Bijan BinaHamidreza PourzamaniAlimorad RashidiMohammad Mehdi Amin
The removal of ethylbenzene (E) from aqueous solution by multiwalled, single-walled, and hybrid carbon nanotubes (MWCNTs, SWCNTs, and HCNTs) was evaluated for a nanomaterial dose of 1 g/L, concentration of 10–100 mg/L, and pH 7. The equilibrium amount removed by SWCNTs (E: 9.98 mg/g) was higher than by MWCNTs and HCNTs. Ethylbenzene has a higher adsorption tendency on CNTs, so that more than 98% of it adsorbed in first 14 min, which is related to the low water solubility and the high molecular weight. The SWCNTs performed better for ethylbenzene sorption than the HCNTs and MWCNTs. Isotherms study indicates that the BET isotherm expression provides the best fit for ethylbenzene sorption by SWCNTs. Carbon nanotubes, specially SWCNTs, are efficient and rapid adsorbents for ethylbenzene which possess good potential applications to maintain high-quality water. Therefore, it could be used for cleaning up environmental pollution to prevent ethylbenzene borne diseases.
Hamidreza PourzamaniBijan BinaMohammad Mehdi AminAlimorad Rashidi
Fei YuJie MaJuan WangMingzheng ZhangJie Zheng
Bijan BinaMohammad Mehdi AminAlimorad RashidiHamidreza Pourzamani
Nguyễn Đức Vũ QuyênTrần Ngọc TuyềnĐinh Quang KhiếuHồ Văn Minh HảiĐặng Xuân TínPhạm Thị LanKiyoshi Itatani