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Adsorptive removal of cadmium from aqueous solutions using NiFe 2O 4/hydroxyapatite/graphene quantum dots as a novel nano-adsorbent

机译:NiFe 2 O 4 /羟基磷灰石/石墨烯量子点作为新型纳米吸附剂从水溶液中吸附去除镉

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In this study, NiFe~(2)O~(4)/hydroxyapatite/graphene quantum dots (NiFe~(2)O~(4)/HAP/GQDs) as nano-adsorbent to remove cadmium (Cd_(2+)) from aqueous solution were synthesized. This nano-adsorbent was depicted by some techniques such as X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and Fourier transform infrared spectroscopy (FT-IR). Adsorption studies were conducted to investigate the effect of contact time, pH, adsorbent dosage and initial cadmium ion concentration on removal efficiency. To determine the most fitting kinetic model, the suitability of pseudo-first-order and pseudo-second-order models was compared. The adsorption isotherm was described well by the Langmuir isotherm and maximum equilibrium uptake capacity ( q ~(e)) was 344.83?mg?g_(?1). Studies revealed that adsorption process is not a physical process and formation of complexes (bidentate and monodentate complexes) between—COO_(?)and—OH functional groups on the surface of NiFe~(2)O~(4)/HAP/GQDs and Cd_(2+)ions may occur. In addition, the adsorbent can simply be removed by an ordinary filtration process.
机译:本研究以NiFe〜(2)O〜(4)/羟基磷灰石/石墨烯量子点(NiFe〜(2)O〜(4)/ HAP / GQDs)为纳米吸附剂去除镉(Cd_(2+))。由水溶液合成。通过某些技术(例如X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM)和傅里叶变换红外光谱(FT-IR))描述了这种纳米吸附剂。进行吸附研究以研究接触时间,pH,吸附剂剂量和初始镉离子浓度对去除效率的影响。为了确定最合适的动力学模型,比较了伪一阶模型和伪二阶模型的适用性。 Langmuir等温线很好地描述了吸附等温线,最大平衡吸收容量(q〜(e))为344.83?mg?g _(?1)。研究表明,吸附过程不是物理过程,而是NiFe〜(2)O〜(4)/ HAP / GQDs表面上-COO _(?)-OH官能团之间的配合物(二齿和单齿配合物)的形成。可能会发生Cd_(2+)离子。另外,吸附剂可以简单地通过普通的过滤过程除去。

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