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Factors Affecting Lanthanum and Cerium Biosorption on Pinus brutia Leaf Powder

机译:影响镧和铈对松树叶片粉体生物吸附的因素

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摘要

The biosorption behavior of lanthanum and cerium ions from aqueous solution by leaf powder of Pinus brutia was separately studied in a batch system as a function of initial pH, contact time, initial metal ion concentration, temperature, and adsorbent amount. The uptake of lanthanum and cerium was increased when the initial pH of the solution was increased. Thermodynamic parameters such as standard enthalpy (ΔH°), entropy (ΔS°) and free energy (ΔG°) were calculated and the results indicated that biosorption was endothermic and spontaneous in nature. The biosorption of lanthanum and cerium on powdered leaf of Pinus brutia was investigated by the Freundlich, Langmuir, and D-R isotherms. The results show that lanthanum and cerium adsorption can be explained by the Langmuir isotherm model and monolayer capacity was found as 22.94 mg g−1 for lanthanum and 17.24 mg g−1 for cerium. Desorption of lanthanum and cerium was studied using 0.5 M HNO3 solution. The results suggested that powdered leaf of Pinus brutia may find promising applications for the recovery of lanthanum and cerium from aqueous effluents.
机译:在间歇系统中,分别研究了黑松(Pinus brutia)叶粉对水溶液中镧和铈离子的生物吸附行为,它是初始pH,接触时间,初始金属离子浓度,温度和吸附剂量的函数。当溶液的初始pH增加时,镧和铈的吸收增加。计算标准焓(αH°),熵(βS°)和自由能(βG°)等热力学参数,结果表明生物吸附是自然的吸热和自发的。用Freundlich,Langmuir和D-R等温线研究了Pinus brutia粉状叶子上镧和铈的生物吸附。结果表明,镧和铈的吸附可以用Langmuir等温线模型解释,发现单层吸附量为镧的22.94 mg g -1 和17.24 mg g ∠1 表示铈。使用0.5 M HNO 3 溶液研究了镧和铈的解吸。结果表明,粉状的松树叶片可以从废水中回收镧和铈。

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