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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Improving the capability of UiO-66 for Cr(VI) adsorption from aqueous solutions by introducing isonicotinate N-oxide as the functional group
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Improving the capability of UiO-66 for Cr(VI) adsorption from aqueous solutions by introducing isonicotinate N-oxide as the functional group

机译:通过将Isonicotinate n-氧化物作为官能团,提高来自水溶液的Cr(vi)吸附的UIO-66的能力

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Considering the widespread production of Cr(VI) from various industrial processes and its damaging toxicity as a carcinogenic agent, it is imperative to investigate stable and efficient adsorbents with a rapid performance towards Cr(VI) adsorption. Zirconium-containing metal-organic frameworks (Zr-MOFs) have been recently used as environmentally friendly adsorbents for the reduction of metallic contaminants in aqueous media. Preparation from nontoxic metal sources, remarkable stabilities and distinguished physicochemical features, such as the high tendency of Zr-clusters to adsorb oxo-anions, beneficial structural defects, and modification of their properties via modulator synthesis, can be enumerated as the advantages of Zr-MOFs. In this study, we improved the adsorption capacity of UiO-66 as the most stable Zr-MOF for Cr(VI) adsorption from aqueous solutions through the gradual addition of an N-O functional group. This strategy ultimately led us to afford a new Zr-MOF structure (TMU-66) with a maximum Cr(VI) adsorption capacity of 60.241 mg g(-1), which is 4 times the absorption capacity of UiO-66, and very fast kinetics (3 min) that followed the pseudo-second-order kinetics. This study demonstrates that a conceptual design can be helpful in synthesizing safe and stable adsorbents with appropriate capacity and kinetics for adsorption.
机译:考虑到各种工业过程中Cr(vi)的广泛生产及其损伤毒性作为致癌剂,迫使稳定和有效的吸附剂,以促进Cr(vi)吸附的快速性能。含锆的金属 - 有机框架(ZR-MOF)已被用作环境友好的吸附剂,用于减少水性介质中的金属污染物。从无毒金属来源的制备,显着的稳定性和杰出的物理化学特征,例如通过调节剂合成吸附氧化阴离子,有益的结构缺陷和它们性能的高趋势,可以列举Zr-的优点MOF。在这项研究中,我们将UIO-66的吸附能力改善了通过逐渐加入N-O官能团从水溶液中吸附的最稳定的ZR-MOF。该策略最终导致我们提供了一种新的ZR-MOF结构(TMU-66),最大CR(VI)吸附容量为60.241mg g(-1),这是UIO-66的吸收能力的4倍,非常快速动力学(& 3分钟),然后是伪二阶动力学。本研究表明,概念设计可以有助于合成安全和稳定的吸附剂,以适当的容量和动力学进行吸附。

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