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首页> 外文期刊>Chemical Science International Journal >Removal of High-Concentration Fe(III) by OxidizedMultiwall Carbon Nanotubes in a Fixed Bed Column
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Removal of High-Concentration Fe(III) by OxidizedMultiwall Carbon Nanotubes in a Fixed Bed Column

机译:固定床塔中氧化多壁碳纳米管的去除高浓度Fe(III)

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摘要

The use of modified multiwall carbon nanotubes (MWCNTs) for high concentration of ferric iron removal from acid mine drainage was studied. Fourier transform infrared spectrum demonstrated that hydroxyl and carbonyl functional groups were introduced to the surface of MWCNTs after oxidation with nitric acid. The adsorption behavior of modified MWCNTs was then investigated in removing 50-200 mg/L Fe(III) through batch and continuous flow fixed bed experiments. Batch experiment results demonstrated that the Fe(III) adsorption capability of MWCNTs after oxidation had increased by 32%. Adsorption equilibrium was achieved during the first 90 min. Langmuir model can be successfully employed for the equilibrium of isotherms with R~(2)=0.9878 and q_(max)=89.05 mg/g. In addition, the effect of column bed depths and the influent Fe(III) concentrations were studied through the continuous fixed-bed adsorption studies. Results indicated that Fe(III) uptake favoured particularly higher bed depth and lower influent concentration. The bed uptake capacity of Fe(III) was found to be in a range of 30.30-41.51 mg/g, which was much lower than in batch experiment.
机译:研究了改性多壁碳纳米管(MWCNTs)在酸性矿山排水中高浓度去除铁铁的应用。傅立叶变换红外光谱表明,硝酸氧化后,羟基和羰基官能团被引入到碳纳米管的表面。然后通过分批和连续流固定床实验研究了改性MWCNTs在去除50-200 mg / L Fe(III)时的吸附行为。批量实验结果表明,氧化后MWCNTs的Fe(III)吸附能力提高了32%。在最初的90分钟内达到吸附平衡。 Langmuir模型可以成功地用于等温线的平衡,R〜(2)= 0.9878和q_(max)= 89.05 mg / g。此外,通过连续固定床吸附研究,研究了柱床深度和进水Fe(III)浓度的影响。结果表明,Fe(III)的吸收特别有利于更高的床层深度和更低的进水浓度。发现Fe(III)的床吸收能力在30.30-41.51mg / g的范围内,这比分批实验低得多。

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