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首页> 外文期刊>Drinking Water Engineering and Science >Adsorption and desorption studies of iDelonix regia/i pods and leaves: removal and recovery of Ni(II) and Cu(II) ions from aqueous solution
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Adsorption and desorption studies of iDelonix regia/i pods and leaves: removal and recovery of Ni(II) and Cu(II) ions from aqueous solution

机译:Delonix Regia 荚和叶片的吸附和解吸研究:从水溶液中除去和恢复Ni(II)和Cu(II)离子

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In this study, the adsorption of Ni(II) and Cu(II) ions from aqueous solutions by powdered Delonix regia pods and leaves was investigated using batch adsorption techniques. The effects of operating conditions such as pH, contact time, adsorbent dosage, metal ion concentration and the presence of sodium ions interfering with the sorption process were investigated. The results obtained showed that equilibrium sorption was attained within 30 min of interaction, and an increase in the initial concentration of the adsorbate, pH and adsorbent dosage led to an increase in the amount of Ni(II) and Cu(II) ions adsorbed. The adsorption process followed the pseudo-second-order kinetic model for all metal ions' sorption. The equilibrium data fitted well with both the Langmuir and Freundlich isotherms; the monolayer adsorption capacity (Q0 mg g?1) of the Delonix regia pods and leaves was 5.88 and 5.77 mg g?1 for Ni(II) ions respectively and 9.12 and 9.01 mg g?1 for Cu(II) ions respectively. The efficiency of the powdered pods and leaves of Delonix regia with respect to the removal of Ni(II) and Cu(II) ions was greater than 80 %, except for the sorption of Ni(II) ions onto the leaves. The desorption study revealed that the percentage of metal ions recovered from the pods was higher than that recovered from the leaves at various nitric acid concentrations. This study proves that Delonix regia biomass, an agricultural waste product (“agro-waste”), could be used to remove Ni(II) and Cu(II) ions from aqueous solution.
机译:在该研究中,使用批次吸附技术研究了来自粉末Delonix Regia Pod和叶子水溶液中Ni(II)和Cu(II)离子的吸附。研究了PH,接触时间,吸附剂剂量,金属离子浓度等​​操作条件的影响以及干扰吸附过程的钠离子的存在。得到的结果表明,在30分钟内达到平衡吸附,并且吸附剂,pH和吸附剂剂量的初始浓度的增加导致吸附的Ni(II)和Cu(II)离子的量增加。吸附过程跟随所有金属离子吸附的伪二阶动力学模型。平衡数据与Langmuir和Freundlich等温机关均匀; Delonix Regia Pod和叶片的单层吸附容量(Q0mgg≤1)为Ni(II)离子的5.88和5.77mg G 2,分别为9.12和9.01mg'1分别用于Cu(II)离子。除了在叶片上的Ni(II)离子的吸附外,德罗尼纤维荚和Cu(II)和Cu(II)离子的去除率相对于除去Ni(II)和Cu(II)离子的效率大于80%。解吸研究表明,从豆荚中回收的金属离子的百分比高于各种硝酸浓度从叶中回收的百分比。本研究证明,Delonix Regia生物量,农业废物(“农业废物”)可用于从水溶液中除去Ni(II)和Cu(II)离子。

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