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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Removal of a low-molecular basic dye (Azure Blue) from aqueous solutions by a native biomass of a newly isolated Cladosporium sp.: Kinetics, equilibrium and biosorption simulation
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Removal of a low-molecular basic dye (Azure Blue) from aqueous solutions by a native biomass of a newly isolated Cladosporium sp.: Kinetics, equilibrium and biosorption simulation

机译:通过新分离的Cladosporium sp。的天然生物质从水溶液中去除低分子碱性染料(天蓝色):动力学,平衡和生物吸附模拟

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摘要

The biosorption of Azure Blue from aqueous solution was investigated for the first time using a new isolated Cladosporium Ch2-2. The biosorption studies were carried out under various parameters, such as initial dye concentration, pH, biosorbent dosage and different cations. High dye removal yield was achieved at pH 8, which was consistent with the pH of most of the wastewater. The maximum biosorption occurred at the pH value of 8.0 for Azure Blue. Mg ~(2+) and EDTA had a positive effect on dye biosorption process. Equilibrium time was attained at 60min for the dye concentrations of 30-100mg/L. The adsorbent dosage of 0.1g in 20ml was found to be optimum for increased dye uptake. The Langmuir isotherm model better described the process of dye uptake than the Freundlich model. The maximum monolayer biosorption capacity of the biosorbent was 51.4mg/g. The pseudo-second order kinetic model adequately described the kinetic data. Finally the proposed biosorbent was successfully used for the decolorization of Azure Blue in simulated wastewater conditions. The biosorption results suggested that this environmentally friendly and efficient biosorbent may be useful for the removal of basic dyes from aqueous solution.
机译:使用新的分离的Cladosporium Ch2-2,首次研究了Azure Blue从水溶液中的生物吸附。生物吸附研究是在各种参数下进行的,例如初始染料浓度,pH,生物吸附剂量和不同的阳离子。在8的pH值下,染料去除率很高,这与大多数废水的pH值一致。对于天蓝色,最大的生物吸附发生在pH值为8.0时。 Mg〜(2+)和EDTA对染料的生物吸附过程具有积极的影响。染料浓度为30-100mg / L时,平衡时间为60分钟。发现在20ml中0.1g的吸附剂剂量对于增加染料吸收是最佳的。与Freundlich模型相比,Langmuir等温模型更好地描述了染料的吸收过程。该生物吸附剂的最大单层生物吸附容量为51.4mg / g。拟二阶动力学模型充分描述了动力学数据。最后,所提出的生物吸附剂已成功用于模拟废水条件下天蓝色的脱色。生物吸附结果表明,这种对环境友好且有效的生物吸附剂可用于从水溶液中去除碱性染料。

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