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用锐钛矿型 TiO2 纳米吸附剂从受污染的灌溉水中摄取 Pb(II)。

Pb(II) Uptake from Polluted Irrigation Water Using Anatase TiO Nanoadsorbent.

机构信息

Laboratorio de No Metálicos, Facultad de Ingeniería Química, Universidad Nacional del Centro del Perú (UNCP), Av. Mariscal Ramón Castilla Nº 3909, El Tambo, Huancayo 12000, Peru.

Centro Brasileiro de Pesquisas Físicas, Rio de Janeiro 22290-180, RJ, Brazil.

出版信息

Molecules. 2023 Jun 7;28(12):4596. doi: 10.3390/molecules28124596.

Abstract

The adsorption characteristics of titanium dioxide nanoparticles (nano-TiO) for the removal of Pb(II) from irrigation water were investigated in this work. To accomplish this, several adsorption factors, such as contact time and pH, were tested to assess adsorption efficiencies and mechanisms. Before and after the adsorption experiments, commercial nano-TiO was studied using X-ray diffraction (XRD), scanning and transmission electron microscopy (SEM and TEM), energy dispersive spectroscopy (EDS), and X-ray photoelectron spectroscopy (XPS). The outcomes showed that anatase nano-TiO was remarkably efficient in cleaning Pb(II) from water, with a removal efficiency of more than 99% after only one hour of contact time at a pH of 6.5. Adsorption isotherms and kinetic adsorption data matched the Langmuir and Sips models quite well, showing that the adsorption process occurred at homogenous sites on the surface of nano-TiO by forming a Pb(II) adsorbate monolayer. The XRD and TEM analysis of nano-TiO following the adsorption procedure revealed a non-affected single phase (anatase) with crystallite sizes of 9.9 nm and particle sizes of 22.46 nm, respectively. According to the XPS data and analyzed adsorption data, Pb ions accumulated on the surface of nano-TiO through a three-step mechanism involving ion exchange and hydrogen bonding mechanisms. Overall, the findings indicate that nano-TiO has the potential to be used as an effective and long-lasting mesoporous adsorbent in the treatment and cleaning of Pb(II) from water bodies.

摘要

本工作研究了二氧化钛纳米粒子(nano-TiO)对灌溉水中 Pb(II)的吸附特性。为此,测试了接触时间和 pH 等几种吸附因素,以评估吸附效率和机制。在吸附实验前后,使用 X 射线衍射(XRD)、扫描和透射电子显微镜(SEM 和 TEM)、能谱(EDS)和 X 射线光电子能谱(XPS)对商业 nano-TiO 进行了研究。结果表明,锐钛矿型 nano-TiO 对水中 Pb(II)的去除非常有效,在 pH 值为 6.5 时,仅接触 1 小时后,去除效率就超过 99%。吸附等温线和动力学吸附数据非常符合 Langmuir 和 Sips 模型,表明吸附过程是在 nano-TiO 表面的均匀位上发生的,通过形成 Pb(II)吸附物的单层。吸附后 nano-TiO 的 XRD 和 TEM 分析表明,没有受到影响的单相(锐钛矿)具有 9.9nm 的晶粒度和 22.46nm 的粒径。根据 XPS 数据和分析的吸附数据,Pb 离子通过涉及离子交换和氢键机制的三步机制积累在 nano-TiO 的表面上。总体而言,研究结果表明,nano-TiO 有望成为处理和清洁水体中 Pb(II)的有效且持久的中孔吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebcc/10305539/ca457c9fa92b/molecules-28-04596-g001.jpg

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