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Synthesis of nano-octahedral MgO via a solvothermal-solid-decomposition method for the removal of methyl orange from aqueous solutions

机译:通过溶液 - 固体分解法合成纳米八面体MgO,从水溶液中除去甲基甲基

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Nano magnesium oxide has wide applications, and MgO with (111) facets has wider potential applications than MgO with (100) facets ( e.g. , in catalysis and adsorption). However, nano MgO with (111) polar faces has not been studied throughly, so the preparation of nano-octahedral MgO (N-O-MgO) with eight exposed (111) facets remains a great challenge. Herein, we successfully synthesised N-O-MgO via an effective solvothermal-solid-decomposition method and studied its adsorption performance. The obtained N-O-MgO showed excellent performance (229.36 mg g ~(?1) ) for methyl orange (MO). The adsorption follows the pseudo-second-order kinetic equation and the Langmuir isotherm model. The dimensionless parameter R _(L) (0.042) and Gibbs free energy Δ G (?6.538 kJ mol ~(?1) ) revealed that the adsorption of MO on N-O-MgO was a spontaneous and feasible process. The adsorption of MO and methyl blue (MB) on N-O-MgO were studied to determine the adsorption sites. Based on these experiments and analysis, it was determined that the adsorption sites were magnesium ions and the adsorption mechanism was proposed to describe the adsorption process.
机译:纳米氧化镁具有宽的应用,并且MgO具有(111)个小平面的潜在应用而不是MgO,其中(100)刻面(例如,在催化和吸附中)。然而,纳米MgO与(111)极面尚未通过,因此纳米八面体MgO(N-O-MgO)的制备八个暴露(111)个小平面仍然是一个巨大的挑战。这里,我们通过有效的溶剂热固体分解方法成功地合成了N-O-MgO,并研究了其吸附性能。获得的N-O-MgO表现出优异的性能(229.36mg g〜(β1)),用于甲基橙(Mo)。吸附遵循伪二阶动力学方程和Langmuir等温模型。无量纲参数R _(L)(0.042)和Gibbs自由能δg(α.6.538kjmol〜(α1))显示Mo对N-O-MgO上的吸附是自发性和可行的方法。研究了Mo和甲基蓝(Mb)对N-O-MgO的吸附以确定吸附位点。基于这些实验和分析,确定吸附位点是镁离子,提出吸附机理来描述吸附过程。

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