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Removal of Ni(II) and Cu(II) from aqueous solutions using 'green' zero-valent iron nanoparticles produced by oak and mulberry leaf extracts

机译:使用橡木和桑叶提取物产生的“绿色”零价铁纳米颗粒从水溶液中去除Ni(II)和Cu(II)

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摘要

The production of zero-valent iron nanoparticles, using extracts from natural products, represents a green and environmentally friendly method. Synthesis of 'green' zero-valent nanoparticles (nZVI) using oak and mulberry leaf extracts (OL-nZVI and ML-nZVI) proved to be a promising approach for Ni(II) and Cu(II) removal from aqueous solutions. Characterization of the produced green nZVI materials had been conducted previously and confirmed the formation of nanosize zero-valent iron particles within the size range of 10-30 nm, spherical with minimum agglomeration observed by transmission electron microscopy and scanning electron microscope morphology measurements. Batch experiments revealed that the adsorption kinetics followed a pseudo-second-order rate equation. The obtained adsorption isotherm data could be well described by the Freundlich model and OL-nZVI showed higher adsorption capacity for Ni(II) removal than ML-nZVI, while ML-nZVI adsorption capacity was higher for Cu(II). In addition, investigation of the pH effect showed that varying the initial pH value had a great effect on Ni(II) and Cu(II) removal. Adsorbed amounts of Ni(II) and Cu(II) increased with pH increase to pH 7.0 and 8.0. This study indicated that nZVI produced by a low-cost and non-toxic method with oak and mulberry leaf extracts could be used as a new material for remediation of water matrices contaminated with Ni(II) and Cu(II).
机译:使用天然产物的提取物生产零价铁纳米颗粒代表了一种绿色环保的方法。使用橡木和桑叶提取物(OL-nZVI和ML-nZVI)合成“绿色”零价纳米粒子(nZVI)被证明是从水溶液中去除Ni(II)和Cu(II)的一种有前途的方法。先前已经对所生产的绿色nZVI材料进行了表征,并确认了在10-30 nm尺寸范围内的纳米零价铁颗粒的形成,通过透射电子显微镜和扫描电子显微镜形态学测量可观察到球形且团聚最小。批处理实验表明,吸附动力学遵循伪二级速率方程。所获得的吸附等温线数据可以用Freundlich模型很好地描述,并且OL-nZVI对Ni(II)的吸附能力比ML-nZVI高,而ML-nZVI对Cu(II)的吸附能力更高。此外,对pH值影响的研究表明,改变初始pH值对Ni(II)和Cu(II)的去除有很大影响。 Ni(II)和Cu(II)的吸附量随pH值增加到7.0和8.0而增加。这项研究表明,用橡树和桑叶提取物通过低成本和无毒方法生产的nZVI可以用作修复被Ni(II)和Cu(II)污染的水基质的新材料。

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