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用于有效降解有机染料的 MgO 纳米粒子的简易合成。

Facile synthesis of MgO nanoparticles for effective degradation of organic dyes.

机构信息

Department of Physics, Amity School of Applied Sciences, Amity University Haryana, Gurugram, Haryana, 122413, India.

Department of Physics and Astrophysics, University of Delhi, Delhi, 110007, India.

出版信息

Environ Sci Pollut Res Int. 2023 Jun;30(28):71439-71453. doi: 10.1007/s11356-022-21925-0. Epub 2022 Jul 12.

Abstract

In the present study, we have synthesized magnesium oxide (MgO) nanoparticles by a facile and cost-effective chemical co-precipitation method with annealing at three different temperatures (350°C, 450°C, and 550°C) for the removal of various organic dyes. X-ray diffraction studies revealed that the prepared samples are having sizes below 20 nm and with pure phase. Phase transformation of hexagonal Mg(OH) nanoparticles to discretely cubical structured MgO nanoparticles has been observed with increasing the annealing temperatures which is also supported by the TGA/DSC analysis. Mg-O stretching vibration peaks in the range of 400-800 cm obtained by FTIR spectroscopy support the formation of MgO nanoparticles. The observed Raman active bands for the annealed sample at 550°C confirm the formation of the nanocrystalline phase since these bands are typically absent in the bulk MgO as well as in Mg(OH). The surface morphology of the as-prepared Mg(OH) are aggregated nano-petals which changed into spherical shape for MgO annealed at 550°C as studied by field emission scanning electron microscopy (FESEM). The specific surface area of MgO nanoparticles annealed at 550°C using BET isotherms is found to be 37.487 mg. The optical bandgaps of the prepared samples are found to be in the range of 4.4 to 5.1 eV using the Tauc plot. Adsorption studies with a variation of initial brilliant green dye concentration and contact time are carried out along with the studies of adsorption kinetic and isotherm models. Langmuir isotherm model is the most suitable model on the basis of correlation constant with maximum BG dye adsorption capacity onto MgO@550°C which is found to be 63.9 mg/g. The adsorption kinetics followed the pseudo-second-order model. Also prepared pristine MgO nanoparticles showed significant photocatalytic performance for the degradation of various dyes; brilliant green (BG: 88.91%), methylene blue (MB: 79.05%), crystal violet (CV: 76.49%), methyl orange (MO: 68.62%), and brilliant blue (BB: 40.44%) under visible irradiation. MgO nanoparticles could be a promising adsorbent and photocatalyst that may be employed in the treatment of effluents from industries.

摘要

在本研究中,我们通过简便且经济有效的化学共沉淀法合成了氧化镁(MgO)纳米粒子,并在三种不同温度(350°C、450°C 和 550°C)下进行退火处理,以去除各种有机染料。X 射线衍射研究表明,所制备的样品尺寸小于 20nm,且具有纯相。随着退火温度的升高,观察到六方 Mg(OH)纳米粒子向离散的立方结构 MgO 纳米粒子的相转变,这也得到了热重分析/差示扫描量热法(TGA/DSC)的支持。通过傅里叶变换红外光谱(FTIR)获得的 400-800cm 范围内的 Mg-O 伸缩振动峰支持 MgO 纳米粒子的形成。在 550°C 下退火的样品的观察到的拉曼活性带证实了纳米晶相的形成,因为这些带在块状 MgO 以及 Mg(OH)中通常不存在。用场发射扫描电子显微镜(FESEM)研究发现,未退火的 Mg(OH)的表面形态为聚集的纳米花瓣,而在 550°C 下退火的 MgO 则变为球形。使用 BET 等温线测量,在 550°C 下退火的 MgO 纳米粒子的比表面积为 37.487mg。使用 Tauc 图发现,所制备的样品的光学带隙在 4.4 至 5.1eV 范围内。进行了初始亮绿染料浓度和接触时间变化的吸附研究,并进行了吸附动力学和等温线模型的研究。基于相关常数,Langmuir 等温模型是最适合的模型,MgO@550°C 对亮绿染料的最大吸附容量为 63.9mg/g。吸附动力学遵循准二级模型。此外,制备的原始 MgO 纳米粒子在可见光照射下对各种染料的降解表现出显著的光催化性能;亮绿(BG:88.91%)、亚甲基蓝(MB:79.05%)、结晶紫(CV:76.49%)、甲基橙(MO:68.62%)和亮蓝(BB:40.44%)。MgO 纳米粒子可能是一种有前途的吸附剂和光催化剂,可用于处理工业废水。

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