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Information Journal Paper

Title

NEW FILAMENTARY NANO ADSORBER GZ-BAKI-TAC-CO-88 FOR RAPID REMOVAL OF COBALT ION FROM AQUEOUS SOLUTIONS USING BESHEL TIRE ACTIVATED CARBON

Pages

  8-17

Keywords

COBALT (II)Q2
SEMQ2

Abstract

 Cobalt is a natural element found throughout the environment. Acute (short-term) exposure to high levels of cobalt by inhalation in humans and animals results in respiratory effects, such as a significant decrease in ventilatory function, congestion, edema, and hemorrhage of the lung. In agriculture solid waste, was chemically treated and used for the adsorption of Co (II) from aqueous solutions. The efficiency of this new adsorbent was studied using batch technique under different experimental conditions such as sorbent amount, initial metal-ion concentration, and contact time. In this project the separation of ion HEAVY METAL cobalt (II) using new filamentary adsorber for Removal of contaminants in environmental were investigated. The purpose of this research work is to build a new nano-absorber, GZ-BAKI-TAC-Co-88, for the adsorption of water soluble chromium ions in polluted water. The sorbent for separation are made by using sodium ALGINATE, Calcium chloride and Beshel TIRE ACTIVATED CARBON with nano-holes. The filamentary length of adsorber was 10 cm and 300 m in diameter in wet state. The tests were done in discontinuous system. The adsorption capacity and the kinetic of maximum percent by metal concentrations in 50, 80,100and 120 ppm were studied. The amount of cobalt uptake was 40.34%, 54.98%, 37.97% and 42.54 % respectively. For kinetic reaction times, 10, 20, 30,40,50,60 and 120 minutes were selected. The maximum adsorption of cobalt (II) achieved 54.989% in 120 minutes with 80ppm primary concentration of cobalt. The share of adsorption was calculated and the results shown that 80% of Co-Adsorption belongs to TIRE ACTIVATED CARBON and 20% to ALGINATE. The capacity of adsorption with 30 mL of 80 ppm Co and share of 1% of ACTIVATED CARBON and with assumption of 50% effectively of adsorber surface was 2880 mg Co/g ACTIVATED CARBON. Results indicate that the new adsorber calcium ALGINATE filamentary containing ACTIVATED CARBON with nano-holes has good adsorbing character for removal of cobalt (II) in polluted effluent. With increasing of ACTIVATED CARBON in sodium ALGINATE increased the amount of cobalt (II).Scanning Electron Microscope Images from powder ACTIVATED CARBON from TIRE shows the macro, meso and micro pore before and after adsorption

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    APA: Copy

    ZARGARLELLAHI, H., GHAFOURIAN, H., SADATIPOOR, S.M.T., & MALEKIAN, F.. (2012). NEW FILAMENTARY NANO ADSORBER GZ-BAKI-TAC-CO-88 FOR RAPID REMOVAL OF COBALT ION FROM AQUEOUS SOLUTIONS USING BESHEL TIRE ACTIVATED CARBON. JOURNAL OF MARINE SCIENCE AND TECHNOLOGY RESEARCH, 7(2), 8-17. SID. https://sid.ir/paper/173922/en

    Vancouver: Copy

    ZARGARLELLAHI H., GHAFOURIAN H., SADATIPOOR S.M.T., MALEKIAN F.. NEW FILAMENTARY NANO ADSORBER GZ-BAKI-TAC-CO-88 FOR RAPID REMOVAL OF COBALT ION FROM AQUEOUS SOLUTIONS USING BESHEL TIRE ACTIVATED CARBON. JOURNAL OF MARINE SCIENCE AND TECHNOLOGY RESEARCH[Internet]. 2012;7(2):8-17. Available from: https://sid.ir/paper/173922/en

    IEEE: Copy

    H. ZARGARLELLAHI, H. GHAFOURIAN, S.M.T. SADATIPOOR, and F. MALEKIAN, “NEW FILAMENTARY NANO ADSORBER GZ-BAKI-TAC-CO-88 FOR RAPID REMOVAL OF COBALT ION FROM AQUEOUS SOLUTIONS USING BESHEL TIRE ACTIVATED CARBON,” JOURNAL OF MARINE SCIENCE AND TECHNOLOGY RESEARCH, vol. 7, no. 2, pp. 8–17, 2012, [Online]. Available: https://sid.ir/paper/173922/en

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