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镁铁氧体磁性生物炭增强水溶液中磺胺甲恶唑和四环素的吸附性能。

Enhanced adsorption performance of sulfamethoxazole and tetracycline in aqueous solutions by MgFeO-magnetic biochar.

机构信息

State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu 610065, China E-mail:

College of Water Conservancy and Hydropower Engineering, Sichuan Agricultural University, Ya'an 625014, China.

出版信息

Water Sci Technol. 2022 Aug;86(3):568-583. doi: 10.2166/wst.2022.227.

Abstract

Biochar has been reported as an excellent adsorbent for antibiotics, but the application faces the challenges of complicated separation. Here, MgFeO-magnetic biochars (MBCs) derived from corncob were synthesized at 300 °C to remove sulfamethoxazole (SMX) and tetracycline (TC) simultaneously. The characteristics of MBC300 had a high magnetic intensity. MBC300 had the maximum adsorption capacity of SMX with 50.75 mg/g and the high adsorption amount of TC with 120.36 mg/g respectively, which were 4.49 and 6.48 times those of BC300. MBC300 had the advantage of energy conservation compared with MBC450 and MBC600. The better fitting kinetics and isotherms indicated that the SMX and TC sorption onto MBC300 were governed by chemisorption. FTIR and XPS analyses confirmed that the SMX sorption onto MBC300 was dominated by polar interactions and π-π electron donor-acceptor interactions (π-π EDA). Furthermore, the TC sorption was involved in pore filling, π-π EDA, H-bonds, and surface complexation. MBC300 presented effective adsorption of SMX and TC over a wide range of pH. The competition between antibiotics and coexisting pollutants of dissolved organic matter (DOM), Ca, CO, and PO significantly inhibited the sorption. The results indicate that MBC300 is an effective and promising adsorbent to treat SMX and TC simultaneously.

摘要

生物炭已被报道为抗生素的优良吸附剂,但在应用中面临着分离复杂的挑战。在这里,以玉米芯为原料,在 300°C 下合成了 MgFeO-磁性生物炭(MBC),以同时去除磺胺甲恶唑(SMX)和四环素(TC)。MBC300 的特性具有较高的磁强度。MBC300 对 SMX 的最大吸附容量为 50.75mg/g,对 TC 的吸附量高达 120.36mg/g,分别是 BC300 的 4.49 倍和 6.48 倍。与 MBC450 和 MBC600 相比,MBC300 具有节能优势。更好的拟合动力学和等温线表明,SMX 和 TC 吸附到 MBC300 上是由化学吸附控制的。FTIR 和 XPS 分析证实,SMX 吸附到 MBC300 上主要是由极性相互作用和π-π电子给体-受体相互作用(π-π EDA)主导的。此外,TC 的吸附涉及到孔填充、π-π EDA、氢键和表面络合。MBC300 在较宽的 pH 范围内对 SMX 和 TC 表现出有效的吸附。抗生素与共存污染物(DOM)、Ca、CO 和 PO 之间的竞争显著抑制了吸附。结果表明,MBC300 是一种有效且有前途的吸附剂,可同时处理 SMX 和 TC。

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