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Development of highly efficient bimetallic metal organic frameworks for the extraction of Pd(ii) from aqueous solutions

机译:开发用于从水溶液中提取Pd(ii)的高效双金属金属有机骨架

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The safe handling of nuclear waste as well as expanding needs due to global industrialization necessitates the recovery of palladium from high level liquid waste. However, effective extraction of palladium remains challenging, and the expanding area of metal organic frameworks with adjustable functionality may offer a practical solution. The Zr-based UiO-66 metal organic frameworks are well known for their high stability due to the strong electrostatic interaction between Zr4+ and dicarboxylic acid linkers. Herein, we report the post-synthetic modification of UiO-66-NH2 with glutaric anhydride and pyridine dicarboxylic acid, to synthesize UiO-66-GA and UiO-66-PDCA, which were employed for sorption/extraction of palladium. In addition, we report the synthesis of novel Zr/Zn based bimetallic MOFs which were also examined for the sorption of Pd(ii) from aqueous streams. UiO-66 MOFs were doped with various ratios of zinc to obtain bimetallic MOFs via a one-step method for the efficient recovery of Pd(ii) from aqueous solutions. The synthesized MOFs were characterized using FT-IR, powder-XRD, TGA, SEM-EDX and BET surface area analysis. The particle sizes of the various MOFs were also measured using the dynamic light scattering (DLS) technique since size plays a critical role in tuning the properties of the MOFs. Sorption studies were performed at various pH conditions, and it was found that the bimetallic MOF Zr–Zn-MOF-1 exhibited the maximum sorption of 77.4 within 3 hours at pH 5. The effect of pH on the surface charge of the various MOFs was also explored to get further insight into the correlation between pH and sorption behavior. Furthermore, the contact time, temperature and concentration studies explained the monolayer adsorption of Pd(ii) onto the MOFs following the pseudo-second order kinetics. Following this, recovery of the adsorbed Pd(ii) from the MOFs was performed using different eluting agents in which 1 M Na2CO3 exhibited better desorption. Furthermore, the adsorbent was regenerated and employed for a total of three cycles, demonstrating remarkable stability with no discernible alterations in its adsorption capacity throughout the successive usage. In addition, density functional theory (DFT) calculations were carried out to provide insight into the nature of the interactions that exist between Pd(ii) and the MOFs.
机译:核废料的安全处理以及全球工业化导致的需求不断扩大,需要从高放液体废料中回收钯金。然而,钯的有效提取仍然具有挑战性,具有可调功能的金属有机框架的扩展区域可能提供一种实用的解决方案。Zr基UiO-66金属有机骨架由于Zr4+和二羧酸连接剂之间的强静电相互作用而以其高稳定性而闻名。本文报道了UiO-66-NH2与戊二酸酐和吡啶二羧酸的合成后修饰,合成了UiO-66-GA和UiO-66-PDCA,用于钯的吸附/提取。此外,我们还报道了新型Zr/Zn基双金属MOF的合成,这些MOFs也被检查了从水流中吸附Pd(ii)的过程。在UiO-66 MOFs中掺杂不同比例的锌,通过一步法从水溶液中高效回收Pd(ii)得到双金属MOFs。采用FT-IR、粉末-XRD、TGA、SEM-EDX和BET比表面积分析对合成的MOFs进行了表征。各种MOF的粒径也使用动态光散射(DLS)技术测量,因为尺寸在调节MOF的特性方面起着关键作用。在不同pH条件下进行吸附研究,发现双金属MOF Zr-Zn-MOF-1的最大吸附率为77。在 pH 值 5 下 3 小时内取 4%。此外,还探讨了pH值对各种MOFs表面电荷的影响,以进一步了解pH值与吸附行为之间的相关性。此外,接触时间、温度和浓度研究解释了Pd(ii)在伪二阶动力学之后单层吸附到MOFs上的原因。之后,使用不同的洗脱剂从MOFs中回收吸附的Pd(ii),其中1 M Na2CO3表现出更好的解吸。此外,吸附剂经过再生和使用总共三个循环,表现出显着的稳定性,在整个连续使用过程中其吸附能力没有明显变化。此外,还进行了密度泛函理论(DFT)计算,以深入了解Pd(ii)和MOF之间存在的相互作用的性质。

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