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   Isothermal, Kinetic, and Thermodynamic Studies on the Adsorption of Molybdenum by a Nanostructured Magnetic Material  
   
نویسنده shargh elnaz ,sid kalal hossein ,shiri-yekta zahra ,mousavi ebrahim ,mohammad reza almasian ,tagiof mohmmad ,hoveidi hassan
منبع avicenna journal of environmental health engineering - 2020 - دوره : 7 - شماره : 2 - صفحه:97 -108
چکیده    In this study, the magnetic 3-(trimethoxysilyl) propyl methacrylate (tmspma) – poly (4-vinylpyridine) (p4vp) was synthesized and characterized. removal of molybdenum (mo) from aqueous solutions using prepared material as nanosorbent was investigated. the magnetic p4vp was prepared by copolymerization of p4vp with tmspma. the prepared adsorbent was characterized by various techniques including the x-ray powder diffraction (xrd), scanning electron microscopy (sem), and fourier-transform infrared spectroscopy (ftir). the batch adsorption technique was applied and the effect of several important parameters such as ph of the aqueous solution, adsorbent dose, initial mo(vi) concentration, contact time, and temperature was evaluated. desorption behavior of mo(vi) and the effect of foreign ions (cd^2+, ca^2+, co^2+, fe^3+, ba^2+ and pt^4+) in real samples were also investigated. co (ii) and pt (iv) had a greater impact on the adsorption process than other foreign ions. the maximum capacity for mo(vi) adsorption on the prepared adsorbent was 4.87 mg/g, which was obtained at a temperature of 40°c with an initial concentration of 10 mg/l of mo(vi). the adsorption isotherms were best fitted with the weber van vliet isotherm model. the kinetic data were fitted well with the pseudo-second-order equation with a high correlation coefficient (r2 > 0.99). based on the negative standard gibbs free energy change (δg° < 0) and the positive standard enthalpy change (δh° > 0), it was found that the adsorption was an endothermic and a spontaneous process in nature.
کلیدواژه Molybdenum removal ,Batch adsorption ,3-(trimethoxysilyl) propyl methacrylate ,Poly (4-vinylpyridine) ,Magnetic nanosorbent
آدرس university of tehran, faculty of the environment, department of environmental management, Iran, atomic energy organization of iran (aeoi), nuclear fuel research school, nuclear science and technology research institute, Iran, atomic energy organization of iran (aeoi), nuclear fuel research school, nuclear science and technology research institute, Iran, university of tehran, school of chemical engineering, college of engineering, Iran, atomic energy organization of iran (aeoi), nuclear fuel research school, nuclear science and technology research institute, Iran, atomic energy organization of iran (aeoi), nuclear fuel research school, nuclear science and technology research institute, Iran, university of tehran, faculty of the environment, department of environmental management, Iran
 
     
   
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