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ADSORPTION OF DYES USING PEAT: EQUILIBRIUM AND KINETIC STUDIES

机译:泥炭对染料的吸附:平衡和动力学研究

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In recent years, adsorption has been accepted as one of the most appropriate processes for decolorization of wastewaters. This paper presents experimental results on application of peat for removal of structurally diverse dyes (azo, oxazine, triphenylmethane, thiazine and others) with emphasis on relevant factors such as the adsorbate-adsorbent chemical properties and chemical interaction as well as adsorption conditions. The equilibrium experimental results were fitted to Langmuir and Freundlich isotherms to obtain the characteristic parameters of each model. According to the evaluation using the Langmuir equation, the maximum sorption capacity of basic dyes at 22℃ was 667 (mg g~(-1)) for Basic Blue 24, 526 (mg g~(-1) for Basic Green 4 and 714 (mg g~(-1)) for Basic Violet 4. On the other hand for Acid Black 1 it was only 25 (mg g~(-1)). Batch kinetics studies were undertaken and the data evaluated in compliance with chemical sorption mechanisms. For all of the systems studied the pseudo-second order model provided the best correlation of the kinetic experimental data. A film-pore double resistance diffusion model for mass transfer has also been used in this study to determine the effective diffusivity, D_(eff), for the adsorption of basic dyes in to peat.
机译:近年来,吸附已被认为是使废水脱色的最合适方法之一。本文介绍了利用泥炭去除结构多样的染料(偶氮,恶嗪,三苯甲烷,噻嗪等)的实验结果,重点是相关因素,例如被吸附物-吸附剂的化学性质和化学相互作用以及吸附条件。将平衡实验结果拟合到Langmuir和Freundlich等温线,以获得每个模型的特征参数。根据Langmuir方程的评估,碱性染料在22℃下对碱性蓝24的最大吸附容量为667(mg g〜(-1)),对于碱性绿4和714为526(mg g〜(-1)。碱性紫4(mg g〜(-1))(mg g〜(-1)),而酸性黑1仅为25(mg g〜(-1)),进行了批动力学研究,并根据化学吸附评估了数据对于所研究的所有系统,伪二级模型都提供了动力学实验数据的最佳相关性;在该研究中,还使用了用于质量传递的膜孔双电阻扩散模型来确定有效扩散率D_( eff),用于将碱性染料吸附到泥炭中。

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