酸性柠檬壳活性炭吸附水溶液中Cu(Ii)离子的动力学和等温线研究

A. Muslim, S. D. Said, Gita Suci Hariati, Siti Fajar Karina, F. Djuned, Rizka Mulyawan
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引用次数: 1

摘要

在pH值为5(±0.15)、转速为100 rpm、转速为1 atm的条件下,采用酸柠檬果壳活性炭(LAFS-AC)对Cu(II)离子进行了批量吸附实验。考察了接触时间、初始Cu(II)离子浓度、KOH浓度和吸附温度对Cu(II)离子吸附量的影响。傅里叶变换红外光谱和扫描电镜分别对LAFS-AC的活性部位和表面形貌进行了研究。对Cu(II)离子的吸附符合准二级吸附动力学(平均R = 0.94),吸附量和吸附速率分别为25.58 mg/g和0.07 g/mg。用0.5 M KOH活化的LAFS AC,分别在27℃下进行。分别为26.88 mg/g和0.15 g/mg。Cu(II)离子的吸附符合Langmuir吸附等温线模型(LAIM)(平均R = 0.98)。在27℃时,LAIM的吸附容量和常数分别为26.67 mg/g和0.03 L/g,在60℃时,LAIM的吸附量和常数急剧增加到0.09 L/g。得到的最佳吸附条件为0.5 M KOH活化的LAFS-AC,初始Cu(II)浓度为509.81 mg/L, 60℃时接触时间120 min, Cu(II)离子的吸附量为26.95 mg/g。
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Adsorption of Cu(Ii) Ions in Aqueous Solution Onto Limonia Acidissima Shellbased Activated Carbon: Kinetic and Isotherm Studies
Adsorption of Cu(II) ions from aqueous solution using activated carbon prepared from Limonia acidissima fruit shell (LAFS-AC) was conducted in batch mode experiments at pH 5 (±0.15), 100 rpm and 1 atm. The effects of contact time, initial Cu(II) ions concentration, KOH concentration, and adsorption temperature on Cu(II) ions adsorption capacity were investigated. Fourier Transform Infrared Spectroscopy and Scanning Electron Microscopy analyses were performed to investigate the active site and surface morphology of the LAFS-AC, respectively. The Cu(II) ions adsorption was fitted very well (R = 0.94 on average) to the pseudo second-order adsorption kinetic with the adsorption capacity and rate being 25.58 mg/g and 0.07 g/mg.min, respectively at 27 C by the LAFS AC activated using 0.5 M KOH. It was 26.88 mg/g and 0.15 g/mg.min, respectively at 60 C. The Cu(II) ions adsorption followed the Langmuir adsorption isotherm model (LAIM) (R = 0.98 on average). The LAIM adsorption capacity and constant were 26.67 mg/g and 0.03 L/g, respectively at 27 C. It increased dramatically to 0.09 L/g at 60 C. The optimal adsorption condition obtained was the 0.5 M KOH activated LAFS-AC, initial Cu(II) concentration of 509.81 mg/L and 120-min contact time at 60 C with the Cu(II) ions adsorption capacity of 26.95 mg/g.
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