Characterization Analysis of Mudstone and Study of Its Pb (II) Adsorption Characteristics in Polluted Water Bodies

IF 2.8 4区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Journal of Chemistry Pub Date : 2024-03-25 DOI:10.1155/2024/2510050
Baoqiang Zhang, Bo Zhao, Longfei Xia, Yingying Sun, Tianqing Chen, Hailan Shi
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Abstract

In order to explore a medium material for the efficient treatment of Pb(II) pollutants in groundwater, in this paper, mudstone is selected as the medium material, and the morphological structure of the mudstone is characterizes via X-ray diffraction (XRD), scanning electron microscopy (SEM), and Brunauer–Emmett–Teller (BET) analyses to study the feasibility of the mudstone adsorbing Pb(II) ions. Then, static adsorption experiments are carried out to investigate the removal effect of mudstone on Pb(II) in aqueous solutions under different conditions and to determine the optimal adsorption conditions. Finally, the results are fitted and analyzed using a thermodynamic model to explore the adsorption mechanism of the mudstone. The main results of this study are as follows. The main mineral composition of the mudstone used in the experiments includes CaCO3, SiO2, CaAl2O4·10H2O, and CaFe4O7. The specific surface area of the mudstone is as high as 23.027 m2·g−1, the pore size is 9.145 nm, and its surface structure is rough, with pores and fissures developed. The pore space and adsorption capacity of the mudstone were enhanced. When 1 g·L−1 of mudstone was added, the pH value of the solution was 6, the reaction time was 60 min, and the initial concentration of Pb(II) was 30 mg·L−1. The removal efficiency of Pb reached 84.5%, and the adsorption amount was 25.352 mg·g−1. For the removal of Pb(II) from the aqueous solution by the mudstone under different concentrations of Pb(II), the reaction was in accordance with the Langmuir adsorption isotherm model, and the maximum adsorption amount reached 54.975 mg·g−1. The relationship between the removal of Pb(II) and the reaction time was in accordance with the pseudo-second-order rate model. The results of this study suggest that mudstone can be used for the removal of Pb(II) from aqueous media.
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泥岩的特性分析及其在污染水体中的铅 (II) 吸附特性研究
为了探索一种高效处理地下水中铅(II)污染物的介质材料,本文选择泥岩作为介质材料,通过X射线衍射(XRD)、扫描电子显微镜(SEM)和Brunauer-Emmett-Teller(BET)分析对泥岩的形态结构进行表征,研究泥岩吸附铅(II)离子的可行性。然后,进行静态吸附实验,研究泥岩在不同条件下对水溶液中铅(II)的去除效果,并确定最佳吸附条件。最后,利用热力学模型对结果进行拟合和分析,探索泥岩的吸附机理。本研究的主要结果如下。实验所用泥岩的主要矿物成分包括 CaCO3、SiO2、CaAl2O4-10H2O 和 CaFe4O7。泥岩的比表面积高达 23.027 m2-g-1,孔径为 9.145 nm,表面结构粗糙,孔隙和裂隙发育。泥岩的孔隙空间和吸附能力都得到了提高。当加入 1 g-L-1 泥岩时,溶液的 pH 值为 6,反应时间为 60 分钟,Pb(II) 的初始浓度为 30 mg-L-1。铅的去除率达到 84.5%,吸附量为 25.352 mg-g-1。在不同浓度的 Pb(II)条件下,泥岩对水溶液中 Pb(II)的去除反应符合 Langmuir 吸附等温线模型,最大吸附量达到 54.975 mg-g-1。Pb(II) 的去除率与反应时间之间的关系符合假二阶速率模型。研究结果表明,泥岩可用于去除水介质中的铅(II)。
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来源期刊
Journal of Chemistry
Journal of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
5.90
自引率
3.30%
发文量
345
审稿时长
16 weeks
期刊介绍: Journal of Chemistry is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of chemistry.
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