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首页> 外文期刊>Scientific reports. >Multiple nitrogen functionalized magnetic nanoparticles as an efficient adsorbent: synthesis, kinetics, isotherm and thermodynamic studies for the removal of rhodamine B from aqueous solution
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Multiple nitrogen functionalized magnetic nanoparticles as an efficient adsorbent: synthesis, kinetics, isotherm and thermodynamic studies for the removal of rhodamine B from aqueous solution

机译:多氮官能化磁性纳米粒子作为高效吸附剂:合成,动力学,等温线和热力学研究,用于从水溶液中除去罗丹明B.

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The continuous demand for clean and affordable water needed for the survival of man is now a major challenge globally. Therefore, the treatment of wastewater generated from printing, textile and dyeing industries containing soluble dyes like rhodamine B (Rh-B) is of utmost important. This study investigates the efficiency of new multifunctionalized superparamagnetic nanoparticles (MNP-Tppy) for the removal of cationic Rh-B from aqueous solution. To afford MNP-Tppy, the surface of MNP was covalently functionalized with terpyridine ligand to enable an anionic charge on the adsorbent. The results of characterization including Brunauer-Emmett-Teller (BET) analysis, thermal gravimetric analysis (TGA), vibrating sample magnetometer (VSM), scanning electron microscope (SEM) and fourier transform infra-red spectroscopy (FTIR) indicate that this superparamagnetic nanoparticle functionalized with multiple nitrogen atoms was successfully synthesized. Adsorption experiments involving the effect of pH, time, temperature, adsorbent dose and adsorbate concentration show that the maximum adsorption of Rh-B using MNP-Tppy was observed at pH 9 and removal was observed to increase as solution pH increases. Similarly, time variation shows that adsorbate removal increases as adsorption time increases until the removal attained equilibrium at 15?min. Kinetic studies conducted among four kinetic models using the data obtained from effect of time indicate that the adsorption process can best be described by the pseudo-second order model. Isotherm studies conducted at three different temperatures revealed that Langmuir isotherm model fitted well for the equilibrium data with qsubm/sub value of 113.64?mg?gsup-1/sup and thermodynamic studies showed that the adsorption process involving the removal of Rh-B from aqueous solution by MNP-Tppy is spontaneous, endothermic and realistic in nature. Lastly, Reusability experiments indicate that MNP-Tppy can be regenerated and re-used.
机译:对于人类生存所需的清洁和实惠的水需求的不断需求现在是全球的主要挑战。因此,含有罗丹明B(RH-B)等可溶性染料的印刷,纺织和染色行业产生的废水的处理是最重要的。本研究研究了新型多功能超顺磁性纳米颗粒(MNP-TPPY)的效率从水溶液中除去阳离子RH-B.为了提供MNP-TPPY,MNP的表面与Terpyridine配体共价官能化,以使吸附剂上的阴离子电荷能够。表征包括Brunauer-Emmett-Teller(Bet)分析,热重分析(TGA),振动样品仪(VSM),扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)表明该超顺磁性纳米粒子用多个氮原子官能化被成功地合成。吸附实验涉及pH,时间,温度,吸附剂剂量和吸附浓度的影响,表明,在pH 9下观察使用MNP-TPPY的最大吸附使用MNP-TPPY,随着溶液pH增加,观察到去除以增加。类似地,时间变异表明,吸附剂去除随着吸附时间的增加而增加,直到去除在15≤min的去除率之前。使用从时间效果获得的数据的四个动力学模型中进行动力学研究表明可以最好地描述吸附过程是由伪二次阶模型描述的。在三种不同温度下进行的等温性研究表明,Langmuir等温模型适用于Q M 值为113.64Ω·mg?g -1 和热力学研究表明涉及通过MNP-TPPY从水溶液中除去RH-B的吸附过程是自然的,吸热和现实的。最后,可重用性实验表明可以再生和重复使用MNP-TPPy。

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