Division of Semiconductor and Chemical Engineering, Chonbuk National University, Jeonju, Jeonbuk 561-756, Republic of Korea.
Division of Semiconductor and Chemical Engineering, Chonbuk National University, Jeonju, Jeonbuk 561-756, Republic of Korea.
J Hazard Mater. 2016 Nov 15;318:79-89. doi: 10.1016/j.jhazmat.2016.06.050. Epub 2016 Jun 26.
Poly(styrenesulfonic acid)-impregnated alginate capsule (PSSA-AC) was prepared using a simple fabrication process, and used for selective separation of Pd(II) and Pt(IV) from their mixture. Evaluation of the pH effect revealed that PSSA-AC had good Pd(II) selectivity especially when the pH was between 3 and 5 at which neutral species Pd(OH)2 are present. Experiments on metal penetration through the Ca(2+)-alginate film showed that anionic species hardly penetrate through the alginate film (acting as an ionic barrier). The selective sorption mechanism is proposed as the following steps: (1) selective penetration of the neutral Pd(OH)2 through the ionic barrier (Ca(2+)-alginate shell) and then (2) chelation reaction of the neutral Pd(OH)2 with the SO3(-) groups of PSSA in the core. The maximum Pd(II) uptake was 291.19±17.48mg/g, which was about 32 times higher than that of Pt(IV). The results of the sorption/desorption test indicated that the PSSA-AC has good reusability potential. Even through one cycle of sorption/desorption, Pd(II) and Pt(IV) were successfully separated from their mixture with significantly high purities of 98.65% Pd(II) and 98.71% Pt(IV). This study reports for the first time the feasibility and potential of ionic barrier-based sorbents as selective separation of precious metals which have different speciations.
聚(苯乙烯磺酸)-海藻酸钠胶囊(PSSA-AC)是通过简单的制备工艺制备的,用于从混合物中选择性分离 Pd(II) 和 Pt(IV)。评估 pH 值的影响表明,PSSA-AC 对 Pd(II) 具有良好的选择性,特别是当 pH 值在 3 到 5 之间时,此时存在中性物种 Pd(OH)2。通过 Ca(2+)-海藻酸钠膜穿透金属的实验表明,阴离子物种几乎不能穿透海藻酸钠膜(作为离子屏障)。提出了选择性吸附的机理如下步骤:(1) 中性 Pd(OH)2 通过离子屏障(Ca(2+)-海藻酸钠壳)的选择性渗透,然后 (2) 中性 Pd(OH)2 与 PSSA 中的 SO3(-)基团的螯合反应。最大 Pd(II) 吸附量为 291.19±17.48mg/g,约是 Pt(IV) 的 32 倍。吸附/解吸试验的结果表明,PSSA-AC 具有良好的重复使用潜力。即使经过一次吸附/解吸循环,Pd(II) 和 Pt(IV) 也能从混合物中成功分离出来,其纯度分别高达 98.65% Pd(II) 和 98.71% Pt(IV)。本研究首次报道了基于离子屏障的吸附剂作为具有不同形态的贵金属的选择性分离的可行性和潜力。