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高效且易于再生的氧化铜纳米颗粒的生物制造,用于去除刚果红和孔雀石绿的吸附剂

Biofabrication of highly effective and easily regenerated CuO nanoparticles as adsorbents for Congo red and malachite green removal.

作者信息

Ejeta Birhanu Asefa, Aaga Gemechu Fikadu, Fereja Workineh Mengesha, Mengesha Bekele

机构信息

Department of Chemistry, College of Natural and Computational Science, Dilla University, Dilla, Ethiopia.

Energy and Environment Research Center, Dilla University, Dilla, Ethiopia.

出版信息

Sci Rep. 2024 Oct 15;14(1):24116. doi: 10.1038/s41598-024-74974-5.

Abstract

An effective and easily regenerated adsorbent is the one for which scientists are making an effort to explore. In this study, copper oxide nanoparticles (CuO NPs) were synthesized in a green manner from a leaf extract of Moringa stenopetala and used for dye adsorption. XRD, FTIR, and SEM were employed for the characterization of CuO NPs. The crystallite size of the CuO NPs was calculated via Debye-Scherrer equation from the XRD data and was found to be 8.33 nm. The Cu-O bonding bending vibration at 1116 cm and stretching vibration at 1649 cm observed from the FTIR data strongly confirmed the formation of CuO NPs. SEM morphology analysis confirmed the formation of nanoparticles with a plate-like morphology and a spherically random orientation. The zero-point charge of CuO NPs was investigated and reported to be at pH 7. The adsorption of dyes on the greenly produced CuO NPs was studied by optimizing different adsorption parameters. The removal efficiencies of the green CuO NPs adsorbent were 99.54% at the optimum conditions (pH, 4; dye concentration, 30 mg/L; amount of adsorbent, 0.25 g; and contact time, 80 min) and 98.33% at the optimum conditions (pH, 11; dye concentration, 20 mg/L; amount of adsorbent, 0.4 g; and contact time, 80 min) for congo red and malachite green, respectively. The adsorption efficiency of the biosynthesized CuO NPs for the mixture of the two dyes was 92.3%. The green synthesized adsorbent was regenerated and able to work effectively for four cycles for the two dyes. The results of the kinetics-type investigation indicate that the adsorption of both dyes by the CuO NPs adsorbent best fits a pseudo-second-order model. The isotherm model-type investigation resulted in the fitting of the Langmuir adsorption isotherm for both the congo red and malachite green dyes.

摘要

一种有效且易于再生的吸附剂是科学家们正在努力探索的对象。在本研究中,以辣木的叶提取物为原料绿色合成了氧化铜纳米颗粒(CuO NPs),并将其用于染料吸附。采用XRD、FTIR和SEM对CuO NPs进行表征。根据XRD数据通过德拜-谢乐方程计算出CuO NPs的微晶尺寸为8.33 nm。从FTIR数据中观察到的1116 cm处的Cu-O键弯曲振动和1649 cm处的拉伸振动有力地证实了CuO NPs的形成。SEM形态分析证实形成了具有板状形态和球形随机取向的纳米颗粒。对CuO NPs的零电荷点进行了研究,结果表明其零电荷点pH值为7。通过优化不同的吸附参数,研究了绿色制备的CuO NPs对染料的吸附情况。在最佳条件下(pH值为4;染料浓度为30 mg/L;吸附剂用量为0.25 g;接触时间为80 min),绿色CuO NPs吸附剂对刚果红的去除效率为99.54%;在最佳条件下(pH值为11;染料浓度为20 mg/L;吸附剂用量为0.4 g;接触时间为80 min),对孔雀石绿的去除效率为98.33%。生物合成的CuO NPs对两种染料混合物的吸附效率为92.3%。绿色合成的吸附剂可再生,并且对两种染料能够有效循环工作四次。动力学类型研究结果表明,CuO NPs吸附剂对两种染料的吸附最符合准二级模型。等温线模型类型研究结果表明,刚果红和孔雀石绿染料均符合朗缪尔吸附等温线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0609/11480331/672669e4168c/41598_2024_74974_Fig1_HTML.jpg

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