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文本特性及 Zn-Mg-Al 层状双氢氧化物对结晶紫染料去除的吸附行为作为一种低成本、有效且可回收的吸附剂。

Textural properties and adsorption behavior of Zn-Mg-Al layered double hydroxide upon crystal violet dye removal as a low cost, effective, and recyclable adsorbent.

机构信息

Physics Department, Faculty of Science, Minia University, P.O. Box 61519, Minia, Egypt.

出版信息

Sci Rep. 2023 Apr 20;13(1):6435. doi: 10.1038/s41598-023-33142-x.

Abstract

The preparation of adsorbents plays a vital role in the adsorption method. In particular, many adsorbents with high specific surface areas and unique shapes are essential for the adsorption strategy. A Zn-Mg-Al/layer double hydroxide (LDH) was designed in this study using a simple co-precipitation process. Adsorbent based on Zn-Mg-Al/LDH was used to remove crystal violet (CV) from the wastewater. The impacts of the initial dye concentration, pH, and temperature on CV adsorption performance were systematically examined. The adsorbents were analyzed both before and after adsorption using FTIR, XRD, and SEM. The roughness parameters and surface morphologies of the produced LDH were estimated using 3D SEM images. Under the best conditions (dose of adsorbent = 0.07 g and pH = 9), the maximum adsorption capacity has been achieved. Adsorption kinetics studies revealed that the reaction that led to the adsorption of CV dye onto Zn-Mg-Al/LDH was a pseudo-second-order model. Additionally, intraparticle diffusion suggests that Zn-Mg-Al/LDH has a fast diffusion constant for CV molecules (0.251 mg/(g min)). Furthermore, as predicted by the Langmuir model, the maximal Zn-Mg-Al/LDH adsorption capacity of CV was 64.80 mg/g. The CV dimensionless separation factor (R) onto Zn-Mg-Al/LDH was 0.769, indicating that adsorption was favorable. The effect of temperature was performed at 25, 35, and 45 °C in order to establish the thermodynamic parameters ∆H, ∆S, and ∆G. The computed values indicated exothermic and spontaneous adsorption processes. The study presented here might be used to develop new adsorbents with enhanced adsorption capabilities for the purpose of protecting the water environment.

摘要

吸附剂的制备在吸附方法中起着至关重要的作用。特别是,许多具有高比表面积和独特形状的吸附剂对于吸附策略是必不可少的。本研究采用简单的共沉淀法设计了一种 Zn-Mg-Al/层状双氢氧化物(LDH)。基于 Zn-Mg-Al/LDH 的吸附剂用于从废水中去除结晶紫(CV)。系统研究了初始染料浓度、pH 值和温度对 CV 吸附性能的影响。使用 FTIR、XRD 和 SEM 对吸附前后的吸附剂进行了分析。使用 3D SEM 图像估计了所生产的 LDH 的粗糙度参数和表面形貌。在最佳条件下(吸附剂用量为 0.07 g,pH 值为 9),达到了最大吸附容量。吸附动力学研究表明,导致 CV 染料吸附到 Zn-Mg-Al/LDH 上的反应是伪二级模型。此外,内扩散表明 Zn-Mg-Al/LDH 对 CV 分子具有快速扩散常数(0.251 mg/(g min))。此外,根据 Langmuir 模型预测,CV 对 Zn-Mg-Al/LDH 的最大吸附容量为 64.80 mg/g。CV 到 Zn-Mg-Al/LDH 的无量纲分离因子(R)为 0.769,表明吸附是有利的。在 25、35 和 45°C 下进行了温度效应实验,以确定热力学参数 ∆H、∆S 和 ∆G。计算值表明吸附是放热和自发的过程。本研究可以用来开发具有增强吸附能力的新型吸附剂,以保护水环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9513/10119303/b497b829a8c8/41598_2023_33142_Fig1_HTML.jpg

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