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二胺改性纳米二氧化硅对水溶液中偶氮染料的捕集。

Nano-Silica Modified with Diamine for Capturing Azo Dye from Aqueous Solutions.

机构信息

Biomedical Engineering Department, Faculty of Engineering, King Faisal University, P.O. Box 400, Al-Ahsa 31982, Saudi Arabia.

出版信息

Molecules. 2022 May 24;27(11):3366. doi: 10.3390/molecules27113366.

Abstract

Nano-silica particles decorated with amine groups (S-DA) were prepared via a simple, one-pot method, and under very mild conditions in an attempt to improve the affinity of the silica nanoparticles toward capturing anionic organic dye, namely, methyl orange (MO). The prepared sample was characterized by different techniques such as XRD for crystallinity, SEM for morphological structure, TGA for thermal stability, BET surface area, and FTIR for surface functional groups. The prepared sample was tested for the removal of MO under different conditions including the mass of adsorbent, pH, initial concentration, and time. Results showed that the adsorption of MO was very fast with equilibrium achieved in less than 30 min and a maximum removal efficiency of 100% for a mass to volume ratio of 10 g/3 L, a pH of 2.5, initial concentration of 10 mgL, and under stagnant conditions. These results were compared with a bare nano-silica, which was not able to adsorb more than 3% after 24 h, indicating the important effect of amine groups. Furthermore, recycling the adsorbent was achieved by rinsing the MO-loaded adsorbent with a dilute solution of KOH. The adsorbent maintained 50% of its initial removal efficiency after four adsorption-desorption cycles.

摘要

通过简单的一锅法,在非常温和的条件下制备了胺基修饰的纳米二氧化硅颗粒(S-DA),以提高纳米二氧化硅颗粒对阴离子有机染料,即甲基橙(MO)的亲和力。采用 XRD 分析结晶度、SEM 分析形貌结构、TGA 分析热稳定性、BET 表面积分析和 FTIR 分析表面官能团等不同技术对制备的样品进行了表征。在不同条件下测试了制备的样品对 MO 的去除效果,包括吸附剂的质量、pH 值、初始浓度和时间。结果表明,MO 的吸附非常快,在 30 分钟内达到平衡,在质量与体积比为 10 g/3 L、pH 值为 2.5、初始浓度为 10 mg/L、静置条件下,最大去除效率达到 100%。这些结果与未修饰的纳米二氧化硅进行了比较,后者在 24 小时后吸附量不到 3%,表明胺基的重要作用。此外,通过用稀 KOH 溶液冲洗负载 MO 的吸附剂,可以实现吸附剂的回收。在四个吸附-解吸循环后,吸附剂仍保持其初始去除效率的 50%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eaf/9181961/d5a239da63e7/molecules-27-03366-g001a.jpg

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