首页> 外文期刊>Annals of the American Thoracic Society >Removal of Brilliant Green dye from water by modified Bambusa Tulda: adsorption isotherm, kinetics and thermodynamics study
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Removal of Brilliant Green dye from water by modified Bambusa Tulda: adsorption isotherm, kinetics and thermodynamics study

机译:通过改进的Bambusa Tulda除去辉煌的绿色染料:吸附等温,动力学和热力学研究

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The present research is based on the removal of Brilliant Green dye from synthetic wastewater which is one of the emerging hazardous contaminant. Adsorption technology was used to remove Brilliant Green dye using sodium carbonate-treated Bambusa Tulda as bio-adsorbent to replace costly activated carbon. Initial experiment shows the best removal of Brilliant Green dye done by sodium carbonate-treated Bambusa Tulda as compared to hydrochloric acid-treated Bambusa Tulda and distilled washed Bambusa Tulda. Scanning electron microscope, Fourier transform infrared spectroscopy and energy diffractions and X-ray analysis were done to identify functional group, surface characteristic and elemental constituents of sodium carbonate-treated Bambusa Tulda. The adsorption parameters have direct influence onto sodium carbonate-treated Bambusa Tulda for Brilliant Green dye removal. Optimum removal (98%) of dye was obtained at equilibrium time 60min at pH 7, adsorbent dose 10g/l, rotation per minute 200 and 298K. Experimental data were fitted into four isotherm models and Langmuir isotherm best fitted with maximum adsorption capacity=41.67mg/g. Kinetics rate data fit better in pseudo-second-order model. Activation energy was observed as 16.802kJ/mole, and the adsorption was diffusion control process. The chemical oxygen demand values of Brilliant Green dye decreased from 136 to 72mg/l after the adsorption of Brilliant Green with sodium carbonate-treated Bambusa Tulda. Thus, it can be concluded that sodium carbonate-treated Bambusa Tulda is an efficient adsorbent and an alternative to activated carbon for the removal of Brilliant Green dye from synthetic wastewater.
机译:本研究基于从合成废水中除去辉煌的绿色染料,这是新兴危险污染物之一。使用碳酸钠处理的Bambusa Tulda作为生物吸附剂去除辉煌的绿色染料,以取代昂贵的活性炭。初步实验表明,与碳酸钠处理的Bambusa Tulda相比,通过碳酸钠处理的Bambusa Tulda和蒸馏水洗涤的Bambusa Tulda进行了最佳的绿色染料。扫描电子显微镜,傅里叶变换红外光谱和能量衍射和能量衍射和X射线分析鉴定碳酸钠处理的Bambusa Tulda的官能团,表面特征和元素成分。吸附参数对碳酸钠处理的Bambusa Tulda具有直接影响,用于亮绿色染料去除。在pH7的平衡时间60min下在pH7的平衡时间下获得最佳去除(98%)染料,吸附剂剂量10g / L,每分钟旋转200和298K。实验数据安装在四个等温线型号中,Langmuir等温线最适合,最大吸附能力= 41.67mg / g。动力学率数据在伪二阶模型中适合。将活化能量观察为16.802KJ /摩尔,吸附是扩散控制过程。辉煌绿色辉煌绿色染料的化学氧需求值从136〜72mg / L降低,碳酸钠处理的Bambusa Tulda吸附。因此,可以得出结论,碳酸钠处理的Bambusa Tulda是一种有效的吸附剂,以及用于从合成废水中除去亮绿色染料的活性炭的替代品。

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