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Adsorption of Crystal Violet Dye Using Zeolite A Synthesized From Coal Fly Ash

机译:使用煤灰灰沸石合成的晶紫色染料吸附

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Adsorption of Crystal Violet (CV) dye using zeolite A synthesized from coal fly ash (ZA) has been done. Effect of pH, contact time, and the initial concentration of dye adsorption was studied in this adsorption. Model experimental of adsorption isotherms and adsorption kinetics were also studied. The adsorption is done in a batch reactor at room temperature. A total of 0.01 g of zeolite A was added to the Erlenmeyer flask 50 mL containing 20 mL of the dye solution of Crystal Violet in a variety of conditions of pH, contact time and initial concentration. Furthermore, Erlenmeyer flask and its contents were shaken using an orbital shaker at a speed of 200 rpm. After a specified period of adsorption, the solution was centrifiiged for 2 minutes so that the solids separated from the solution. The concentration of the dye after adsorption determined using Genesis-20 Spectrophotometer. The results showed that the Zeolite A synthesized from coal fly ash could be used as an effective adsorbent for Crystal Violet dye. The optimum adsorption occurs at pH 6, and contact time 45 minutes. At the initial concentration of 2 to 6 mg/L, adsorption is reduced from 79 to 62.8%. Crystal Violet dye adsorption in zeolite A fulfilled kinetic model of pseudo-order 2 and model of Freundlich adsorption isotherm.
机译:已经完成了使用从煤粉灰(Za)合成的沸石A合成的晶体紫(CV)染料的吸附。在这种吸附中研究了pH,接触时间和染料吸附初始浓度的影响。研究了吸附等温线和吸附动力学的模型实验。吸附在室温下在批量反应器中完成。在各种pH,接触时间和初始浓度的各种条件下,将总共0.1g含有20ml染料溶液的含有20ml染料溶液的Erlenmeyer烧瓶50mL。此外,使用轨道振动器以200rpm的速度摇动erlenmeyer烧瓶及其内容物。在指定的吸附时间后,将溶液离心2分钟,使得与溶液分离的固体。使用Genesis-20分光光度计测定吸附后染料的浓度。结果表明,由煤粉煤灰合成的沸石可以用作晶体紫染料的有效吸附剂。在pH6时发生最佳吸附,并接触45分钟。在2至6mg / L的初始浓度下,吸附从79%降至62.8%。沸石中的晶紫染料吸附伪阶2的实现动力学模型及Freundlich吸附等温线模型。

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