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氯苯那敏在商业活性炭上的吸附:操作条件和表面化学的影响。

Chlorphenamine adsorption on commercial activated carbons: Effect of Operating Conditions and Surface Chemistry.

机构信息

School of Engineering and Sciences, Tecnologico de Monterrey, Atizapán de Zaragoza, Estado de México, 52926, México.

Centro de Investigación y Estudios de Posgrado, Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, Av. Dr. M. Nava No.6, San Luis Potosí, SLP, 78210, México.

出版信息

Environ Sci Pollut Res Int. 2023 Nov;30(53):113382-113393. doi: 10.1007/s11356-023-30216-1. Epub 2023 Oct 17.

Abstract

Chlorphenamine (CPA) adsorption onto three activated carbons (ACs), namely, Megapol M (MM), Micro 10 (M10), and GAMA B (GB), was studied in this work. The textural properties, concentrations of active sites, surface charge and point of zero charge of the ACs were assessed. The surface areas (S) of MM, GB and M10 were 1107, 812 and 766 m/g, respectively. The MM surface had an acidic character, while the surfaces of M10 and GB were basic. The adsorption capacity of MM, M10, and GB towards CPA was studied at pH 7 and 11, and the adsorption capacity decreased in the order MM > M10 ≈ GB, which was ascribed to the magnitude of S and the concentration of acidic sites. The solution pH significantly increased the adsorption capacity of MM towards CPA by raising the solution pH from 5 to 9, and this behavior was attributed to the electrostatic attraction between the negatively charged surface of MM and the cationic species of CPA. The maximum uptake of CPA adsorbed on MM was 574.6 mg/g at pH = 11 and T = 25 °C. The adsorption capacity of MM was slightly raised by incrementing the temperature. Lastly, the zeta potential measurements of pristine MM and MM saturated with CPA confirmed that the electrostatic attraction predominated in the pH range of 5-9, and the π-π stacking interactions were the principal mechanism of CPA adsorption on MM at pH 11.

摘要

本工作研究了氯苯那敏(CPA)在三种活性炭(AC)上的吸附,即 Megapol M(MM)、Micro 10(M10)和 GAMA B(GB)。评估了 AC 的比表面积、活性位浓度、表面电荷和零电荷点。MM、GB 和 M10 的比表面积分别为 1107、812 和 766 m/g。MM 表面具有酸性,而 M10 和 GB 表面具有碱性。在 pH 7 和 11 下研究了 MM、M10 和 GB 对 CPA 的吸附容量,吸附容量的顺序为 MM > M10 ≈ GB,这归因于 S 的大小和酸性位的浓度。通过将溶液 pH 从 5 升高到 9,显著增加了 MM 对 CPA 的吸附容量,这种行为归因于 MM 带负电荷的表面和 CPA 的阳离子物种之间的静电吸引。在 pH = 11 和 T = 25°C 时,CPA 在 MM 上的最大吸附量为 574.6 mg/g。MM 的吸附容量略微随着温度的升高而提高。最后,MM 原粉和 MM 吸附 CPA 后的 ζ 电位测量证实,在 pH 5-9 范围内静电吸引占主导地位,而在 pH 11 时,CPA 在 MM 上的吸附主要是 π-π 堆积相互作用。

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