298
Views
11
CrossRef citations to date
0
Altmetric
Articles

Synthesis and application of polymer-grafted nanocellulose/graphene oxide nano composite for the selective recovery of radionuclides from aqueous media

, &
Pages 1453-1468 | Received 07 Jun 2018, Accepted 08 Oct 2018, Published online: 19 Oct 2018

References

  • Tutson, C.D.; Gorden A., E.V. 2017 Thorium coordination: A comprehensive review based on coordination number. Coordination Chemistry Reviews, 333:27–43.
  • Raje, N.; Reddy, A.V.R. (2010) Mechanistic aspects of thermal decomposition of thorium oxalate hexahydrate: a review. Thermochimica Acta, 505(1–2): 53–58.
  • Metaxas, M.; Kasselouri-Rigopoulou., V.; Galiatsatou, P.; Konstantopoulou, C.; Oikonomou, D. (2003) Thorium removal by different adsorbents. Journal of Hazardous Materials, 97(1–3): 71–82.
  • Liang, H.; Chen, Q.; Ma, J.; Huang, Y.; Shen, X. (2017) Synthesis and characterization of a new ion-imprinted polymer for the selective separation of thorium(iv) ions at high acidity. RSC Advances, 7(56): 35394–35402.
  • Hu, B.; Cheng, W.H.; Sheng, G. (2010) Sorption of radionickel to goethite: effect of water quality parameters and temperature. Journal of Radioanalytical and Nuclear Chemistry, 285(2): 389–398.
  • Alipour, D.; Keshtkar, A.R.; Moosavian, M.A. 2016 Adsorption of thorium(IV) from simulated radioactive solutions using a novel electrospun PVA/TiO2/ZnO nanofiber adsorbent functionalized with mercapto groups: study in single and multi-component systems. Applied Surface Science, 366:19–29.
  • Bursali, E.A.; Merdivan, M.; Yurdakoc, M. (2010) Preconcentration of uranium(VI) and thorium(IV) from aqueous solutions using low-cost abundantly available sorbent : sSSorption behaviour of uranium(VI) and thorium(IV) on low-cost abundantly available sorbent. Journal of Radioanalytical and Nuclear Chemistry, 283(2): 471–476.
  • Peizhuo, H.; Tonghuan, L.; Gen, Z.; Xiaojiang, D.; Wangsuo, W. (2014) Adsorption of Th4+from aqueous solution onto Poly(N,N-diethylacrylamide-co-acrylic acid) microgels. Journal of Radioanalytical and Nuclear Chemistry, 301(1): 65–73.
  • Liu, P.; Qi, W.; Du, Y. (2014) Adsorption of thorium(IV) on magnetic multi-walled carbon nanotubes. Science China Chemistry, 2014 57(11):1483–1490.
  • Li, J.; Xiangxue, W.; Guixia, Z.; Changlun, C.; Zhifang, C.; Ahmed, A.; Tasawar, H.; Xiangke, W. (2018) Metal-Organic Framework-Based Materials: superior Adsorbents for the Capture of Toxic and Radioactive Metal Ions. Chemical Society Reviews, 47(7): 2322–2356.
  • Gu, P.; Sai, Z.; Li, X.; Xiangxue, W.; Tao, W.; Riffat, J.; Ahmed, A.; Tasawar, H.; Xiangke, W. 2018 Recent Advances in Layered Double Hydroxide-Based Nanomaterials for the Removal of Radionuclides from Aqueous Solution. Environmental Pollution, 240:493–505.
  • Yu, S.; Xiangxue, W.; Hongwei, P.; Rui, Z.; Wencheng, S.; Dong, F.; Tasawar, H.; Xiangke, W. 2018 Boron Nitride-Based Materials for the Removal of Pollutants from Aqueous Solutions: a Review’. Chemical Engineering Journal, 333:343–360.
  • Kyzas, G.Z.; Deliyanni, E.A.; Bikiaris, D.N.; Mitropoulos, A.C. 2018 Graphene composites as dye adsorbents: review. Chemical Engineering Research and Design, 129:75–88.
  • Hu, X.; Yu, Y.; Hou, W.; Zhou, J.; Song, L. 2013 Effects of particle size and pH value on the hydrophilicity of graphene oxide. Applied Surface Science, 273:118–121.
  • Gu, D.; Fein, J.B. 2015 Adsorption of metals onto graphene oxide: surface complexation modeling and linear free energy relationships. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 481:319–327.
  • Dikin, D.A.; Stankovich, S.; Zimney, E.J. (2007) Preparation and characterization of graphene oxide paper. Nature, 448(7152): 457–460.
  • Xu, J.; Zhou, L.; Jia, Y.; Liu, Z.; Adesina, A.A. (2015) Adsorption of thorium (IV) ions from aqueous solution by magnetic chitosan resins modified with triethylene-tetramine. Journal of Radioanalytical and Nuclear Chemistry, 303(1): 347–356.
  • Anirudhan, T.S.; Sreekumari, S.S.; Jalajamony, S. 2013 An investigation into the adsorption of thorium(IV) from aqueous solutions by a carboxylate-functionalised graft copolymer derived from titanium dioxide-densified cellulose. Journal of Environmental Radioactivity, 116:141–147.
  • Marcano, D.C.; Kosynkin, D.V.; Berlin, J.M.; Sinitskii, A.; Sun, Z.; Slesarev, A.; Alemany, L.B.; Lu, W.; Tour, J.M. (2010) Improved synthesis of graphene oxide. ACS Nano, 4(8): 4806–4814.
