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Trimellitated sugarcane bagasse: A versatile adsorbent for removal of cationic dyes from aqueous solution. Part I: Batch adsorption in a monocomponent system

机译:Timellitated Sugarcane Bagasse:一种多功能吸附剂,用于从水溶液中除去阳离子染料。 第一部分:单一组分系统中的批量吸附

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Trimellitated-sugarcane bagasse (STA) was used as an environmentally friendly adsorbent for removal of the basic dyes auramine-O (AO) and safranin-T (ST) from aqueous solutions at pH 4.5 and 7.0. Dye adsorption was evaluated as a function of STA dosage, agitation speed, solution pH, contact time, and initial dye concentration. Pseudo-first- and pseudo-second-order, Elovich, intraparticle diffusion, and Boyd models were used to model adsorption kinetics. Langmuir, Dubinin-Radushkevich, Redlich-Peterson, Sips, Hill-de Boer, and Fowler-Guggenheim models were used to model adsorption isotherms, while a Scatchard plot was used to evaluate the existence of different adsorption sites. Maximum adsorption capacities for removal of AO and ST were 1.005 and 0.638 mmol g(-1) at pH 4.5, and 1.734 and 1.230 mmol g(-1) at pH 7.0, respectively. Adsorption enthalpy changes obtained by isothermal titration calorimetry (ITC) ranged from -21.07 +/- 0.25 to -7.19 +/- 0.05 kJ mol(-1), indicating that both dyes interacted with STA by physisorption. Dye desorption efficiencies ranged from 41 to 51%, and re-adsorption efficiencies ranged from 66 to 87%, showing that STA can be reused in new adsorption cycles. ITC data combined with isotherm studies allowed clarification of adsorption interactions. (C) 2018 Elsevier Inc. All rights reserved.
机译:TiMellitated-Sugarcane Bagasse(STA)用作环保吸附剂,用于从pH 4.5和7.0的水溶液中除去基本染料Auramine-O(AO)和Safranin-T(ST)。评价染料吸附作为STA剂量,搅拌速度,溶液pH,接触时间和初始染料浓度的函数。伪首次和伪二阶,ELOVICH,替代力扩散和BOYD模型用于模拟吸附动力学。 Langmuir,Dubinin-Radushkevich,Redlich-Peterson,Sips,Hill-de Boer和Fowler-Guggenheim模型用于模拟吸附等温线,而Scatchard Plot用于评估不同吸附位点的存在。在pH7.0的pH 4.5和1.734和1.734和1.230mmol g(-1)的去除是1.005和0.638mmol G(-1)的最大吸附能力。通过等温滴定热量测定法(ITC)获得的吸附焓变化范围为-21.07 +/- 0.25至-7.19 +/- 0.05 kJ摩尔(-1),表明两种染料通过物理吸附与STA相互作用。染料解吸效率范围为41%至51%,再吸附效率范围为66〜87%,表明STA可以在新的吸附循环中重复使用。 ITC数据与等温线相结合,允许澄清吸附相互作用。 (c)2018 Elsevier Inc.保留所有权利。

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