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Removal of C.I. Reactive Red 2 from aqueous solutions by chitin: An insight into kinetics, equilibrium, and thermodynamics

机译:拆除C.I.几丁质水溶液中的反应性红2:动力学,平衡和热力学的洞察力

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摘要

In this study, C.I. Reactive Red 2 (RR2) was removed from aqueous solutions by chitin. Exactly how the RR2 concentration, chitin dosage, pH, and temperature affected adsorption of RR2 by chitin was then determined. After reaction for 120 min, the amount of 10 and 20 mg/L RR2 absorbed onto chitin was 5.7 and 7.5 mg/g, respectively. The adsorption percentage increased from 56 to 94% when the chitin dosage was increased from 1.5 to 2.5 g/L. Experimental results indicated that the pseudosecond- order model best represents adsorption kinetics. Adsorption of RR2 increased as the temperature increased; however, it decreased with an increased pH. Experimental results further demonstrated that the Freundlich model is superior to the Langmuir model in fitting experimental isotherms. The ΔH ~0 and ΔS ~0 were 16.34 kJ/mol and 152.10 J/mol K, respectively. ΔH ~0 suggested that adsorption of RR2 onto chitin was via physisorption.
机译:在这项研究中几丁质从水溶液中去除了反应性红2(RR2)。然后确定了RR2的浓度,几丁质的剂量,pH和温度如何影响几丁质对RR2的吸附。反应120分钟后,吸收到几丁质上的RR2量为10和20 mg / L,分别为5.7和7.5 mg / g。当几丁质剂量从1.5 g / L增加到2.5 g / L时,吸附百分比从56%增加到94%。实验结果表明,伪二级模型最能代表吸附动力学。 RR2的吸附随着温度的升高而增加。但是,随着pH的升高,它降低了。实验结果进一步证明,在拟合实验等温线方面,Freundlich模型优于Langmuir模型。 ΔH〜0和ΔS〜0分别为16.34 kJ / mol和152.10 J / molK。 ΔH〜0表明RR2在几丁质上的吸附是通过物理吸附。

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