  • Beck-Candanedo, S.; Roman, M.; Gray, D.G. (2005) Effect of reaction conditions on the properties and behavior of wood cellulose nanocrystal suspensions. Biomacromolecules, 6(2): 1048–1054.
  • Ciolacu, D.; Ciolacu, F.; Popa, V.I. (2011) Amorphous Cellulose – structure and Characterization. Cellulose Chemistry and Technology, 45(1–2): 13–21.
  • Nguyen, P.T.N.; Salim, C.; Kurniawan, W.; Hinode, H. 2014 A non-hydrolytic sol-gel synthesis of reduced graphene oxide/TiO2microsphere photocatalysts. Catalysis Today, 230:166–173.
  • Liu, J.W.; Yang, T.; Chen, S.; Chen, X.W.; Wang, J.H. (2013) Nickel chelating functionalization of graphene composite for metal affinity membrane isolation of lysozyme. Journal Materials Chemical B, 1(6): 810–818.
  • Anirudhan, T.S.; Tharun, A.R.; Rejeena, S.R. 2011 Investigation on Poly (methacrylic acid) -Grafted Cellulose/Bentonite Superabsorbent Composite : synthesis, Characterization, and Adsorption Characteristics of Bovine Serum Albumin. Industrial & Engineering Chemistry Research, 50:1866–1874.
  • Kazy, S.K.; D’Souza, S.F.; Sar, P. (2009) Uranium and thorium sequestration by a Pseudomonas sp.: mechanism and chemical characterization. Journal of Hazardous Materials, 163(1): 65–72.
  • Zhang, H.; Feng, P.X. (2010) Fabrication and characterization of few-layer graphene. Carbon, 48(2): 359–364.
  • Wada, M.; Heux, L.; Sugiyama, J. (2004) Polymorphism of cellulose I family: reinvestigation of cellulose IVl. Biomacromolecules, 5(4): 1385–1391.
  • Saleem, H.; Haneef, M.; Abbasi, H.Y. 2018 Synthesis route of reduced graphene oxide via thermal reduction of chemically exfoliated graphene oxide. Materials Chemistry and Physics, 204:1–7.
  • Sofer, Z.; Jankovský, O.; Šimek, P.; Klímová, K.; Macková, A.; Pumera, M. (2014) Uranium- and thorium-doped graphene for efficient oxygen and hydrogen peroxide reduction. ACS Nano, 8(7): 7106–7114.
  • Das, K.; Ray, D.; Bandyopadhyay, N.R.; Sengupta, S. (2010) Study of the Properties of Microcrystalline Cellulose Particles from Different Renewable Resources by XRD, FTIR, Nanoindentation, TGA and SEM. Journal of Polymers and the Environment, 18(3): 355–363.
  • Stankovich, S.; Dikin, D.A.; Piner, R.D.; Kohlhaas, K.A.; Kleinhammes, A.; Jia, Y.; Wu, Y.; Nguyen, S.T.; Rouff, R.S. (2007) Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide. Carbon, 45(7): 1558–1565.
  • Tan, X.; Wang, X.; Fang, M.; Chen, C. (2007) Sorption and desorption of Th(IV) on nanoparticles of anatase studied by batch and spectroscopy methods. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 296(1–3): 109–116.
  • Jurinak, J.J.; Baes, C.F.; Mesmer, R. (1976) The Hydrolysis of Cations, Wiley Interscience Publication, 40. 459–489.
  • Neck, V.; Müller, R.; Bouby, M.; Altmaier, M.; Rothe, J.; Denecke, M.A.; Kim, J. (2002) Solubility of amorphous Th(IV) hydroxide - Application of LIBD to determine the solubility product and EXAFS for aqueous speciation. Radiochimica Acta, 90(9–11): 485–494.
  • Moulin, C.; Amekraz, B.; Hubert, S.; Moulin, V. (2001) Study of thorium hydrolysis species by electrospray-ionization mass spectrometry. Analytica Chimica Acta, 441(2): 269–279.
  • Andersson, K.I.; Eriksson, M.; Norgren, M. (2011) Removal of lignin from wastewater generated by mechanical pulping using activated charcoal and fly ash: adsorption isotherms and thermodynamics. Industrial and Engineering Chemistry Research, 50(13): 7722–7732.
  • Zhao, H.; Liu, X.; Cao, Z.; Zhan, Y.; Shi, X.; Yang, Y.; Zhou, J.; Xu, J. 2016 Adsorption behavior and mechanism of chloramphenicols, sulfonamides, and non-antibiotic pharmaceuticals on multi-walled carbon nanotubes. Journal of Hazardous Materials, 310:235–245.
  • Khalili, F.; Al-Banna, G. 2015 Adsorption of uranium(VI) and thorium(IV) by insolubilized humic acid from Ajloun soil - Jordan. Journal of Environmental Radioactivity, 146:16–26.
  • Chen, H.; Zhe, C.; Guixia, Z.; Zhibin, Z.; Chao, X.; Yunhai, L.; Jing, C.; Li, Z.; Tasawar, H.; Xiangke, W. 2018 Enhanced Adsorption of U(VI) and 241Am(III) from Wastewater Using Ca/Al Layered Double Hydroxide@carbon Nanotube Composites. Journal of Hazardous Materials, 347:67–77.
  • Yao, W.; Xiangxue, W.; Yu, L.; Shujun, Y.; Pengcheng, G.; Yubing, S.; Chao, X.; Jing, C.; Tasawar, H.; Ahmed, A.; Xiangke, W. (2018) Synthesis of Novel Flower-like Layered Double Oxides/Carbon Dots Nanocomposites for U(VI) and 241Am(III) Efficient Removal: batch and EXAFS Studies. Chemical Engineering Journal, 332(Vi): 775–786.

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.