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Evaluation of micro- and nano-carbon-based adsorbents for the removal of phenol from aqueous solutions
Authors:Hamza A Asmaly  Ihsanullah  Tawfik A Saleh  Alaadin A Bukhari  Tahar Laoui
Institution:1. KACST – Technology Innovation Centre on Carbon Capture and Sequestration (KACST-TIC on CCS), King Fahd University of Petroleum &2. Minerals, Dhahran, 31261, Saudi Arabia;3. Department of Chemical Engineering;4. King Fahd University of Petroleum &5. Minerals, Dhahran, Saudi Arabia;6. Chemistry Department, King Fahd University of Petroleum &7. Center for Environment &8. Water, Research Institute, King Fahd University of Petroleum &9. Department of Mechanical Engineering, King Fahd University of Petroleum &
Abstract:This work reports on the adsorption efficiency of two classes of adsorbents: nano-adsorbents including carbon nanotubes (CNTs) and carbon nanofibers (CNFs); and micro-adsorbents including activated carbon (AC) and fly ash (FA). The materials were characterized by thermogravimetric analysis, transmission electron microscopy, Brunauer–Emmett–Teller (BET) specific surface area, zeta potential, field emission scanning electron microscopy, and UV spectroscopy. The adsorption experimental conditions such as pH of the solution, agitation speed, contact time, initial concentration of phenol, and adsorbent dosage were optimized for their influence on the phenol. The removal efficiency of the studied adsorbents has the following order: AC > CNTs > FA > CNFs. The capacity obtained from Langmuir isotherm was found to be 1.348, 1.098, 1.007, and 0.842 mg/g of AC, CNTs, FA, and CNFs, respectively, at 2 hours of contact time, pH 7, an adsorbent dosage of 50 mg, and a speed of 150 rpm. The higher adsorption of phenol on AC can be attributed to its high surface area and its dispersion in water. The optimum values of these variables for maximum removal of phenol were also determined. The experimental data were fitted well to Langmuir than Freundlich isotherm models.
Keywords:phenol  carbon nanotubes  carbon nanofibers  activated carbon  fly ash
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