Application of Adsorption Thermodynamics and Column Studies for Pb2+, Cd2+ and Mn2+ Ions Removal in Multicomponents Model Solution Using Low-Cost Bentonite Clay Adsorbent

A. Jock, Francis Asokogene Oluwadayo
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Abstract

The presence of heavy metal contaminants in wastewater effluents has become a great threat to living creatures and the environment. In this study, the application of thermodynamics and column studies for Pb2+, Cd2+ and Mn2+ metal ions removal in multicomponent aqueous solution using low-cost bentonite clay was investigated. Evaluation of enthalpy (∆Ho), entropy (∆So) and Gibbs free energy (∆Go) revealed that heavy metals adsorption was endothermic and spontaneous as temperature increased from 30 to 65 oC. The column performance was determined at 0.05m adsorbent bed depth, 0.023 and 0.04 mL/s flow rates. The influent concentration was 10 and 50 ppm while the breakthrough time was between 0.83 and 8 hr. The maximum uptake of metal ions was 2.2 mg/g for Pb(II), Mn(II) was 0.4 mg/g and 1.7 mg/g for Cd(II). The result showed the potential of bentonite clay as a candidate for toxic metal ions adsorption in wastewater.
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低成本膨润土吸附剂在多组分模型溶液中去除Pb2+、Cd2+和Mn2+离子的吸附热力学和柱状研究
废水中重金属污染物的存在已成为对生物和环境的巨大威胁。采用热力学和色谱法研究了低成本膨润土对多组分水溶液中Pb2+、Cd2+和Mn2+金属离子的去除。焓(∆Ho)、熵(∆So)和吉布斯自由能(∆Go)的测定表明,随着温度从30℃升高到65℃,重金属吸附是吸热自发的。在吸附层深度为0.05m,流速为0.023和0.04 mL/s时测定色谱柱性能。进水浓度为10和50 ppm,突破时间为0.83 ~ 8 hr。Pb(II)、Mn(II)和Cd(II)对金属离子的最大吸收量分别为2.2 mg/g、0.4 mg/g和1.7 mg/g。结果表明,膨润土作为废水中有毒金属离子的吸附材料具有一定的潜力。
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