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在带有挡板的电过氧过程中使用含有蛋壳的绿色纳米复合材料去除新兴的四环素污染物。

Using green nanocomposite containing eggshell in the electroperoxone process in a baffled reactor to remove the emerging tetracycline pollutant.

机构信息

Faculty of Civil and Environmental Engineering, Tarbiat Modares University, P.O. Box 14115-397, Tehran, Iran.

出版信息

Environ Res. 2024 Dec 1;262(Pt 2):119969. doi: 10.1016/j.envres.2024.119969. Epub 2024 Sep 12.

Abstract

This study examined the eradication of Tetracycline hydrochloride (TCH) antibiotic, an emerging pollutant, by utilizing eggshell membrane activated carbon (EMAC) and magnetite (FeO) nanocomposite in conjunction with the electroperoxone process employing the One Factor at a Time method (OFAT) in a baffled reactor. The nanocomposite was synthesized through the hydrothermal method using an autoclave, and its properties were assessed via XRD, FTIR, FESEM, EDAX Mapping, BET, and VSM analyses. The findings revealed that under optimal conditions (including a pollutant concentration of 300 mg/L, a natural pH of 6.2, an ozone consumption rate of 0.28 g/h, a nanocomposite concentration of 0.2 g/L, a flow intensity of 0.5 A, a wastewater recirculation flow rate of 8 L/h, and a 0.1 M NaSO electrolyte concentration), 95.9%, 76.4%, and 53.4% of pollutants, COD, and TOC were respectively eliminated after 90 min. Additionally, the reusability of the nanocomposite was evaluated over five usage periods, during which the process efficiency decreased from 95.9% to 83.1%. In short, this study proved that EMAC/FeO nanocomposites are promising electroperoxone catalysts due to their low cost, excellent stability and reusability, environmental compatibility, and superior catalytic activity for TCH antibiotics removal.

摘要

本研究利用蛋壳膜活性炭(EMAC)和磁铁矿(FeO)纳米复合材料,并结合在带有挡板的反应器中采用单因素法(OFAT)的电过氧过程,研究了四环盐酸(TCH)抗生素这种新兴污染物的消除。纳米复合材料通过使用高压釜的水热法合成,并通过 XRD、FTIR、FESEM、EDAX 映射、BET 和 VSM 分析评估其性质。研究结果表明,在最佳条件下(包括污染物浓度为 300mg/L、自然 pH 值为 6.2、臭氧消耗率为 0.28g/h、纳米复合材料浓度为 0.2g/L、流动强度为 0.5A、废水再循环流速为 8L/h 和 0.1M NaSO 电解质浓度),经过 90 分钟后,污染物、COD 和 TOC 的去除率分别达到 95.9%、76.4%和 53.4%。此外,还评估了纳米复合材料在五个使用周期内的可重复使用性,在此期间,处理效率从 95.9%降低到 83.1%。总之,本研究证明 EMAC/FeO 纳米复合材料是有前途的电过氧催化剂,因为它们具有成本低、稳定性和可重复使用性好、环境兼容性好以及对 TCH 抗生素去除的催化活性高的特点。

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