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Mesoporous Iron-Manganese Magnetic Bimetal Oxide for Efficient Removal of Cr(VI) from Synthetic Aqueous Solution

机译:中孔铁 - 锰磁性二金属氧化物,用于从合成水溶液中有效地去除Cr(VI)

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A facile co-precipitation method was established for synthesis of mesoporous iron-manganese magnetic bimetal oxide (MIMO) and its adsorption property was studied for removal of toxic metal ion hexavalent chromium from aqueous solution. XRD pattern of MIMO confirms the existence of Fe_2O_3 and Mn_3O_4 particle, out of which Mn_3O_4 is ferrimagnetic in nature. Synthesized MIMO has shown high saturation magnetization (23.08 emu/g), high BET surface area (178.27 m~2/g) and high pore volume (0.484 cm~3/g), which makes it a potential adsorbent. Adsorption process followed second order kinetic and Langmuir isotherm model. Involvement of intra-particle diffusion is also confirmed from kinetic data, which can be attributed to the mesoporous nature of the MIMO. Cr(VI) adsorption shows high pH dependency and maximum adsorption capacity of 116.25 mg/g is reported at pH 2.0. Electrostatic attraction between anionic chromium species and protonated MIMO surface is the predominant mechanism in this adsorption process.
机译:建立了用于合成介孔铁 - 锰磁性二金属氧化物(MIMO)的体内共沉淀法,并研究了其吸附性,从水溶液中除去有毒金属离子六价铬。 MIMO的XRD图案证实了FE_2O_3和MN_3O_4粒子的存在,其中MN_3O_4是FERIMAGγ的性质。合成的MIMO显示了高饱和磁化强度(23.08 emu / g),高下注表面积(178.27m〜2 / g)和高孔体积(0.484cm〜3 / g),这使其成为潜在的吸附剂。吸附过程跟踪了二阶动力学和Langmuir等温模型。粒子内扩散的参与也来自动力学数据,其可归因于MIMO的介孔性质。 Cr(VI)吸附显示,在pH 2.0时报道高pH依赖性和116.25mg / g的最大吸附容量。阴离子铬物质和质子化MIMO表面之间的静电吸引是该吸附过程中的主要机理。

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