Division of Environmental Sciences, Instituto Potosino de Investigación Científica y Tecnológica, A.C. , Camino a la Presa San José 2055, Col. Lomas 4a sección, C.P. 78216, San Luis Potosí, S.L.P., México.
Environ Sci Technol. 2014 Jan 21;48(2):1166-74. doi: 10.1021/es403929b. Epub 2013 Dec 31.
When activated carbon (AC) is modified with zirconium(IV) by impregnation or precipitation, the fluoride adsorption capacity is typically improved. There is significant potential to improve these hybrid sorbents by controlling the impregnation conditions, which determine the assembly and dispersion of the Zr phases on carbon surfaces. Here, commercial activated carbon was modified with Zr(IV) together with oxalic acid (OA) used to maximize the zirconium dispersion and enhance fluoride adsorption. Adsorption experiments were carried out at pH 7 and 25 °C with a fluoride concentration of 40 mg L(-1). The OA/Zr ratio was varied to determine the optimal conditions for subsequent fluoride adsorption. The data was analyzed using the Langmuir and Freundlich isotherm models. FTIR, XPS, and the surface charge distribution were performed to elucidate the adsorption mechanism. Potentiometric titrations showed that the modified activated carbon (ZrOx-AC) possesses positive charge at pH lower than 7, and FTIR analysis demonstrated that zirconium ions interact mainly with carboxylic groups on the activated carbon surfaces. Moreover, XPS analysis demonstrated that Zr(IV) interacts with oxalate ions, and the fluoride adsorption mechanism is likely to involve -OH(-) exchange from zirconyl oxalate complexes.
当活性炭(AC)通过浸渍或沉淀用锆(IV)改性时,其氟化物吸附能力通常会提高。通过控制浸渍条件来改善这些混合吸附剂具有很大的潜力,浸渍条件决定了 Zr 相在碳表面上的组装和分散。在这里,商用活性炭与草酸(OA)一起用 Zr(IV)改性,以最大限度地提高锆的分散度并增强氟化物的吸附。在 pH 7 和 25°C 下进行吸附实验,氟化物浓度为 40mg/L(-1)。改变 OA/Zr 比以确定随后进行氟吸附的最佳条件。使用 Langmuir 和 Freundlich 等温线模型对数据进行分析。进行了 FTIR、XPS 和表面电荷分布的测试,以阐明吸附机理。电位滴定表明,改性活性炭(ZrOx-AC)在 pH 低于 7 时带正电荷,FTIR 分析表明,锆离子主要与活性炭表面的羧酸基团相互作用。此外,XPS 分析表明,Zr(IV)与草酸盐离子相互作用,氟化物的吸附机理可能涉及从锆草酸盐配合物中交换 -OH(-)。