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实验和理论方法研究新型季铵盐纳米复合材料对分散红 60 染料的吸附。

Experimentally and theoretically approaches for disperse red 60 dye adsorption on novel quaternary nanocomposites.

机构信息

Basic Science Department, Nahda University, Beni-Suef, Egypt.

Ministry of Health and Population, Central Administration of Environmental Affairs, Beni-Suef Branch, Beni-Suef, Beni-Suef Governorate, Egypt.

出版信息

Sci Rep. 2021 May 11;11(1):10000. doi: 10.1038/s41598-021-89351-9.

Abstract

A comprehensive study that combined both experimental and computational experiments was performed to evaluate the usage of organo-metal oxide nanocomposite for the elimination of disperse red 60 dye (DR) from aqueous solutions. Chitosan was modified by Schiff base to form nanoneedles chitosan-4-chloroacetophenone derivative. The derivatives were then impregnated with CeO-CuO-FeO or CeO-CuO-AlO metal oxides to prepare a novel quarternary organo-metal oxide nanocomposite. The novel nanocomposite, chitosan-4-chloroacetophenone/CeO-CuO-FeO (CF) and chitosan-4-chloroacetophenone/CeO-CuO-AlO (CA) are cheap and effective nano adsorbents that can be used for the uptake of DR from aqueous solution. The CF and CA nano-composites were characterized using different techniques. Moreover, the effect of adsorption parameters (initial DR concentration, time of contact, pH, temperature, and adsorbent mass) as well as CA and CF reusability tests were performed. Langmuir adsorption isotherm and pseudo-second-order kinetics models were best fitted with the adsorption process. The maximum amount of DR adsorbed was 100 mg/g on CF and CA at pH 2 and 4, respectively with a physical spontaneous, and exothermic adsorption process. Monte Carlo (MC) simulation studies indicated the adsorption of DR molecule on the CF and CA surfaces following a parallel mode in most of all studied configurations, confirming the strong interactions between the DR and surfaces atoms of CF and CA. The molecular structure analysis of DR dye adsorbed on the surface of CF and CA indicated that the adsorption process related to Van der Waals dispersion force. Consequently, this helps to trap DR dye molecules on the surface of CF and CA (i.e., physical adsorption), which supports our experimental results.

摘要

进行了一项综合研究,结合实验和计算实验,评估了有机金属氧化物纳米复合材料在从水溶液中去除分散红 60 染料(DR)中的应用。壳聚糖通过席夫碱改性形成纳米针状壳聚糖-4-氯苯乙酮衍生物。然后将这些衍生物浸渍在 CeO-CuO-FeO 或 CeO-CuO-AlO 金属氧化物中,制备出一种新型的四元有机金属氧化物纳米复合材料。新型纳米复合材料壳聚糖-4-氯苯乙酮/CeO-CuO-FeO(CF)和壳聚糖-4-氯苯乙酮/CeO-CuO-AlO(CA)是廉价有效的纳米吸附剂,可用于从水溶液中吸附 DR。使用不同的技术对 CF 和 CA 纳米复合材料进行了表征。此外,还进行了吸附参数(初始 DR 浓度、接触时间、pH 值、温度和吸附剂质量)的影响以及 CA 和 CF 可重复使用性测试。Langmuir 吸附等温线和准二级动力学模型最适合描述吸附过程。在 pH 值为 2 和 4 时,CF 和 CA 对 DR 的最大吸附量分别为 100 mg/g,吸附过程为物理自发和放热过程。蒙特卡罗(MC)模拟研究表明,在大多数研究构型中,DR 分子在 CF 和 CA 表面上的吸附遵循平行模式,证实了 DR 和 CF 和 CA 表面原子之间的强相互作用。DR 染料吸附在 CF 和 CA 表面上的分子结构分析表明,吸附过程与范德华色散力有关。因此,这有助于将 DR 染料分子捕获在 CF 和 CA 的表面上(即物理吸附),这支持了我们的实验结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8af9/8113254/a06ed8f28a7d/41598_2021_89351_Sch1_HTML.jpg

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