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Photocatalytic degradation of malachite green dye using doped and undoped ZnS nanoparticles Cover

Photocatalytic degradation of malachite green dye using doped and undoped ZnS nanoparticles

Open Access
|Jul 2012

References

  1. Parshetti, G., Kalme, S., Saratale, G. & Govindwar, S. (2006). Biodegradation of malachite green by Kocuria rosea MTCC 1532.53, 492-498.
  2. Oturan, M. A., Guivarch, E., Oturan, N. & Sires, I. (2008). Oxidation pathways of malachite green by Fe-catalyzed electro-Fenton process.82, 244-254. DOI: 10.1016/j.apcatb.2008.01.016.
  3. Kansal, S. K., Singh, M. & Sud, D. (2007). Studies on photodegradation of two commercial dyes in aqueous.141, 581-590. DOI: 10.1016/j.jhazmat.2006.07.035.
  4. Hachem, C., Bocquillon, F., Zahraa, O. & Bouchy, M. (2001). Decolourization of textile industry wastewater by the photocatalytic degradation process.49, 117-125.
  5. Barjasteh-Moghaddam, M. & Habibi-Yangjeh, A. (2011). Effect of operational parameters on photodegradation of methylene blue on ZnS nanoparticles prepared in presence of an ionic liquid as a highly efficient photocatalyst.8, S169-S175.
  6. Sayilkan, F., Asilturk, M., Tatar, P., Kiraz, N., Arpac, E. & Sayilkan, H. (2007). Photocatalytic performance of Sn-doped TiOnanostructured mono and double layer thin films for malachite green dye degradation under UV and vis-lights.144, 140-146. DOE 10.1016/j.jhazmat.2006.10.011.
  7. Modirshahla, N. & Behnajady, M. A. (2006). Photooxidative degradation of malachite green (MG) by UV/H2O2: Influence of operational parameters and kinetic modeling.70, 54-59. DOI: 10.1016/j.dyepig.2005.04.012.
  8. Paninutti, L., Mouso, N. & Forchiassin, F. (2006). Removal and degradation of the fungicide dye malachite green from aqueous solution using the system wheat bran-Fomes sclerodermeus.39, 848-853. DOI: 10.1016/j.enzmictec.2006.01.013.
  9. Sambasivam, S., Joseph, D.E, Reddy, D. R., Reddy, B. K. & Jayasankar, C. K. (2008). Synthesis and characterization of thiophenol passivated Fe doped ZnS nanoparticles., B. 150, 125-129. DOI: 10.1016/j.mseb.2008.03.009.
  10. Daneshwar, N., Ayazloo, M., Khataee, A. R. & Pourhassan, M. (2007). Biological decolorization of dye solution containing malachite green by microalgae cosmarium sp.98, 1176-1182. DOI: 10.1016/j.biortech.2006.05.025.
  11. Behnajady, M., Modirshahla, N., Shokri, M. & Vahid, B. (2008). Effect of operational parameters on degradation of malachite green by ultrasonic irradiation.15, 1009-1014. DOI: 10.1016/ultsonch.2008.03.004.
  12. Pérez-Estrada, L. A., Agüera, A., Hernando, M. D., Malato, S. & Fernández-Aba, A. R. (2008). Photodegradation of malachite green under natural sunlight irradiation: Kinetic and toxicity of the transformation products.70, 2068-2075. DOI: 10.1016/j.chemosphere.2007.09.008.
  13. Oussi, D., Mokrini, A. & Esplugas, S. (1997). Removal of aromatic compounds using UV/HO.1, 77-83.
  14. Carlos, G. A. K., Fernando, W., Sandra, M. G., Nelson, D., Noemi, N. & Patricio, P. Z. (2000). Semiconductor-assisted photocatalytic degradation of reactive dyes in aqueous solution.40, 433-440.
  15. Wen, K. S. & Li, W. N. (2010). Fenton degradation of 4-chlorophenol contaminated water promoted by solar irradiation.84, 59-65. DOI: 10.101016/j.sole-ner.2009.10.006.
  16. Nagaveni, K., Sivalingam, G., Hegde, M. S. and Giridhar, M. (2004). Solar photocatalytic degradation of dyes: high activity of combustion synthesized nano TiO.48, 83-93. DOI: 10.1016/j.apcatb.2003.09.013.
  17. Colmenares, J. C., Luque, R., Campelo, J. M., Colmenares, F., Karpiński, Z. & Romero, A. A. (2009). Nanostructured photocatalysts and their applications in the photocatalytic transformations of lignocellulosic biomass: An overview.2, 2228-2258. DOI: 10.3390/ma2042228.
