Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, State Ministry of Education, Chongqing University, Chongqing, 400045, PR China.
Shenzhen Shenshui Water Resources Consulting Co., Ltd, Shenzhen, 518024, PR China.
Environ Sci Pollut Res Int. 2024 Oct;31(49):59140-59154. doi: 10.1007/s11356-024-35151-3. Epub 2024 Sep 28.
The co-contamination of dyes and heavy metal ions often used as mordants poses potential risks to environment and public health, and is a challenging problem that needs to be solved in water treatment. Meanwhile, improving the solid-liquid separation capability of adsorbents is of great significance for the application of adsorption technology. Herein, amidation modified hollow composite microspheres were prepared using hollow glass microsphere (HGM) as matrix through hydrolysis and condensation of silane coupling agent (A-1100) and subsequent amidation reaction. The material (HGMNE) not only exhibited good adsorption performance for DB86 and Ni but also had stable self-floating capability. The adsorption of DB86 by HGMNE is mainly carried out by the electrostatic interaction between positively charged quaternary amine nitrogen and negatively charged DB86, while the adsorption of Ni is achieved by the carboxyl group in EDTA group through complexation interaction to adsorb Ni to form Ni complex. This research not only is devoted to the utilization of HGMNE to achieve the co-removal of DB86 and Ni and flexible self-floating solid-liquid separation but also verifies the feasibility and applicability of the modification method of introducing organic adsorption functional groups through amidation reaction, so as to expand the preparation path of HGM-based adsorbents.
染料和重金属离子的共污染经常作为媒染剂使用,对环境和公众健康构成潜在风险,是水处理中需要解决的一个具有挑战性的问题。同时,提高吸附剂的固液分离能力对于吸附技术的应用具有重要意义。本文以空心玻璃微球(HGM)为基体,通过硅烷偶联剂(A-1100)的水解缩合以及后续的酰胺化反应,制备了接枝改性的中空复合微球。该材料(HGMNE)不仅对 DB86 和 Ni 表现出良好的吸附性能,而且具有稳定的自浮能力。HGMNE 对 DB86 的吸附主要是通过带正电荷的季铵氮与带负电荷的 DB86 之间的静电相互作用进行的,而对 Ni 的吸附则是通过 EDTA 基团中的羧基与 Ni 形成配位键,从而将 Ni 吸附到形成的 Ni 配合物上。本研究不仅致力于利用 HGMNE 实现 DB86 和 Ni 的共去除和灵活的自浮固液分离,还验证了通过酰胺化反应引入有机吸附功能基团的改性方法的可行性和适用性,从而扩展了基于 HGM 的吸附剂的制备途径。