Removal of Congo red from aqueous solutions using nano-Chitosan

سال انتشار: 1396
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 563

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شناسه ملی سند علمی:

JR_IJERR-5-1_003

تاریخ نمایه سازی: 17 مهر 1398

چکیده مقاله:

It is now recognized that adsorption using low-cost adsorbents is an effective and economic method for water decontamination. Chitosan is derived by deacetylation of the naturally occurring biopolymer chitin which is the second most abundant polysaccharide in the world after cellulose. In this study, the capacity of the chitosan nanoparticles was studied for the removal of the anionic Congo red from wastewater. The effect of various parameters, such as the initial pH value in range of (2-4), initial dye concentration (3-50 mg/L), adsorbent dosage (0.1-1.5 g), contact time (5-40 min) and temperature (20-45 C°) on adsorption process was investigated. The results indicated that chitosan nanoparticles under optimal conditions (pH=7, 5 mg/L-1 concentration of adsorbent, contact time of 15 minutes and a temperature of 30 ° C) is able to remove 99.96% of Congo red from aqueous solutions. Hence, nano-chitosan can be used as an eco-friendly adsorbent for the removal of Congo red from wastewater in terms of lower optimum time and higher adsorption capacity.

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نویسندگان

Hassan Rezaei

Gorgan Uni.

Asiyeh Razavi

. M.Sc. student of Environmental Sciences, Baharan Institute of Higher Education, Gorgan, Iran

Ali Shahbazi

Head Department Environmental Sciences, Baharan Institute of Higher Education, Gorgan, Iran

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  • Ansari, R., Mohammad-Khah, A., and Alaie, S. 2010. Removal of ...
  • Bhaumik, M., McCrindle, R.I., and Maity, A. 2013. Efficient removal ...
  • Chatterjee, S., Lee, D.S., Lee, M.W., and Woo, S.H. 2009. ...
  • Cheaburu-Yilmaz, C.N., Yilmaz, O., and Vasile, C. 2015. Eco-Friendly Chitosan-Based ...
  • Chen, R., Wang, W., Zhao, X., Zhang, Y., Wu, S., ...
  • Cho, D.W., Jeon, B.H., Chon, Ch.M., Schwartz, F.W., Jeong, Y., ...
  • Crini, G., and Badot, P.M. 2008. Application of chitosan, a ...
  • Ghorai, S., Sarkar, K.A., Panda, A.B., and Pal, S. 2013. ...
  • Haldorai, Y., Kharismadewi, D., Tuma, D., and Shim, J.-J. 2015. ...
  • Hashemian, S., and Foroghimoqhadam, A. 2014. Effect of copper doping ...
  • Hou, H., Zhou, R., Wu, P., and Wu, L. 2012. ...
  • Huang, X.Y., Mao, X.Y., Bu, H.T., Yu, X.Y., Jiang, G.B., ...
  • Li, Y., Sun, J., Du, Q., Zhang, L., Yang, X., ...
  • Mechanical and dye adsorption properties of graphene oxide/chitosancomposite fibers prepared ...
  • Mahapatra, A., Mishra, B.G., and Hota, G. 2013. Adsorptive removal ...
  • Mahmoodian, H., Moradi, O., Shariatzadeha, B., Salehf, T.A., Tyagi, I., ...
  • Rasouli Fard, H.M., Taheri Ghazvini, N., Farhang Nia, A., Heidari, ...
  • Salehi, R., Arami, M., Mahmoudi, N.M., and Bahrami, H. 2010. ...
  • Sheshmani, Sh., Ashori, A.R., and Hasanzadeh, S. 2014. Removal of ...
  • Vakili, M.T., Rafatullah, M., Salamatinia, B., Zuhairi Abdullah, A., Hakimi ...
  • Vanaamudan, A., and Sudhakar, P.P. 2015. Equilibrium, kinetics and thermodynamic ...
  • Wanyonyi, W.C., Onyari, M.J., and Shiundu, P.M. 2014. Adsorption of ...
  • Zheng, L., Wang, Ch., Shu, Y., Yan, X., and Li, ...
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