半胱氨酸功能化磁性锰基MOF复合材料增强水中Pb2+的去除

IF 4.4 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Langmuir Pub Date : 2025-04-21 DOI:10.1021/acs.langmuir.5c00338
Ying Wu, Bei Shi, Lei Yang, Fei Wang, Lei Hou, Zhongguo Shan, Haihua Wang
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引用次数: 0

摘要

在众多有毒水污染物中,Pb2+对人类健康构成重大威胁。设计了一种新型磁性锰基金属-有机骨架(Mn-MOF)复合材料MFCys,用于选择性去除Pb2+。利用前瞻性Mn-MOF {[Mn2(tzpa)(OH)(H2O)2]·DMA}n,用l-半胱氨酸(l-Cys)对磁性Mn-MOF/Fe3O4 (MF)进行合成修饰,制备了MFCys。与Mn-MOF和MF相比,MFCys对Pb2+的吸附在2 h内达到平衡。Langmuir模型表明MFCys对Pb2+进行了化学吸附。同时,MFCys对Pb2+的吸附过程符合准二级(PSO)动力学模型,证实了MFCys对Pb2+的吸附主要是通过单层化学吸附。热力学结果表明MFCys对Pb2+的吸附是自发的、吸热的。此外,即使在Cd2+、Zn2+、Ca2+、Mg2+、Na+、K+和Pb2+竞争存在的情况下,由于MFCys与Pb2+之间的静电相互作用和电子耦合效应,MFCys对Pb2+也表现出优异的选择性。磁性MFCys通过使用外部磁铁进行回收,可以在1分钟内轻松从悬浮液中分离出来。经过5次循环后,MFCys对Pb2+的吸附容量仍保持在98.0%,具有良好的重复使用性能。值得注意的是,MFCys在模拟铅酸电池废水中表现出优异的Pb2+吸附性能,即使经过5次循环,仍能保持98.3%的原始Pb2+吸附量。这些结果表明,易于分离的Mn-MOF复合材料在Pb2+废水处理中具有广阔的应用前景。
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Cysteine-Functionalized Magnetic Manganese-Based MOF Composite for Enhanced Removal of Pb2+ from Water
Among the multitude of toxic water pollutants, Pb2+ poses a significant threat to human health. A novel magnetic manganese-based metal–organic framework (Mn-MOF) composite, MFCys, was designed for the selective removal of Pb2+. MFCys was readily synthesized through the postsynthetic modification of magnetic Mn-MOF/Fe3O4 (MF) with l-cysteine (l-Cys), utilizing a prospective Mn-MOF, {[Mn2(tzpa)(OH)(H2O)2]·DMA}n. MFCys demonstrated superior adsorption of Pb2+, reaching equilibrium within 2 h compared to Mn-MOF and MF. The Langmuir model indicated that MFCys underwent chemisorption of Pb2+. Meanwhile, the adsorption process aligned with the pseudo-second-order (PSO) kinetic model, confirming that Pb2+ was adsorbed by MFCys mainly through monolayer chemisorption. Thermodynamic results revealed that the adsorption of Pb2+ by MFCys was spontaneous and endothermic. Moreover, even in the presence of competing Cd2+, Zn2+, Ca2+, Mg2+, Na+, K+, and Pb2+, MFCys exhibited exceptional selectivity for Pb2+ due to the electrostatic interaction and the electronic coupling effect between MFCys and Pb2+. The magnetic MFCys enabled easy separation from the suspension within 1 min by using an external magnet for recycling. MFCys retained 98.0% of the initial adsorption capacity for Pb2+ after five cycles, demonstrating excellent reusability. Notably, MFCys displayed exceptional adsorption of Pb2+ in simulated lead-acid battery wastewater, retaining 98.3% of its pristine adsorption capacity for Pb2+ even after five cycles. These findings suggest that an easily separated Mn-MOF composite has promising application prospects in Pb2+ wastewater treatment.
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来源期刊
Langmuir
Langmuir 化学-材料科学:综合
CiteScore
6.50
自引率
10.30%
发文量
1464
审稿时长
2.1 months
期刊介绍: Langmuir is an interdisciplinary journal publishing articles in the following subject categories: Colloids: surfactants and self-assembly, dispersions, emulsions, foams Interfaces: adsorption, reactions, films, forces Biological Interfaces: biocolloids, biomolecular and biomimetic materials Materials: nano- and mesostructured materials, polymers, gels, liquid crystals Electrochemistry: interfacial charge transfer, charge transport, electrocatalysis, electrokinetic phenomena, bioelectrochemistry Devices and Applications: sensors, fluidics, patterning, catalysis, photonic crystals However, when high-impact, original work is submitted that does not fit within the above categories, decisions to accept or decline such papers will be based on one criteria: What Would Irving Do? Langmuir ranks #2 in citations out of 136 journals in the category of Physical Chemistry with 113,157 total citations. The journal received an Impact Factor of 4.384*. This journal is also indexed in the categories of Materials Science (ranked #1) and Multidisciplinary Chemistry (ranked #5).
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Kinetic vs Thermodynamic Processes in the Two-Dimensional Crystallization of a Hydrogen-Bonding Building Block. Mesoscopic Approach for Disjoining Pressure Effects in Nanoscale Thin Liquid Films on Nanostructured Surfaces. Adhesion-Dependent Receding Contact Line Dynamics of Water Droplets and Residual Droplet Deposition on Inclined Grooved Hydrophobic Surfaces. Unveiling the Effect of Salt on Methane Hydrate Dissociation Kinetics under Strong Thermal Perturbation. Nonintrusive Dynamic Pressure Monitoring of Sloshing Liquid Using a Hierarchically Microstructured Flexible Sensor.
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