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从叶片提取物中合成的氧化铜纳米粒子对藏红 O 染料的吸附。

Adsorption of Safranin-O dye by copper oxide nanoparticles synthesized from leaf extract.

机构信息

Department of Chemical Engineering, State University of Maringa, Parana, Brazil.

出版信息

Environ Technol. 2022 Aug;43(20):3047-3063. doi: 10.1080/09593330.2021.1914180. Epub 2021 May 8.

Abstract

The development of new technologies for water and wastewater treatment is a growing need due to the occurrence of micropollutants, such as dyes, in water resources. In this sense, green-synthesized nanoparticles are being extensively studied, due to their low cost, non-toxicity, and high efficiency in adsorption processes. Thus, the present study reports the green synthesis of copper oxide nanoparticles (CuO-NP), obtained from pomegranate () leaf extract, employed for the removal of Safranin-O (SO) dye. CuO-NP was characterized by physicochemical analysis. These analyzes suggested that the redox process occurred efficiently. Also, the material presented interesting elements for the removal of cationic dyes such as negative surface charge, high specific surface area, and predominance of mesopores. The kinetic data fitted the pseudo-second-order model, reaching equilibrium in 480 min. The equilibrium study resulted in a maximum adsorption capacity of 189.54 mg g at 298 K and the experimental data best fitted the Langmuir model. The effect of pH and ionic strength did not present significant changes, which demonstrates an advantage of this adsorbent over other materials. The regeneration study allowed to verify the possibility of reuse CuO-NP, since after 4 cycles the adsorption capacity was 44% of the initial value. Considering the results found, CuO-NP has a high potential for applicability in the treatment of water contaminated by dyes.

摘要

由于水中存在诸如染料之类的微量污染物,因此开发用于处理水和废水的新技术成为一种迫切需求。在这种情况下,由于绿色合成纳米粒子具有成本低、无毒性和在吸附过程中效率高等特点,因此正在被广泛研究。因此,本研究报告了从石榴()叶提取物中获得的氧化铜纳米粒子(CuO-NP)的绿色合成,该纳米粒子用于去除藏红 T(SO)染料。通过物理化学分析对 CuO-NP 进行了表征。这些分析表明,氧化还原过程有效地发生了。此外,该材料具有去除阳离子染料的有趣特性,例如负表面电荷、高比表面积和中孔为主。动力学数据符合准二级模型,在 480 分钟内达到平衡。平衡研究得出在 298 K 时的最大吸附容量为 189.54 mg g,实验数据最好符合 Langmuir 模型。pH 值和离子强度的影响没有表现出明显的变化,这表明该吸附剂相对于其他材料具有优势。再生研究验证了 CuO-NP 重复使用的可能性,因为在 4 个循环后,吸附容量为初始值的 44%。考虑到发现的结果,CuO-NP 在处理受染料污染的水方面具有很高的应用潜力。

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