Moral-Rodríguez Adriana I, Leyva-Ramos Roberto, Mendoza-Mendoza Esmeralda, Díaz-Flores Paola E, Carrales-Alvarado Damarys H, Alexandre-Franco María F, Fernández-González Carmen
Centro de Investigación y Estudios de Posgrado, Facultad de Ciencias Químicas, UASLP, Av. Dr. Manuel Nava No. 6, SLP 78210, San Luis Potosí, Mexico.
Cátedra-CONACYT, Mexico City, Mexico.
Environ Sci Pollut Res Int. 2023 Feb;30(10):25193-25204. doi: 10.1007/s11356-021-17466-7. Epub 2022 Jan 11.
The importance of the textural and physicochemical characteristics upon the adsorption capacity of the commercial activated carbons (ACs) Coconut, Wood, Merck, Darco, and Norit towards ronidazole (RNZ) and diclofenac (DCF) from water solution was investigated thoroughly in this work. At pH = 7, Coconut AC and Wood AC presented the highest adsorption capacity towards RNZ (444 mg/g) and DCF (405 mg/g). The maximum mass of RNZ adsorbed onto Coconut AC was higher in this study than those outlined previously in other works. Besides, the maximum capacity of Wood AC for adsorbing DCF was comparable to those found for other ACs. The adsorption capacity of all the ACs was increased by surface area and was favored by incrementing the acidic site concentration. The π-π stacking interactions were the predominant adsorption mechanism for the RNZ and DCF adsorption on ACs, and the acidic sites favored the adsorption capacity by activating the π-π stacking. Electrostatic interactions did not influence the adsorption of RNZ on Coconut AC, but electrostatic repulsion decreased that of DCF on Wood AC. The adsorption of DCF on Wood AC was reversible but not that of RNZ on Coconut AC. Besides, the adsorption of RNZ and DCF on the Coconut and Wood ACs was endothermic in the range of 15-25 °C.
本研究深入探讨了椰壳、木材、默克、达科和诺芮特等商用活性炭(AC)的质地和物理化学特性对水溶液中甲硝唑(RNZ)和双氯芬酸(DCF)吸附容量的影响。在pH = 7时,椰壳活性炭和木材活性炭对RNZ(444 mg/g)和DCF(405 mg/g)的吸附容量最高。本研究中椰壳活性炭吸附RNZ的最大质量高于此前其他研究中所概述的。此外,木材活性炭吸附DCF的最大容量与其他活性炭相当。所有活性炭的吸附容量均随表面积增加而提高,且酸性位点浓度增加有利于吸附。π-π堆积相互作用是RNZ和DCF在活性炭上吸附的主要机制,酸性位点通过激活π-π堆积来提高吸附容量。静电相互作用对RNZ在椰壳活性炭上的吸附无影响,但静电排斥降低了DCF在木材活性炭上的吸附。DCF在木材活性炭上的吸附是可逆的,但RNZ在椰壳活性炭上的吸附不可逆。此外,在15 - 25°C范围内,RNZ和DCF在椰壳和木材活性炭上的吸附是吸热的。