Department of Chemical Engineering, School of Technology, Pandit Deendayal Petroleum University, Raisan, Gandhinagar, Gujarat, 382007, India.
Graphene & Advanced 2D Materials Research Group (GAMRG), School of Science and Technology, Sunway University, Subang Jaya, Selangor, Malaysia.
Environ Sci Pollut Res Int. 2020 Jun;27(17):20606-20620. doi: 10.1007/s11356-019-05948-8. Epub 2019 Jul 31.
A novel nanoparticle (NPs) iron oxyhydroxide modified with rice husk (RH + FeOOH) was synthesized with wet chemical method. Batch study was performed to investigate fluoride removal and adsorption capacity. The RH + FeOOH NPs were characterized by using Fourier transform infrared spectroscopy, X-ray powder diffraction, Brunauer-Emmett-Teller, scanning electron microscope with energy dispersion, transmission electron microscope, and particle size analyzer. By varying parameters, batch adsorption with adsorption capacity was performed such as contact time, stirring rate, adsorbent dosage, temperature, initial concentration, and pH. The BET surface area and the pore volume of the FeOOH and RH + FeOOH were found to be 157 m g, 195 m g and 0.136 m g, 0.224 m g. Based on kinetic study, pseudo-second-order was followed by regression coefficient (R) 0.99. Langmuir isotherm model showed the best adsorption capacity of 26 mg g. Moreover, the RH + FeOOH showed best affinity towards fluoride removal and may act as an excellent adsorbent for fluoride treatment from aqueous solution. Synthesis and Fluoride Adsorption Mechanism of Iron Oxyhydroxide Modified with rice husk.
采用湿化学法合成了一种新型纳米颗粒(NPs)-稻壳修饰的氧化铁(RH + FeOOH)。通过批处理研究考察了氟的去除和吸附能力。采用傅里叶变换红外光谱、X 射线粉末衍射、BET、扫描电子显微镜能量色散、透射电子显微镜和粒度分析仪对 RH + FeOOH NPs 进行了表征。通过改变参数,进行了批处理吸附实验,考察了吸附容量与接触时间、搅拌速度、吸附剂用量、温度、初始浓度和 pH 的关系。发现 FeOOH 和 RH + FeOOH 的 BET 表面积和孔体积分别为 157 m g、195 m g 和 0.136 m g、0.224 m g。基于动力学研究,准二级动力学模型拟合度较好(R 为 0.99)。Langmuir 等温吸附模型表明其最大吸附容量为 26 mg g。此外,RH + FeOOH 对氟的去除具有最佳亲和力,可能是水溶液中氟处理的一种优良吸附剂。稻壳修饰氧化铁的合成及氟吸附机理。