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Preparation of activated carbons from bio-waste: effect of surface functional groups on methylene blue adsorption

机译:从生物废物中制备活性炭:表面官能团对亚甲基蓝吸附的影响

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摘要

Low-cost activated carbons were prepared by physical activation of bio-waste rice husk. Various physicochemical characterization techniques confirmed the high surface area and oxygen functional groups on the surface. It has been confirmed that activation under humidified carbon dioxide followed by ozonation resulted the highest number of surface functional groups on activated carbon. Nitrogen adsorption–desorption isotherms confirmed the highest surface area (417 m2/g), whereas elemental analysis ensured the increasing oxygen content after activation. Temperature-programmed decomposition quantified these surface oxygen functional groups, and it was concluded that ozonation increased both acidic and basic groups. The developed activated carbons were tested during the removal of a model dye methylene blue from aqueous medium in the concentration range 10–30 mg/L. Typical results indicated that adsorption studies are consistent with the Langmuir isotherm model with maximum monolayer adsorption capacity of 28.5 mg/g, and the dimensionless separation factor (RL) values between 0.006 and 0.030 confirmed a favorable adsorption. Methylene blue adsorption followed pseudo-second order kinetics indicating MB was adsorbed onto the surface via chemical interaction.
机译:通过生物废稻壳的物理活化制备了低成本的活性炭。各种物理化学表征技术证实了表面的高表面积和氧官能团。已经证实,在湿润的二氧化碳下进行活化,然后进行臭氧处理,导致活性炭上表面官能团的数量最多。氮吸附-解吸等温线确认最大表面积(417 m2 / g),而元素分析确保活化后氧含量增加。程序升温分解可量化这些表面氧官能团,并得出结论,臭氧化作用可同时增加酸性和碱性基团。在从水介质中去除浓度为10–30 mg / L的模型染料亚甲蓝期间,测试了所开发的活性炭。典型结果表明,吸附研究与Langmuir等温模型一致,最大单层吸附容量为28.5 mg / g,并且无量纲分离因子(RL)值在0.006至0.030之间,证实了良好的吸附。亚甲基蓝的吸附遵循拟二级动力学,表明MB通过化学相互作用吸附在表面上。

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