School of Hydraulic Engineering, Changsha University of Science and Technology, Changsha, China.
Department of Civil and Environmental Engineering, Norwegian University of Science and Technology, Trondheim, Norway.
Environ Sci Pollut Res Int. 2020 Apr;27(12):13436-13446. doi: 10.1007/s11356-020-07940-z. Epub 2020 Feb 5.
Novel magnetic-activated carbon composites (MACs) were synthesized via coupling of a glucose-assisted hydrothermal pretreatment and subsequent thermal treatment using iron sludge and biological sludge. The adsorption properties of MACs for sulfonamide antibiotic removal from aqueous solution were investigated. Results revealed that the MACs had a high specific surface area with well-distributed magnetic nano-sized FeO/Fe particles with a graphitic shell. This finding indicates that the ferric compounds in the iron sludge were not only converted into magnetic ferrite but also worked as activators for graphitization of the surrounding amorphous carbon. The pseudo-second-order kinetics and Langmuir models were shown to well fit sulfonamide antibiotic adsorption on the MACs. There was a high correlation between the k·q and physicochemical parameters of the sulfonamides. The three parameters are molecular polarizability, octanol-water partition coefficient, and solubility, respectively. The sulfonamide adsorption by the MACs was highly pH dependent. Hydrophobic interaction, π-π interaction, as well as electrostatic interaction, played dominant roles in the sulfonamide adsorption.
新型磁性活性炭复合材料 (MACs) 是通过葡萄糖辅助水热预处理和随后使用铁污泥和生物污泥进行热解耦合合成的。研究了 MACs 对水溶液中磺胺类抗生素去除的吸附性能。结果表明,MACs 具有高比表面积,并且分布均匀的磁性纳米级 FeO/Fe 颗粒具有石墨壳。这表明铁污泥中的铁化合物不仅被转化为磁性铁氧体,而且还作为周围无定形碳石墨化的活化剂。磺胺类抗生素在 MACs 上的吸附符合拟二级动力学和 Langmuir 模型。k·q 与磺胺类抗生素的物理化学参数之间存在高度相关性。这三个参数分别是分子极化率、辛醇-水分配系数和溶解度。磺胺类抗生素的吸附高度依赖于 pH 值。疏水相互作用、π-π 相互作用以及静电相互作用在磺胺类抗生素吸附中起主要作用。