Natural product based composite for extraction of arsenic (III) from waste water

被引:0
作者
N. Akartasse
E. Mejdoubi
B. Razzouki
K. Azzaoui
S. Jodeh
O. Hamed
M. Ramdani
A. Lamhamdi
M. Berrabah
I. Lahmass
W. Jodeh
S. El Hajjaji
机构
[1] Mohamed 1st University,Laboratory LMSAC, Faculty of Sciences
[2] University Mohammed V,Department of Chemistry, LS3ME, Faculty of Sciences
[3] An-Najah National University,Department of Chemistry
[4] Mohamed 1st University,Laboratory LCAE
[5] Mohamed 1st University,URAC18, Faculty of Sciences
[6] Mohamed 1st University,National School of Applied Sciences Al Hoceima
[7] An-Najah National University,Laboratory of Biochemistry Faculty of Sciences
来源
Chemistry Central Journal | / 11卷
关键词
Hydroxyapatite; Gum Arabic; Composite; Arsenic; Adsorption; Kinetic;
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中图分类号
学科分类号
摘要
Natural based composites of hydroxyapatite/Gum Arabic designed for removal of toxic metal arsenic (III) from waste water were synthesized and evaluated. Several composites with various compositions were prepared by the wet chemical method and analyzed using various spectroscopic and analytical methods such as: Fourier transform infrared spectroscopy, total organic carbon production, XRD analysis and scanning electron microscope. The rates of weight loss and water absorption of the HAp/GA composites as a function of time were evaluated in phosphate-buffered saline solution at 37 °C and a pH of 7.4. The effects of several variables on adsorption of arsenic (III) by HAp/GA composites were evaluated. The variables include arsenic (III) concentration, contact time (t) and complex surface nature of HAp/GA composite. Three surface complexation models were used to study the mechanisms controlled the adsorption. The models were Langmuir, Freundlich and Dubinin Radushkevich. The adsorption kinetic of arsenic (III) on the composite surface was described by three modes: pseudo first order, pseudo second order and the intra particle diffusion. The results revealed that, the rate of adsorption of arsenic (III) by HAp/GA composites was controlled by two main factors: the initial concentration of arsenic (III) and the contact time. The kinetic studies also showed that, the rate of adsorption is a second order. The results indicate that, composite offered in this study could be a valuable tool for removing toxic metals for contaminated water by adsorption.Graphical abstract.[graphic not available: see fulltext]
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  • [1] He ZL(2005)Trace elements in agroeco systems and impacts on the environment J Trace Elem Med Biol. 19 125-140
  • [2] Yang XE(2015)Removal of As(V) from groundwater using functionalized magnetic adsorbent materials: effects of competing ions Sep Purif Technol 156 699-707
  • [3] Stoffella PJ(2007)Fast removal of copper ions by gum Arabic modified magnetic nano-adsorbent J Hazard Mater 147 792-799
  • [4] Bringas E(2004)Removal of Cr(VI) and Hg(II) from aqueous solutions using fly ash and impregnated fly ash Sep Sci Technol 39 1611-1629
  • [5] Saiz J(2007)Hydrogen bonding interaction of poly ( Nanocomposites Chem Mater 19 247-253
  • [6] Ortiz I(2014), Carbohydr Polym 111 41-46
  • [7] Banerjee SS(2013)-lactide)/hydroxyapatite J Chem Pharm Res 5 1209-1216
  • [8] Chen D-H(2014)Synthesis and characterization of composite based on cellulose acetate and hydroxyapatite application to the absorption of harmful substances J Clean Prod 84 526-532
  • [9] Banerjee SS(2015)Synthesis of nanostructured hydroxyapatite in presence of polyethylene glycol 1000 J Mater Environ Sci 6 144-1450
  • [10] Jayaram RV(2015)Arsenic removal from aqueous solution using pyrite Der Pharmacia Lett 7 53-59