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核磁共振弛豫测量法用于在柱实验期间原位监测Amberlite IR120和Dowex Marathon MSC树脂负载镍和铜的情况。

NMR Relaxometry to Monitor In Situ the Loading of Amberlite IR120 and Dowex Marathon MSC Resins With Ni and Cu During a Column Experiment.

作者信息

Bernardi Marie, de Oliveira Silva Rodrigo, Vuong Quoc Lam, Sakellariou Dimitrios, Gossuin Yves

机构信息

Biomedical Physics Unit, Research Institute for Materials Science and Engineering, UMONS, Mons, Belgium.

Centre for Membrane Separations, Adsorption, Catalysis and Spectroscopy (cMACS), KU Leuven, Leuven, Belgium.

出版信息

Magn Reson Chem. 2025 Jan;63(1):62-73. doi: 10.1002/mrc.5490. Epub 2024 Oct 30.

Abstract

The removal of heavy metal ions from wastewater often necessitates the use of ion exchange resins. Current methods for assessing ion exchange efficiency are indirect and destructive. Some heavy metal ions, such as Cu and Ni, are paramagnetic and influence the NMR relaxation times of water protons. NMR relaxometry can therefore be utilized to track the removal of these ions by ion exchange resins. In this study, we use relaxometry to monitor in situ the loading with Ni and Cu of Amberlite IR120 and Dowex Marathon MSC resins, with the resin column inserted into a low-field NMR device. The multiexponential transverse relaxation curves were fitted using a biexponential model. Before and during the loading of the resin, the water with the slowest relaxation corresponds to treated water (free of Ni or Cu) flowing between the resin beads. After saturation, the slowest fraction corresponds to the untreated solution (containing Ni or Cu) flowing between the resin beads saturated with paramagnetic ions. The evolution with time of the transverse relaxation rate and the amplitude of the slowly relaxing water fraction shows a clear transition, occurring later at the bottom of the resin bed compared with the middle and top. This is interpreted as an indication of the saturation of the studied zone with paramagnetic ions, confirmed by the quantification of Ni or Cu in the effluent using AES spectroscopy. This proof-of-concept study demonstrates that NMR relaxometry can be used in situ to monitor the loading of a resin bed with paramagnetic ions.

摘要

从废水中去除重金属离子通常需要使用离子交换树脂。目前评估离子交换效率的方法是间接且具有破坏性的。一些重金属离子,如铜和镍,具有顺磁性,会影响水质子的核磁共振弛豫时间。因此,核磁共振弛豫测量法可用于追踪离子交换树脂对这些离子的去除情况。在本研究中,我们使用弛豫测量法原位监测Amberlite IR120和Dowex Marathon MSC树脂对镍和铜的负载情况,将树脂柱插入低场核磁共振设备中。使用双指数模型拟合多指数横向弛豫曲线。在树脂负载之前和期间,弛豫最慢的水对应于在树脂珠之间流动的处理后水(不含镍或铜)。饱和后,最慢的部分对应于在充满顺磁性离子的树脂珠之间流动的未处理溶液(含有镍或铜)。横向弛豫率和缓慢弛豫水分数的幅度随时间的演变显示出明显的转变,与中部和顶部相比,在树脂床底部出现得更晚。这被解释为所研究区域被顺磁性离子饱和的迹象,通过使用原子发射光谱法对流出物中的镍或铜进行定量分析得到了证实。这项概念验证研究表明,核磁共振弛豫测量法可用于原位监测树脂床对顺磁性离子的负载情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6d8/11608936/ad6666ccb52e/MRC-63-62-g003.jpg

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