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Removal of Colour from Textile Effluent byAdsorption Using Low Cost Adsorbents

机译:使用低成本吸附剂的吸附去除纺织品废水中的颜色

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Aims: The present study was aimed to investigate the adsorption capacity of Granular activated carbon (GAC) of coconut shell and coal ash for acidic dye. Methodology: Acid orange 7 dye is used as an adsorbate for the present study. Operating parameters such as pH, effective dosage, and contact time were optimized by conducting batch experiment. Column studies were conducted in order to determine the saturation time by using column Break-through curve. Results: Colour removal of about 94% and 85% were obtained at pH 6 for an adsorbent dosage of 1.5g /100ml of 50 mg/l and 100 mg/l dye concentration respectively for Granular activated carbon and Colour removal of about 80% and 75% were obtained at pH 6 for an adsorbent dosage of 1.5 g/100ml of 50 mg/l and 100 mg/l dye concentration respectively for Coal ash. GAC got saturated in 218 hours for 100 mg/l and coal ash got saturated in 96 hours for 100 mg/l respectively. Results obtained on industrial wastewater showed the results were in par with the synthetic sample. Conclusion: From the batch and column studies it can be concluded that increase in adsorbent dosage increased the percentage removal of dyes and higher initial concentration resulted in shorter column saturation time respectively. Langmuir isotherm was found to be best fit for both the adsorbents.
机译:目的:本研究旨在研究椰子壳和粉煤灰颗粒活性炭(GAC)对酸性染料的吸附能力。方法:酸性橙7染料用作本研究的吸附物。通过分批实验优化了pH,有效剂量和接触时间等操作参数。为了确定饱和时间,使用色谱柱穿透曲线进行了色谱柱研究。结果:对于颗粒活性炭,分别在50 mg / l和100 mg / l染料浓度的1.5g / 100ml吸附剂剂量下,在pH 6下脱色率分别约为94%和85%,脱色率分别约为80%和85%。在pH 6下,分别以50毫克/升和100毫克/升染料浓度的1.5克/ 100毫升吸附剂量获得75%的煤灰。 GAC在218小时内达到100 mg / l的饱和度,而煤灰在96小时内达到100 mg / l的饱和度。工业废水获得的结果表明,该结果与合成样品相当。结论:从批处理和柱研究中可以得出结论,增加吸附剂剂量可增加染料的去除率,而较高的初始浓度可分别缩短柱的饱和时间。发现Langmuir等温线最适合两种吸附剂。

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