Modeling and Characterization of Ion-Imprinted Polymer for Arsenic Species Removal From Aqueous Solution

Q3 Materials Science
Nurlin Abu Samah
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引用次数: 0

Abstract

Arsenic (As) contamination is a global issue, especially in As-rich geological formations. In this study, an ion-imprinted polymer (As(III)-IIP) is synthesized and characterized in terms of kinetic modeling and application via solid phase extraction (SPE). As is detected by using the inductively coupled plasma-mass spectrometer (ICP-MS). The surface study is also included in this study, in which the differences between non-imprinted polymer (NIP) and As(III)-IIP before and after sorption are observed via field electron scanning electron microscope (FESEM). As a result, As(III)-IIP follows the pseudo-second-order of reaction in kinetics and reaches 95% within 5 min of removal. In FESEM micrographs, As(III)-IIP shows the particles on the surface are likely homogenous compared to NIP. Whereas As(III)-IIP after sorption is much more likely bigger than the original As(III)-IIP due to the expansion of particles during agitation in an aqueous solution. In the first cycle, 99.53% ± 0.45% of removal in real wastewater analysis is obtained via SPE. However, for the second cycle onwards, the removal is not removed totally, which shows that a new combination of eluent is required. In conclusion, As(III)-IIP shows good potential as a sorbent to be used for the removal of As from wastewater.

离子印迹聚合物去除水中砷的模拟与表征
砷污染是一个全球性问题,特别是在富砷地质构造中。本研究合成了一种离子印迹聚合物(As(III)-IIP),并通过固相萃取(SPE)对其动力学建模和应用进行了表征。用电感耦合等离子体质谱仪(ICP-MS)检测。本研究还包括表面研究,通过场电子扫描电镜(FESEM)观察了非印迹聚合物(NIP)和As(III)-IIP吸附前后的差异。结果表明,As(III)-IIP在动力学上符合准二级反应,在去除后5 min内达到95%。在FESEM显微照片中,As(III)-IIP显示,与NIP相比,表面的颗粒可能是均匀的。而吸附后的As(III)-IIP更有可能比原来的As(III)-IIP大,这是由于在水溶液中搅拌过程中粒子的膨胀。在第一个循环中,通过SPE对实际废水的去除率达到99.53%±0.45%。然而,对于第二个循环,去除并没有完全去除,这表明需要一种新的洗脱液组合。综上所述,As(III)-IIP作为一种吸附剂具有良好的去除废水中砷的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Macromolecular Symposia
Macromolecular Symposia Materials Science-Polymers and Plastics
CiteScore
1.50
自引率
0.00%
发文量
226
期刊介绍: Macromolecular Symposia presents state-of-the-art research articles in the field of macromolecular chemistry and physics. All submitted contributions are peer-reviewed to ensure a high quality of published manuscripts. Accepted articles will be typeset and published as a hardcover edition together with online publication at Wiley InterScience, thereby guaranteeing an immediate international dissemination.
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