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A Novel Approach to Investigate Adsorption of Crystal Violet from Aqueous Solutions Using Peels of Annona squamosa

机译:研究使用鳞茎番荔枝果皮从水溶液中吸附结晶紫的新方法

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An effective and economical adsorbent was prepared from the peels of Annonasquamosafor the removal of crystal violet from aqueous solutions. Adsorption studies were carried out using batch experiments. The dependence of initial dye concentration, pH, contact time, particle size and temperature on the adsorption process was studied. The crystal violet was found to be electroactive and hence electrochemical studies were also performed. The study showed that the equilibrium was achieved within 60 min for the different initial concentrations (10 to 30 mg.l ). The equilibrium adsorption data were analyzed 1 using various isotherm models and they were found to fit Langmuir, Freundlich, Temkin and Harkins-Jura isotherm models in varying orders of magnitude. The maximum dye adsorption capacitiesfor cyclic voltammetry and spectral studiesat 303 K were found to be 5.6818 × 104 A.g1(in terms of current)and 5×104 mg.g1(in terms of weight),respectively. The data suggested that the adsorption kinetics was best represented by pseudo-second order kinetic model. The thermodynamic parameters including G, H and S for the adsorption process have also been evaluated using which it was concluded that the process of adsorption was spontaneous and endothermic. The cyclic voltammetricand spectral studies yielded similar results. Furthermore, statistical analysis also showed the absence of any significant difference between the two methods.
机译:从番荔枝果皮制备了一种有效且经济的吸附剂,用于从水溶液中去除结晶紫。吸附研究是使用分批实验进行的。研究了初始染料浓度,pH,接触时间,粒径和温度对吸附过程的依赖性。发现结晶紫具有电活性,因此也进行了电化学研究。研究表明,对于不同的初始浓度(10至30 mg.l),在60分钟内即可达到平衡。使用各种等温线模型分析了平衡吸附数据1,发现它们在不同数量级上适合Langmuir,Freundlich,Temkin和Harkins-Jura等温线模型。在303 K下,用于循环伏安法和光谱研究的最大染料吸附容量分别为5.6818×104 A.g1(以电流计)和5×104 mg.g1(以重量计)。数据表明,吸附动力学最好用伪二级动力学模型来表示。还评估了吸附过程的热力学参数(包括G,H和S),据此得出的结论是吸附过程是自发的并且是吸热的。循环伏安法和光谱研究得出了相似的结果。此外,统计分析还显示两种方法之间没有任何显着差异。

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