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稻壳基碳-硅复合材料对水溶液中双氯芬酸钠和卡马西平吸附的增效作用。

Additive effects of rice husk-based carbon-silica composites on adsorption of diclofenac sodium and carbamazepine from aqueous solutions.

机构信息

Institute of Chemical Technology, Leipzig University, Linnéstr. 3, 04103 Leipzig, Germany.

Institute of Chemical Technology, Leipzig University, Linnéstr. 3, 04103 Leipzig, Germany.

出版信息

Sci Total Environ. 2024 Dec 1;954:176389. doi: 10.1016/j.scitotenv.2024.176389. Epub 2024 Sep 18.

Abstract

The present study investigated the adsorption of diclofenac sodium (DCF) and carbamazepine (CBZ) on carbon-silica composites (CSC), activated carbon (RH-AC) and biogenic silica (RH-BS) based on rice husks from aqueous solutions. The materials were characterised using scanning electron microscopy, infrared spectroscopy, inductively coupled plasma optical emission spectroscopy, nitrogen sorption and elemental analysis. These methods provided essential information on the morphology, chemical composition, textural properties and surface characteristics of porous materials. The results of the adsorption studies demonstrate that the investigated materials exhibit varying adsorption capacities for DCF and CBZ. The maximum adsorption capacity was achieved by CSCs, with 1111 mg g for DCF and 455 mg g for CBZ and indicates additive effects on the adsorption capacity of CSCs compared to RH-AC and RH-BS. In addition to the hydrogen bonds and the π-π electron donor-acceptor interactions of the carbon component, further hydrogen bonds are formed by the silanol groups of the silica component. The CSCs derived from rice husks represent an innovative approach to the more efficient removal of pharmaceutical residues from wastewater. This is accomplished by utilizing a single starting material for both components, thereby yielding a unique structural combination.

摘要

本研究考察了碳硅复合材料(CSC)、活性炭(RH-AC)和基于稻壳的生物硅(RH-BS)对水溶液中双氯芬酸钠(DCF)和卡马西平(CBZ)的吸附。采用扫描电子显微镜、红外光谱、电感耦合等离子体发射光谱、氮气吸附和元素分析对材料进行了表征。这些方法提供了有关多孔材料形貌、化学成分、结构特性和表面特征的重要信息。吸附研究结果表明,所研究的材料对 DCF 和 CBZ 表现出不同的吸附能力。CSC 的最大吸附容量最高,对 DCF 的吸附容量为 1111mg/g,对 CBZ 的吸附容量为 455mg/g,表明 CSC 的吸附容量与 RH-AC 和 RH-BS 相比具有附加效应。除了碳成分的氢键和π-π电子供体-受体相互作用外,硅成分的硅醇基团还形成了进一步的氢键。稻壳衍生的 CSC 代表了一种从废水中更有效地去除药物残留的创新方法。这是通过同时利用单一起始材料来实现的,从而产生独特的结构组合。

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