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Theoretical studies on adsorption of Ni(II) from aqueous solution using Citrus limetta peels

机译:理论研究吸附镍(II)溶液使用柑橘limetta皮

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摘要

The potential of an agro industrial waste Citrus limetta peels (CLP) for biosorption of Ni(II) ions from aqueous solution was explored in batch system in terms of equilibrium, kinetics and thermodynamics. The peels were characterized by FTIR spectroscopy, TGA analysis, and SEM. The effect of process parameters such as initial pH, metal ion concentration, biosorbent dosage and contact time on metal ion sorption was examined. The optimum values for pH and biosorbent dose for Ni(II) sorption were 6 and 2 g/L, with time for equilibrium adsorption 45 min. Application of the experimental data to several kinetic models and adsorption isotherms showed that the adsorption process follows a pseudo second order and Langmuir isotherm. The maximum adsorption capacity was found to be 27.78 mg/g. Elution efficiency was determined with different concentrations of HCl. Effect of various competing ions on sorption was also evaluated. The study was extended to metal sorption from synthetic wastewater. Results indicate that the CLP can be an effective and environmentally friendly adsorbent to detoxify Ni(II)-polluted wastewater. The high nickel adsorption capacity of CLP suggests its utility on industrial scale. (c) 2017 American Institute of Chemical Engineers Environ Prog, 36: 864-872, 2017
机译:潜在的农业工业废料柑橘limetta皮(CLP)的吸附重金属镍(II)离子的水溶液在批探索系统的平衡、动力学和热力学。红外光谱、TGA分析和SEM。初始pH值等工艺参数的影响,金属离子浓度,biosorbent剂量接触时间对金属离子吸附研究。pH值和最优值biosorbent剂量镍(II)吸附是6和2 g / L,随着时间的推移平衡吸附45分钟。应用几个动力学模型和实验数据吸附等温线表明吸附遵循一个伪二阶和过程朗缪尔等温线。能力被发现27.78毫克/克。决心与不同的效率盐酸的浓度。竞争离子在吸附也被评估。这项研究扩展到金属吸附合成废水。CLP可以是一个有效的和环境友好的吸附剂解毒镍(II)污染废水。CLP表明对工业规模的效用。美国化学工程师学会(c) 2017

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