乙二胺功能化废聚对苯二甲酸乙酯衍生金属-有机骨架对水溶液中钯离子的吸附

ThabisoC. Maponya , Katlego Makgopa , Thabang R. Somo , David M Tshwane , Kwena D. Modibane
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引用次数: 0

摘要

钯金属的回收对于满足其日益增长的全球需求以及应对水污染危机至关重要。本文中,MIL-101(Cr)/ED由废聚对苯二甲酸乙二醇酯(PET)瓶制成,并使用乙二胺(ED)进行改性,以从水环境中回收二价钯(Pd(II))金属离子。ED部分在MIL-101(Cr)上的成功接枝是通过在傅里叶变换红外光谱上2800–3300 cm−1附近出现宽带来确定的,这得到了密度泛函理论结合能增加的支持。吸附实验表明,在pH=3.0的酸性介质中使用30mg MIL-101(Cr)/ED会产生更高的Pd(II)离子摄入。数据更符合Langmuir等温线,相关系数(R2)为0.9089。在25°C下,MIL-101(Cr)/ED的摄入量显著提高,达到454.2 mg.g−1。动力学数据证明符合准二阶,在速率常数k2=0.02065 g.mg−1.min−1的情况下,MIL-101(Cr)/ED在不到3分钟的时间内实现了Pd(II)的快速吸附速率。MIL-101(Cr)/ED对Pd(II)离子具有高亲和力,因为即使在存在其他离子的情况下也能达到80%以上的去除率。这些观察结果揭示了MIL-101(Cr)/ED作为吸附剂从废水中有效提取Pd(II)离子的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ethylenediamine functionalized waste polyethylene terephthalate-derived metal-organic framework for adsorption of palladium ions from aqueous solutions

Ethylenediamine functionalized waste polyethylene terephthalate-derived metal-organic framework for adsorption of palladium ions from aqueous solutions

The recovery of palladium metal is essential in order to meet its growing global demand and also to address water pollution crisis. Herein, MIL-101(Cr)/ED was fabricated from waste polyethylene terephthalate (PET) bottles and modified using ethylenediamine (ED) to retrieve divalent palladium (Pd(II)) metal ions from aqueous environment. The successful grafting of ED moieties onto MIL-101(Cr) was established by the appearance of broad bands at around 2800–3300 cm−1 on the Fourier transform infrared spectrum which was supported by the increase in binding energy using density functional theory. The adsorption experiments revealed that higher Pd(II) ion intake occurred using 30 mg of MIL-101(Cr)/ED in acidic media of pH = 3.0. The data fit better on the Langmuir isotherm with the correlation coefficient (R2) 0.9089. At 25 °C, the MIL-101(Cr)/ED achieved a substantial enhancement in the intake capacities of 454.2 mg.g−1. Kinetics data demonstrated to comply with pseudo-second order, achieving a rapid rate of Pd(II) adsorption by the MIL-101(Cr)/ED in less than 3 min given by the rate constant k2 = 0.02065 g.mg−1.min−1. The MIL-101(Cr)/ED has high affinity for Pd(II) ions as more than 80% removal was achieved even in presence of other ions. These observations revealed the potential utilization of MIL-101(Cr)/ED as an adsorbent to efficiently extract Pd(II) ions from wastewater.

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