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Information Journal Paper

Title

FABRICATION OF METALLOPORPHYRIN CONTAINING MAGNETIC NANOSORBENTS AND ITS APPLICATION FOR FLUORIDE REMOVAL FROM INDUSTRIAL WASTEWATER

Pages

  69-75

Abstract

 Although the presence of small amounts of fluoride in drinking water is beneficial for bones and teeth, its excess amounts causes some adverse effects such as dental fluorosis and paralysis; therefore removal of its excess amounts is a must. A lot of industrial activities such as refineries, steel, crystal and glass industries and semiconductor production plants produce high fluoride effluents that should be defluoridized. In this study a new magnetic nanosorbent was produced for the selective removal of FLUORIDE ION from aqueous media; based on parameters such as pH, contact time, amount of sorbent and effect of the present interfering anions in the medium, its performance was studied; under optimal conditions (i.e. pH:5.5, contact time: 40 min and sorbent dosage: 100 mg) the fluoride removal efficiency of 96.2% was achieved. This sorbent could be reused for four cycles. The synthesized sorbent was successfully applied for fluoride removal from the effluents of a crystal and glass production plant.

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  • Cite

    APA: Copy

    POURSABERI, T., HASSANISADI, M., & TORKESTANI, K.. (2012). FABRICATION OF METALLOPORPHYRIN CONTAINING MAGNETIC NANOSORBENTS AND ITS APPLICATION FOR FLUORIDE REMOVAL FROM INDUSTRIAL WASTEWATER. IRANIAN CHEMICAL ENGINEERING JOURNAL, 11(61), 69-75. SID. https://sid.ir/paper/150738/en

    Vancouver: Copy

    POURSABERI T., HASSANISADI M., TORKESTANI K.. FABRICATION OF METALLOPORPHYRIN CONTAINING MAGNETIC NANOSORBENTS AND ITS APPLICATION FOR FLUORIDE REMOVAL FROM INDUSTRIAL WASTEWATER. IRANIAN CHEMICAL ENGINEERING JOURNAL[Internet]. 2012;11(61):69-75. Available from: https://sid.ir/paper/150738/en

    IEEE: Copy

    T. POURSABERI, M. HASSANISADI, and K. TORKESTANI, “FABRICATION OF METALLOPORPHYRIN CONTAINING MAGNETIC NANOSORBENTS AND ITS APPLICATION FOR FLUORIDE REMOVAL FROM INDUSTRIAL WASTEWATER,” IRANIAN CHEMICAL ENGINEERING JOURNAL, vol. 11, no. 61, pp. 69–75, 2012, [Online]. Available: https://sid.ir/paper/150738/en

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