JOURNAL ARTICLE

Adsorption Behaviors of Oxytetracycline onto Sediment in the Weihe River, Shaanxi, China

Donghui ChengShengke YangYue ZhaoJing Chen

Year: 2013 Journal:   Journal of Chemistry Vol: 2013 (1)   Publisher: Hindawi Publishing Corporation

Abstract

Adsorption behaviors of oxytetracycline onto sediment in the Weihe River were described. The impact factors in the processes of adsorption, such as contact time, solution pH, temperature, and ionic strength, were determined by experiments. The experimental results were analyzed by kinetic and isotherm models. The adsorption kinetics was found to follow a pseudo‐first‐order model. The equilibrium adsorption data fitted well with the Langmuir and Freundlich isotherm models. However, the Langmuir isotherm was more suitable to describe the adsorption. Thermodynamics parameters such as Gibbs‐free energy change (Δ G ° ), enthalpy change (Δ H ° ), and entropy change (Δ S ° ) were calculated. Results showed that the adsorption was feasible, spontaneous, entropy increasing, and endothermic in nature, which reached equilibrium in about 24 hours. The adsorption capacity did not cause obvious change at solution pH 4.0–7.0, and both decreased in solution pH 7.0–10.0 and 4.0–2.0. The presence of electrolytes such as NaCl in aqueous solution had a significant negative effect on the adsorption. The mechanisms controlling the adsorption were supposed to be chemisorption.

Keywords:
Chemistry Adsorption Freundlich equation Gibbs free energy Langmuir adsorption model Ionic strength Endothermic process Enthalpy Langmuir Thermodynamics Chemisorption Aqueous solution Oxytetracycline Physical chemistry

Metrics

18
Cited By
0.40
FWCI (Field Weighted Citation Impact)
44
Refs
0.63
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Pharmaceutical and Antibiotic Environmental Impacts
Physical Sciences →  Environmental Science →  Pollution
Gold and Silver Nanoparticles Synthesis and Applications
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Nanomaterials for catalytic reactions
Physical Sciences →  Chemistry →  Organic Chemistry

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