Improvement of Adsorption Ability in Bentonite with Considering Basal Spacing and Crystallite Size Effect

سال انتشار: 1393
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 798

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شناسه ملی سند علمی:

AEBSCONF02_028

تاریخ نمایه سازی: 16 خرداد 1394

چکیده مقاله:

To improve adsorption ability in bentonite, two factors of basal spacing and crystallite size in the structureof this mineral were considered. Reducing the crystallite size and achieving the nano crystallite size in structure ofthis mineral cause increasing in specific surface and also increasing in the absorption places. In order to increase inbasal spacing, specially distance between the layers increase the absorption places. Results showed by reducing thecrystallite size, basal spacing was reduced; therefore to improve this condition Na-activation was used for bentoniteuntil establishing more swelling ability in structure of this mineral, one can increase the basal spacing. Thenpreparation procedure was done on six samples for compare with crystallite size, basal spacing and Na-activationeffect. In this research the sample of Na-bentonite with dimension of 2nm, the basal spacing of 12.5 nm and swellingindex of 17.6 ml/2gr used as an absorbent agent for adsorption of zinc as heavy metal. In this sample the countereffect of swelling index on basal spacing caused ~30% increasing in adsorption recovery in compare to non-activatedbentonite. Finally, this sample with adsorption recovery about 95% was selected as the best absorbent.

نویسندگان

Shima Barakan

Ph.D. Student of mineral processing۱, Assistant Professor in Mineral Processing

Valeh Aghazadeh

Mining Engineering Faculty of Sahand University of Technology, Tabriz, Iran

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  • Alexandre, M., Dubois, P., 2000, Polymer- layered Silicate Nanocompo sites ...
  • Ayari, F, srasea, E., 2005, characteriz ation of bentonite clays ...
  • Babel, S., Kurniawan, A.T., 2003, Low cost adsorbens for heavy ...
  • Bergaya, F., Theng, B.K.G., Lagaly, G., 2006, Handbook of Clay ...
  • Bourg, Ian C., Bourg, Alain C.M., 2003, Garrison Sposito, Modeling ...
  • Carrado, K.A., 2004, Introduction clay structure surface acidity and catalysis, ...
  • Donglin, Zhao., Shaohua, Chena.. Shubin, Yangb., Xin, Yangb., Shitong, 2011, ...
  • Duo-qiang, Pan a., Qiao-hui, Fan., Ping, Li., Sheng-ping, Liu., Wang-suo, ...
  • Eren, E., Tabak, A., Eren, B., 2010, Performance of magnesium ...
  • Florian, J., Artur, M., 2011, Monte Carlo study of interlayer ...
  • Guimaraes , A.M.F., Ciminelli, V.S.T., Vasconcelos, W.L., 2009, Smectite organo ...
  • Hussain, F., Hojjati, M., 2006, Review article: Polymer- matrix Nano ...
  • Mahmoud, N. S., Atwa, S. T., Sakr, A. K., Abdel ...
  • Mathialagan, T., Viraraghavan, T., 2002, Adsorption of cadmium from aqueous ...
  • Mathialagan, T., Viraraghavan, T., 2002, Adsorption of cadmium from aqueous ...
  • Matthes, w.. Madsen, T.F., Kahr, G., 1999, Sorption of heavy ...
  • Ouki, S.K., Kavanagh, M., 1997, Performance of natural zeolites for ...
  • Pinnavaia, T.J., 1983, Intercalated Clay Catalysts, Science, 220, 365-371. ...
  • Rorrer, G.L, Way, J.D., 2002, Chitosan beads to remove heavy ...
  • Sharma, D.C.. Forster, C.F., 1993, Removal of hexavelet chromium using ...
  • Shuli, Ding., Juanjuan, Shen., Bohui, Xu., Qinfu, Liu.. Yuzhuang, Sun., ...
  • Suprakas Sinha, R., Masami, O., 2003, Po lymer/layered silicate nanocompo ...
  • Tan, X.L, Wang, X.K., Geckeis, H., Rabung, Th., 2008 , ...
  • Zhang, J., Gupta, R.K... Wilkie, C.A.. 2006, Controlled silylation of ...
  • Zhi-rong, Liu., Shao-qi, Zhou., 2010. Adsorption of copper and nickel ...
  • نمایش کامل مراجع