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Data of characterization and adsorption of fluoride from aqueous solution by using modified Azadirachta indica bark

机译:改性印za树皮从水溶液中表征和吸附氟的数据

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摘要

This data was decisive on the adsorption of fluoride by microwave assisted carbonized Azadirachta indica bark (MACAIB) adsorbent material from aqueous solution. Azadirachta indica bark is a plant-based effortlessly available item which is transformed into a carbonaceous adsorbent material and utilized for the removal fluoride from aqueous solution. Characterization of the MACAIB adsorbent material demonstrated that it was porous and extremely effective in the removal of fluoride. The operating parameters such as pH, adsorbent dose, agitation speed, initial fluoride concentration, contact time and temperature were efficient on the adsorption ability of fluoride. The maximum removal efficiency of fluoride with an initial fluoride concentration 2 mg/L was found to be 83.50%. Experimental adsorption isotherm equilibrium data furnished was the best with Langmuir adsorption isotherm model, showing monolayer adsorption on a homogenous surface (most extreme monolayer adsorption capacity was 0.923 mg/g at 303 K). The adsorption kinetics experiment was followed by pseudo second-order kinetic model that indicated chemisorptions process. Intra-particle diffusion mechanism was not the sole rate-controlling factor. Thermodynamic analysis proposes that removal of fluoride from aqueous solution by MACAIB material was an exothermic and spontaneous process. Characterization of the MACAIB carbon material before and after adsorption through FTIR, SEM, EDX and XRD techniques confirmed the fluoride adsorption on the adsorbent surface. It could be accomplished that MACAIB is an effective adsorbent material for successful removal of fluoride from aqueous solution.
机译:该数据对于微波辅助碳化的印za(Azadirachta indica)树皮(MACAIB)吸附材料从水溶液中吸附氟化物具有决定性作用。印za(Azadirachta indica)树皮是一种基于植物的不费力的物品,可以将其转化为碳质吸附材料,并用于从水溶液中去除氟化物。 MACAIB吸附剂材料的表征表明,它是多孔的,在去除氟化物方面极为有效。 pH,吸附剂量,搅拌速度,初始氟化物浓度,接触时间和温度等操作参数对氟化物的吸附能力均有效。初始氟化物浓度为2 mg / L时,最大除氟效率为83.50%。用Langmuir吸附等温线模型提供的实验吸附等温线平衡数据是最好的,显示出在均匀表面上的单层吸附(在303 K时,最极端的单层吸附容量为0.923 mg / g)。吸附动力学实验之后是伪二级动力学模型,该模型表明了化学吸附过程。粒子内扩散机制不是唯一的速率控制因素。热力学分析表明,用MACAIB材料从水溶液中除去氟化物是放热和自发的过程。通过FTIR,SEM,EDX和XRD技术对MACAIB碳材料进行吸附前后的表征证实了氟化物在吸附剂表面的吸附。可以实现的是,MACAIB是一种有效地从水溶液中成功除去氟化物的有效吸附材料。

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