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Magnetite-hematite nanoparticles prepared by green methods for heavy metal ions removal from water

机译:通过绿色方法制备的磁铁矿-赤铁矿纳米颗粒,用于去除水中的重金属离子

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摘要

Mixed magnetite-hematite nanoparticles were synthesized via different routes such as, coprecipitation in air and N_2 atmosphere, citrate-nitrate, glycine-nitrate and microwave-assisted citrate methods. The prepared samples were characterized by X-ray diffraction (XRD), high resolution transmission electron microscope (HRTEM), BET measurements and magnetic hysteresis. XRD data showed the formation of magnetite-hematite mixture with different compositions according to the synthesis method. The particle size was in the range of 4-52 nm for all the prepared samples. From HRTEM micrographs, it was found that, the synthesis method affects the moropholgy of the prepared samples in terms of crystailinity and porosity. The magnetite-hematite mixture was employed as a sorbent material for removal of some heavy metal ions from water such as lead(Ⅱ), cadmium(Ⅱ) and chromium(Ⅲ). The effects of pH value and the contact time on the adsorption process were studied and optimized in order to obtain the highest possible adsorption efficiency of the magnetite-hematite mixture. The effect of the synthesis method of the magnetite-hematite mixture on the adsorption process was also investigated. It was found that samples prepared by the coprecipitation method had better adsorption efficiency than those prepared by other combustion methods.
机译:混合磁铁矿-赤铁矿纳米粒子是通过不同的途径合成的,例如在空气和N_2气氛中共沉淀,柠檬酸-硝酸盐,甘氨酸-硝酸盐和微波辅助柠檬酸盐方法。通过X射线衍射(XRD),高分辨率透射电子显微镜(HRTEM),BET测量和磁滞对样品进行表征。 XRD数据表明,根据合成方法,形成了具有不同组成的磁铁矿-赤铁矿混合物。对于所有制备的样品,粒径在4-52nm的范围内。从HRTEM显微照片中发现,合成方法在结晶度和孔隙率方面影响所制备样品的形态。以磁铁矿-赤铁矿混合物为吸附剂,从水中去除了铅(Ⅱ),镉(Ⅱ),铬(Ⅲ)等重金属离子。研究并优化了pH值和接触时间对吸附过程的影响,以获得磁铁矿-赤铁矿混合物的最高吸附效率。还研究了磁铁矿-赤铁矿混合物的合成方法对吸附过程的影响。发现通过共沉淀方法制备的样品具有比通过其他燃烧方法制备的样品更好的吸附效率。

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