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Exploring the Reusability of Synthetically Contaminated Wastewater Containing Crystal Violet Dye using Tectona grandis Sawdust as a Very Low-Cost Adsorbent

机译:探索使用Tectona grandis木屑作为极低成本吸附剂的含结晶紫染料的合成污染废水的可重复利用性

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Present investigation explores the possible reusability of synthetically contaminated wastewater containing crystal violet (CV) organic dye using Tectona grandis sawdust (TGSD) waste as a very low-cost adsorbent. The adsorbent was characterized by proximate, SEM/EDX, FTIR, and XRD analyses. Batch adsorption studies were carried under changing conditions of contact time, the initial concentration of CV, pH, TGSD dose, TGSD particle size, and temperature. The experimental data were tested using Langmuir, Freundlich and Temkin isotherm models, and the data were best followed by Langmuir one. The kinetic results were examined in the light of different models and pseudo-second-order was obtained to be best obeyed. The values of ΔH° (28.642?kJ/mol), ΔG° (-10.776 to -7.080?kJ/mol) and ΔS° (121.8?J/K/mol) in the temperature range of 293–323?K suggested the overall process to be spontaneous, endothermic and associated with an increase in randomness. On the basis of experimental results and their analyses, it has been established that TGSD is one of the most effective adsorbents among those obtained from the domestic, agricultural and industrial wastes. Thus this adsorbent can be effectively utilized to make the impure wastewater reusable.
机译:目前的研究探索了使用大木屑(TGSD)锯末(TGSD)废物作为极低成本吸附剂的含有结晶紫(CV)有机染料的合成污染废水的可重复利用性。吸附剂的特征是通过近似,SEM / EDX,FTIR和XRD分析。在接触时间,CV初始浓度,pH,TGSD剂量,TGSD粒径和温度等变化条件下进行批量吸附研究。使用Langmuir,Freundlich和Temkin等温模型对实验数据进行了测试,其中最好的数据是Langmuir一种。根据不同的模型检查动力学结果,并获得最佳假二阶。在293–323?K温度范围内,ΔH°(28.642?kJ / mol),ΔG°(-10.776至-7.080?kJ / mol)和ΔS°(121.8?J / K / mol)的值表明整个过程是自发的,吸热的,并伴随着随机性的增加。根据实验结果及其分析,已经确定TGSD是从家庭,农业和工业废物中获得的最有效的吸附剂之一。因此,该吸附剂可以有效地用于使不纯的废水可重复使用。

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