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Extractant Immobilization in Alginate Capsules (Matrix- and Mononuclear-Type): Application to Pb(II) Sorption from HCl Solutions

机译:藻酸盐胶囊(基质型和单核型)中的萃取剂固定化:从HCl溶液中吸附Pb(II)的应用

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摘要

The decontamination of dilute industrial effluents is a critical challenge for decreasing the environmental impact of mining and metallurgical activities. As an alternative to conventional processes, new extractant impregnated resins (EIRs) have been synthesized by the immobilization of Cyanex 301 and Cyanex 302 in alginate capsules using two different procedures (matrix-type immobilization vs. mononuclear encapsulation). These materials have been tested for Pb(II) sorption from acidic solutions. The Langmuir equation fitted well the sorption isotherms and the maximum sorption capacities vary between 24 and 80 mg·g−1 at pH 1, depending on the type and loading of the extractant in the EIR. Uptake kinetics were controlled by the resistance to intraparticle diffusion; though both the Crank equation (intraparticle diffusion) and pseudo-second order rate equation equally fitted uptake profiles. The amount of extractant immobilized in mononuclear capsules is lower than in matrix-type beads; this leads to lower sorption capacities but slightly better mass transfer properties. The balance between the advantages and drawbacks of the different systems makes more promising matrix-type capsules. The desorption of Pb(II) is possible using 1 M HNO3 solutions: metal ions were completely desorbed. However, the probable oxidation of the extractants (conversion to oxidized forms more sensitive to pH) reduces the sorption efficiency when they are re-used.
机译:稀释工业废水的去污是降低采矿和冶金活动对环境影响的关键挑战。作为常规方法的替代方法,已经通过使用两种不同的方法(矩阵型固定与单核包封)将Cyanex 301和Cyanex 302固定在藻酸盐胶囊中,合成了新的浸有萃取剂的树脂(EIR)。已对这些材料从酸性溶液中吸附Pb(II)进行了测试。 Langmuir方程很好地拟合了吸附等温线,最大吸附容量在pH值为1的24至80 mg·g -1 之间变化,具体取决于萃取剂在EIR中的类型和负载量。吸收动力学受对颗粒内扩散的抵抗力控制。尽管Crank方程(粒子内扩散)和伪二级速率方程均符合吸收曲线。固定在单核胶囊中的萃取剂的量低于基质型珠粒中的萃取剂。这导致较低的吸附能力,但传质性能稍好。不同系统的优缺点之间的平衡使得基质型胶囊更具前景。使用1 M HNO3溶液可以解吸Pb(II):金属离子被完全解吸。但是,萃取剂可能被氧化(转化为对pH值更敏感的氧化形式)会在重复使用时降低吸附效率。

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