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Cationic Dye Biosorption by Salvinia minima: Equilibrium and Kinetics

机译:Salvinia minima对阳离子染料的生物吸附:平衡和动力学

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摘要

The aim of this work was to investigate the biosorption of a cationic dye (methylene blue (MB)) by Salvinia minima. Biomass was characterized using the point of zero charge and scanning electron microscopy. The effects of pH (2-10), biosorbent dose (1-6 g/L), initial MB concentration (49.14±1.03, 99.60±0.67, 148.91±2.00, 198.24±1.91, 243.74±2.32 mg/L), and time (20, 40, 60, 120, 180, 240, 300, 360 min) on MB biosorption and removal were evaluated. The MB biosorption kinetics were analyzed using pseudo-first-and pseudo-second-order kinetic models, as well as Elovich and intraparticle diffusion models, and Langmuir, Freundlich, Temkin, and Dubinin-Radushkevich isotherms were used to analyze the equilibrium biosorption. A positive effect of pH on MB biosorption and removal was observed when pH was increased from 2 to 4 (28.18±0.30 and 110±0.05 mg/g, 23.20±0.27 and 90.50±0.01%, respectively), while an increase in the biomass dose from 1 to 6 g/L reduced biosorbent efficiency from 157.30±2.59 to 38.23± 0.02 mg/g. The adsorption kinetic data fit the pseudo-second-order equation, suggesting that chemisorption was the rate-determining step during MB biosorption by S. minima biomass. Equilibrium biosorption was described by the Freundlich model, implying that MB multilayers form on the heterogeneous surface of the biomass. S. minima biomass can be used as a biosorbent for the removal and adsorption of cationic dyes from water or wastewater.
机译:这项工作的目的是调查最小的Salvinia对阳离子染料(亚甲基蓝(MB))的生物吸附。使用零电荷点和扫描电子显微镜对生物质进行了表征。 pH值(2-10),生物吸附剂量(1-6 g / L),初始MB浓度(49.14±1.03、99.60±0.67、148.91±2.00、198.24±1.91、243.74±2.32 mg / L)和评估了MB生物吸附和去除的时间(20、40、60、120、180、240、300、360分钟)。使用伪一级和伪二级动力学模型以及Elovich和粒子内扩散模型分析MB的生物吸附动力学,并使用Langmuir,Freundlich,Temkin和Dubinin-Radushkevich等温线分析平衡生物吸附。当pH从2增加到4(分别为28.18±0.30和110±0.05 mg / g,23.20±0.27和90.50±0.01%)时,观察到pH对MB生物吸附和去除具有积极作用。从1到6 g / L的剂量将生物吸附效率从157.30±2.59降低到38.23±0.02 mg / g。吸附动力学数据拟合拟二阶方程,表明化学吸附是微小链球菌生物质在MB生物吸附过程中的速率决定步骤。 Freundlich模型描述了平衡生物吸附,这表明MB多层膜形成在生物质的异质表面上。最小链霉菌生物质可用作从水或废水中去除和吸附阳离子染料的生物吸附剂。

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