applications in biotechnology. Trends in Biotechnology, 29(5), 205–212.10.1016/j.tibtech.2011.01.008
  • Wu, H., Lu, W., Shao, J., Zhang, C., Wu, M., Lı, B., & Yang, Q. (2013). pH-dependent size, surface chemistry and electrochemical properties of graphene oxide. New Carbon Materials, 28(5), 327–335.10.1016/S1872-5805(13)60085-2
  • Yang, S. T., Chen, S., Chang, Y., Cao, A., Liu, Y., & Wang, H. (2011). Removal of methylene blue from aqueous solution by g.raphene oxide. Journal of Colloid and Interface Science, 359, 24–29.10.1016/j.jcis.2011.02.064
  • Yang, W., Gan, L., Li, H. Q., & Zhai, T. Y. (2016). Two-dimensional layered nanomaterials for gas-sensing applications. Inorganic Chemistry Frontiers, 3, 433–451.10.1039/C5QI00251F
  • Yang, Q., Su, Y., Chi, C., Cherian, C. T., Huang, K., Kravets, V. G., … Nair, R. R. (2017). Ultrathin graphene-based membrane with precise molecular sieving and ultrafast solvent permeation. Nature Materials, 16(12), 1198–1202.10.1038/nmat5025
  • Yun, S., Lee, H., Lee, W.-E., & Park, H. S. (2016). Multiscale textured, ultralight graphene monoliths for enhanced CO2 and SO2 adsorption capacity. Fuel, 174, 36–42.10.1016/j.fuel.2016.01.068
  • Zhang, P., Wanko, H., & Ulrich, J. (2007). Adsorption of SO2 on activated carbon for low gas concentrations. Chemical Engineering & Technology, , 30(5), 635–641.10.1002/(ISSN)1521-4125
  • Zhang, Y. H., Chen, Y. B., Zhou, K. G., Liu, C. H., Zeng, J., Zhang, H. L., & Peng, Y. (2009). Improving gas sensing properties of graphene by introducing dopants and defects: A first-principles study. Nanotechnology, 20(18), 185504.10.1088/0957-4484/20/18/185504
  • Zhang, H., Cen, W., Liu, J., Guo, J., Yin, H., & Ning, P. (2015). Adsorption and oxidation of SO2 by graphene oxides: A van der Waals density functional theory study. Applied Surface Science, 324, 61–67.
  • Zheng, Q., & Kim, J. K. (2015). Graphene for transparent conductors- synthesis, structure, and properties of graphene and graphene oxide. New York, NY: Springer Science Business Media.10.1007/978-1-4939-2769-2
  • Zhu, Y. W., Murali, S., Cai, W. W., Li, X. S., Suk, J. W., Potts, J. R., & Ruoff, R. S. (2010). Graphene and graphene oxide: Synthesis, properties, and applications. Advanced Materials, 22, 3906–3924.10.1002/adma.201001068

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.