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Applying Activated Carbon Derived from Coconut Shell Loaded by Silver Nanoparticles to Remove Methylene Blue in Aqueous Solution
Authors:Huu Tap Van  Thi Minh Phuong Nguyen  Vu Thi Thao  Xuan Hoa Vu  Tien Vinh Nguyen  Lan Huong Nguyen
Institution:1.Faculty of Resources and Environment,Thai Nguyen University of Sciences (TNUS),Thai Nguyen,Vietnam;2.Faculty of Environment and Chemical Engineering,Duy Tan University (DTU),Da Nang,Vietnam;3.Advanced Education Program Office,Thai Nguyen University of Agriculture and Forestry (TUAF),Thai Nguyen City,Vietnam;4.Faculty of Physics and Technology,Thai Nguyen University of Sciences (TNUS),Thai Nguyen City,Vietnam;5.Faculty of Engineering and IT,University of Technology Sydney (UTS),Sydney,Australia;6.Faculty of Environment – Natural Resources and Climate Change,Ho Chi Minh City University of Food Industry (HUFI),Ho Chi Minh City,Vietnam
Abstract:This study developed a new adsorbent, specifically activated carbon-loaded silver nanoparticles (AgNPs-AC) by coating the silver nanoparticles (AgNPs) onto activated carbon (AC). The obtained AgNPs-AC were characterized by scanning electron microscopy (SEM), energy-dispersive spectrometry (EDS), Fourier transform infrared spectroscopy (FTIR), and Brunauer-Emmett-Teller (BET). The ability of AgNPs-AC to remove methylene blue (MB) was evaluated using different experimental factors, these being pH solution, contact time, adsorbent dose, and initial MB concentration. Results indicated that the highest adsorption capacity of MB onto AgNPs-AC was obtained when the AC was loaded onto AgNPs at the impregnation ratio of 0.5% w/w for AC and AgNPs. The best conditions in which AgNPs-AC could remove MB were as follows: pH 10, contact time lasting 120 min, and adsorbent dose being 250 mg/25 mL solution. In this scenario, the maximum adsorption capacity of MB onto AgNPs-AC was 172.22 mg/g. The adsorption isothermal equilibrium was well described by the Langmuir, Freundlich and Sips models. The Sips equations had the highest correlation coefficient value (R2?=?0.935). The pseudo-first-order and pseudo-second-order kinetic models agree well with the dynamic behavior of the adsorption of dye MB on AgNPs-AC.
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