Vafakish Bahareh, Wilson Lee D
Department of Chemistry, University of Saskatchewan, Saskatoon, SK S7N 5C9, Canada.
Molecules. 2020 Feb 26;25(5):1052. doi: 10.3390/molecules25051052.
The detection and removal of heavy metal species in aquatic environments is of continued interest to address ongoing efforts in water security. This study was focused on the preparation and characterization of aniline grafted chitosan (CS-Ac-An), and evaluation of its adsorption properties with Cu(II) under variable conditions. Materials characterization provides support for the grafting of aniline onto chitosan, where the kinetic and thermodynamic adsorption properties reveal a notably greater uptake (>20-fold) of Cu(II) relative to chitosan, where the adsorption capacity () of CS-Ac-An was 106.6 mg/g. Adsorbent regeneration was demonstrated over multiple adsorption-desorption cycles with good uptake efficiency. CS-Ac-An has a strong fluorescence emission that undergoes prominent quenching at part per billion levels in aqueous solution. The quenching process displays a linear response over variable Cu(II) concentration (0.05-5 mM) that affords reliable detection of low level Cu(II) levels by an in situ "" process. The chelation properties of CS-Ac-An with Cu(II) was characterized by complementary spectroscopic methods: IR, NMR, X-ray photoelectron (XPS), and scanning electron microscopy (SEM). The role of synergistic effects are inferred among two types of active adsorption sites: electron rich arene rings and amine groups of chitosan with Cu(II) species to afford a binding modality.
为应对水安全方面的持续努力,水生环境中重金属物种的检测与去除一直备受关注。本研究聚焦于苯胺接枝壳聚糖(CS-Ac-An)的制备与表征,并评估其在不同条件下对Cu(II)的吸附性能。材料表征为苯胺接枝到壳聚糖上提供了支持,动力学和热力学吸附性能表明,相对于壳聚糖,CS-Ac-An对Cu(II)的吸收显著更高(>20倍),CS-Ac-An的吸附容量为106.6 mg/g。通过多次吸附-解吸循环证明了吸附剂的再生,且具有良好的吸收效率。CS-Ac-An具有强烈的荧光发射,在水溶液中十亿分之一水平下会发生显著猝灭。猝灭过程在可变的Cu(II)浓度(0.05 - 5 mM)范围内呈现线性响应,通过原位“ ”过程能够可靠地检测低水平的Cu(II)。通过红外光谱(IR)、核磁共振(NMR)、X射线光电子能谱(XPS)和扫描电子显微镜(SEM)等互补光谱方法对CS-Ac-An与Cu(II)的螯合特性进行了表征。推断出两种活性吸附位点之间存在协同效应:富含电子的芳烃环和壳聚糖的胺基与Cu(II)物种之间形成了一种 结合模式。