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Flexibility induced high-performance MOF-based adsorbent for nitroimidazole antibiotics capture

机译:灵活性诱导硝基咪唑抗生素捕获的高性能MOF基吸附剂

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Efficient capture of nitroimidazole antibiotics from wastewater remains a serious task for public health and environmental protection. In this report, we first propose a strategy of using highly flexible metal-organic framework for dimetridazole (DMZ) capture and excellent performance was achieved. Remarkably, MIL-53(Al) exhibits an excellent saturated adsorption capacity of 467.3 mg g(-1), surpassing all previous reported MOF-based adsorbents and various adsorbent materials like active carbons. Besides, it also shows extremely fast adsorption rate at the initial concentration of 40 mg L-1. Over 90% of DMZ can be removed within 10 min and the adsorption kinetics will reach equilibrium after 60 min of contact. Moreover, the concrete interaction mechanism between DMZ and MIL-53(Al) was also investigated. The PXRD results show that MIL-53(Al) presents its narrow pore (NP) form in low DMZ concentration. Due to the overlap of potential energy, the van der waals interaction between DMZ and the framework of MIL-53(Al) can be significantly reinforced, leading to strong host-guest interaction and thereby excellent DMZ removal efficiency. As DMZ concentration increasing, the pore structure of MIL-53(Al) was propped open and switched to large pore (LP) form, further promoting its uptake capacity. This flexible adsorbent shows obvious advantage with higher removal efficiency and uptake capacity as compared with its rigid analogical adsorbents of MIL-68(Al) and Al-1,4-NDC. Our work therefore presents an effective adsorbent material for DMZ capture and this strategy of using flexible adsorbents may provide a new perspective for removing other nitroimidazole antibiotics from contaminated water for environmental remediation.
机译:有效捕获废水中的硝基咪唑抗生素仍然是公共卫生和环境保护的严重任务。在本报告中,我们首先提出了一种使用高度灵活的金属有机框架进行二维唑(DMZ)捕获,实现优异的性能。值得注意的是,MIL-53(A1)表现出优异的饱和吸附容量为467.3mg(-1),超过先前报告的基于MOF基吸附剂和各种吸附剂,如活性碳。此外,它还在初始浓度为40mg L-1时显示出极快的吸附速率。超过90%的DMZ可以在10分钟内除去,并且吸附动力学在60分钟内接触后达到平衡。此外,还研究了DMZ和MIL-53(A1)之间的具体相互作用机制。 PXRD结果表明,MIL-53(AL)在低DMZ浓度下呈现窄孔(NP)形式。由于潜在能量的重叠,DMZ之间的范德瓦尔斯相互作用和MIL-53(AL)的框架可以显着增强,导致宿主 - 访客交互强,从而优异的DMZ去除效率。作为DMZ浓度的增加,MIL-53(A1)的孔结构被支撑开口并切换到大孔(LP)形式,进一步促进其摄取能力。与其刚性类似物吸附剂相比,这种柔性吸附剂显示出明显的优点,与其刚性的MIL-68(Al)和Al-1,4-Ndc的刚性类似物吸附剂相比。因此,我们的作品为DMZ捕获提出了有效的吸附材料,并且这种使用柔性吸附剂的策略可以提供一种新的视角,用于从污染的环境修复中除去来自受污染的水的其他硝基咪唑抗生素。

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