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Removal of phosphate and nitrate ions aqueous using strontium magnetic graphene oxide nanocomposite: Isotherms, kinetics, and thermodynamics studies

机译:用锶磁性氧化石墨烯纳米复合物去除水溶液中的磷酸根和硝酸根离子:等温线,动力学和热力学研究

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摘要

Magnetic Fe_3O_4 nanoparticle decorated graphene oxide (GO) was modified with strontium nanoparticles (MGO-Sr) and applied for enhanced removal of phosphate and nitrate ions from river and sewage water samples. The nanocomposite's features were investigated using Fourier transform-infrared spectrometry, field emission-scanning electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray diffraction. The effective parameters, adsorption efficiency, regeneration, and field application of MGO-Sr were also studied. Adsorption isotherm and kinetic models were applied for evaluation of experimental adsorption process. The data was in well comply with Langmuir isotherm and pseudo-second-order comparing with other models. Langmuir maximum adsorption capacity was obtained equal to 238.09 mg/g for phosphate and 357.14 mg/g for nitrate. Van't Hoff thermodynamic predicted an exothermic nature for adsorption process followed by a physisorption mechanism. The prepared nanocomposite provided a high-removal efficiency toward phosphate and nitrate ions in river and sewage water. Hence, it is applicable in water remediation process.
机译:用锶纳米颗粒(MGO-Sr)修饰磁性Fe_3O_4纳米颗粒修饰的氧化石墨烯(GO),并用于增强去除河流和污水样品中的磷酸根和硝酸根离子。使用傅里叶变换红外光谱,场发射扫描电子显微镜,能量色散X射线光谱和X射线衍射研究了纳米复合材料的特征。还研究了MGO-Sr的有效参数,吸附效率,再生和现场应用。吸附等温线和动力学模型用于评估实验吸附过程。与其他模型相比,数据完全符合Langmuir等温线和伪二阶。兰格缪尔的最大吸附容量等于磷酸盐238.09 mg / g和硝酸盐357.14 mg / g。范霍夫(Van't Hoff)热力学预测了吸附过程的放热性质,其后是物理吸附机制。制备的纳米复合材料对河流和污水中的磷酸根和硝酸根离子具有很高的去除效率。因此,它适用于水的修复过程。

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