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首页> 外文期刊>Environmental Science and Pollution Research >Preparation of polyglycerol mediated superparamagnetic graphene oxide nanocomposite and evaluation of its adsorption properties on tetracycline
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Preparation of polyglycerol mediated superparamagnetic graphene oxide nanocomposite and evaluation of its adsorption properties on tetracycline

机译:聚甘油介导的超顺磁性石墨烯氧化物纳米复合材料的制备及其对四环素吸附性能的评价

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摘要

In this paper, we synthesized a polyglycerol(PG)-mediated superparamagnetic graphene oxide nanocomposite called MGON, consisting of PG-modified superparamagnetic iron oxide nanoparticles (SPION) covalently bonded to PG-functionalized graphene oxide (GO). MGON exhibits better dispersibility and colloidal stability in aqueous solution than the magnetic graphene oxide reported in the literature. The physicochemical properties of MGON were analyzed by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), transmission electron microscopy (TEM), vibrating sample magnetometer (VSM), and UV-vis spectroscopy. Applied to the adsorption of tetracycline (TC) in aqueous solution as an adsorbent, the MGON showed excellent adsorption performance with the maximum adsorption capacity of 684.93 mg/g at 298 K. Adsorption kinetics and isotherm results indicate that the adsorption process conforms to the pseudo-second-order kinetics and Langmuir isotherm models. Adsorption thermodynamics has confirmed that the adsorption process of TC on MGON is spontaneous and endothermic. With the increase of temperature, the adsorption capacity of MGON increases continuously, and the adsorption capacity of MGON is the largest when the pH value is 7. Furthermore, the pi-pi and cation-pi interaction, amidation reaction, and hydrogen bonding can be used to explain the adsorption mechanism of TC on MGON. Desorption and regeneration experiments showed that MGON still had 67.65% regenerative performance after five cycles. Hence, MGON is a promising adsorbent in the removal of tetracycline from wastewater.
机译:在本文中,我们合成了一种称为MGON的聚甘油(PG)介导的超顺磁性石墨烯氧化物纳米复合材料,由共价键合至PG官能化的石墨烯(GO)的PG改性的超顺磁性氧化物纳米粒子(SpiON)。 MGON在水溶液中表现出比文献中报道的磁性石墨烯的水溶液更好的分散性和胶体稳定性。通过X射线衍射(XRD),傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS),透射电子显微镜(TEM),振动样品磁力计(VSM)和UV-分析MGON的物理化学性质。可见光谱。在水溶液中施加到水溶液的吸附,MGON显示出优异的吸附性能,最大吸附能力为684.93mg / g,在298k中。吸附动力学和等温性结果表明吸附过程符合伪 - 排序动力学和Langmuir等温模型。吸附热力学已经证实,MGON上TC的吸附过程是自发和吸热的。随着温度的增加,MGON的吸附容量连续增加,MGON的吸附容量是当pH值为7时最大的。此外,PI-PI和阳离子-PI相互作用,酰胺化反应和氢键可以是最大的用于解释TC对MGON的吸附机制。解吸和再生实验表明,在五个循环后,MGON仍有67.65%的再生性能。因此,MGON是在从废水中除去四环素的有希望的吸附剂。

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