  18. Yang, J., Peng, J. J., Zou, R. Peng, F., Wang, H., Yu, H. and Lee, J. Y. (2008). Mesoporous zinc-blende ZnS nanoparticles: synthesis, characterization and superior photocatalytic properties.19, 255603. DOI: 10.1088/0957-4484/19/25/255603.
  19. Yao, T., Zhao, Q., Qiao, Z., Peng, F., Wang, H., Yu, H., Chi, C. and Yang, J. (2011). Chemical synthesis, structural characterization, optical properties and photocatalytic activity of ultrathin ZnSe nanorods.17, 8663-8670. DOI: 10.1002/chem.201003531.
  20. El-Kemary M. & El-Shamy, H. (2009). Fluorescence modulation and photodegradation characteristics of safranin O dye in the presence of ZnS nanoparticles,: 205, 151-155. DOI: 10.1016/j.photochem.2009.04.021.
  21. Godočíkova, E., Criado, J., Real, C. & Gock, E. (2006). Thermal behaviour of mechanochemically synthesized nano-crystalline CuS.440, 19-22. DOI:10.1016/j.tca.2005.09.015.
  22. Tsuzuki, T. & McCormick, P. (2004). Mechanochemical synthesis of nanoaprticles.39, 5143-5146.
  23. Geng, B. Y., Liu, X. W., Du, Q. B., Wei, X. W. & Zhang, L. D. (2006). Structure and optical properties of periodically twinned ZnS nanowires.88, 163104-163104-3. DOI: 10.1063/1.2196827.
  24. Zhang, Z., Ming, H. & Duan, X. (2009). Optical properties of hexagonal and cubic ZnS nanoribbons: Experiment and theory.26, 066104-1-066104-3.
  25. Godocikova, E., Balaz, P., Gock, E., Choi, W. & Kim, B. (2006). Mechanochemical synthesis of the nanocrystalline semiconductors in an industrial mill.164, 147-152. DOI: 10.1016/j.powtec.2006.03.021.
  26. Mittal, A. (2006). Adsorption kinetics of removal of a toxic dye, malachite green, from wastewater by using hen feathers.133, 196-202. DOI: 10.1016/j.jhazmat.2005.10.017.
  27. Chen, Y., Zhang, Y., Liu, C., Lu, A. and Zhang, W. (2012). Photodegradation of malachite green by nanostructured Bi2WOvisible light induced photocatalyst.2012, 1-6. DOI: 10.1155/2012/510158.
  28. Franco, A., Neves, M. C., Ribeiro Carrott, M. M. L., mendonca, M. H., Pereira, M. I. and Monteiro, O. C. (2009). Photocatalytic decolorization of methylene blue in the presence of TiO/ZnS composite.161, 545-550. DOI: 10.1016/j.jhazmat.2008.03.133.
  29. Gandhi, J., Dangi, R., Sharma, J. C., Verma, N. & Bhardwaj, S. (2010). Photocatalytic bleaching of malachite green and brilliant green dyes using ZnS-CdS as semiconductor: A comparative study.1, 77-83.
  30. Pouretedal, H. R., Norozi, A., Keshavarz, M. H. & Semnani, A. (2009). Nanoparticles of zinc sulfide doped with manganese, nickel and copper as nanophotocatalyst in the degradation of organic dyes.162, 674-681. DOI: 10.1016/j.jhazmat.2008.05.128.
  31. Ghaly, M. Y., Härtel, G., Mayer, R. & Haseneder, R. (2001). Photochemical oxidation of p-chlorophenol by UV/HOand photo-Fenton process. A comparative study.21, 41-47. DOI: 10.1016/So956-053X(00)00070-2.
  32. Aravindhan, R., Fathima, N. N., Rao, J. R. & Nair, B. U. (2006). Wet oxidation of acid brown dye by hydrogen peroxide using heterogeneous catalyst Mn-salen-Y zeolite: A potential catalyst.138, 152-159. DOI: 10.1016/j.hzmat.2006.05.052.
  33. Ho, Y. S. and McKay, G. (1999). Pseudo-second order model for sorption processes.34, 451-465.
  34. Muhammad, A. R., Mohammed, A. M., Khaleel, A. & Amal, A. (2010). Photocatalytic degradation of methylene blue using a mixed catalyst and product analysis by LC/MS.157, 373-378. DOI: 10.1016/j.cej.2009.11.017.
DOI: https://doi.org/10.2478/v10026-012-0065-6 | Journal eISSN: 3072-0389 (formerly 1899-4741) | Journal ISSN: 1509-8117
Language: English
Page range: 16 - 21
Published on: Jul 2, 2012
Published by: West Pomeranian University of Technology, Szczecin
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2012 Jyoti Tolia, Mousumi Chakraborty, Z. Murthy, published by West Pomeranian University of Technology, Szczecin
This work is licensed under the Creative Commons License.