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Removal of a reactive textile azo dye by dolomitic solids: kinetic, equilibrium, thermodynamic, and FTIR studies

机译:白云母固体去除活性纺织偶氮染料的动力学,平衡,热力学和FTIR研究

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Algerian dolomite was treated at different temperatures in the 600-1000 degrees C range and characterized by XRD and SEM. The obtained samples, named dolomitic solids, were used in the removal of Reactive Black 5 (RB5) from aqueous solutions. A literature survey shows that the data about the dye adsorption by dolomites are almost non-existent. Kinetic data, equilibrium isotherms, thermodynamic parameters, pH influence, and FTIR study were considered. The kinetic mechanism is enough complex, involving different models such as those of pseudo-second-order, intraparticle diffusion, and Elovich. For all dolomitic solids, the capacity in RB5, at equilibrium, strongly increases with increasing adsorption temperature. The affinity sequence is D900 (dolomite treated at 900 degrees C)>D800>D1000>D600>raw dolomite. Knowing that D900 adsorbs 125.9mgg(-1), it appears very effective for removing reactive dyes from wastewaters. The isotherms are found to be overall well represented by the Redlich-Peterson equation. The fact that maximum adsorption occurs at isoelectric point emphasizes the prevalence of the nonelectrostatic interaction. A close agreement exists between the evolution of kinetic, equilibrium, and thermodynamic parameters, suggesting chemisorption. The process reflects for D800, D900, and D1000 a weak chemical interaction via a mechanism of inner-sphere complexation. The comprehension of the organic compound-dolomitic solid interactions constitutes a fundamental aspect for developing the application of these materials in the field of wastewater treatment.
机译:阿尔及利亚白云石在600-1000摄氏度范围内的不同温度下进行了处理,并通过XRD和SEM进行了表征。获得的样品(称为白云质固体)用于从水溶液中去除活性黑5(RB5)。文献调查表明,几乎没有关于白云石吸附染料的数据。考虑了动力学数据,平衡等温线,热力学参数,pH影响和FTIR研究。动力学机制非常复杂,涉及不同的模型,例如伪二级,粒子内扩散和Elovich模型。对于所有的白云质固体,平衡态的RB5容量会随着吸附温度的升高而大大增加。亲和力顺序为D900(在900摄氏度下处理的白云石)> D800> D1000> D600>原始白云石。知道D900吸附125.9mgg(-1),对于从废水中去除活性染料似乎非常有效。发现等温线总体上可以由Redlich-Peterson方程很好地表示。最大吸附发生在等电点这一事实强调了非静电相互作用的普遍性。动力学参数,平衡参数和热力学参数之间存在密切的一致性,表明化学吸附。对于D800,D900和D1000,该过程通过内球络合机制反映出弱的化学相互作用。对有机化合物-白云性固体相互作用的理解构成了开发这些材料在废水处理领域中应用的基本方面。

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