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微生物介导合成的棉籽壳基活性炭用于增强磺胺类药物的去除。

Microbially-mediated synthesis of activated carbon derived from cottonseed husks for enhanced sulfanilamide removal.

机构信息

School of Environmental Studies, China University of Geosciences, Wuhan 430074, PR China.

School of Environmental Studies, China University of Geosciences, Wuhan 430074, PR China.

出版信息

J Hazard Mater. 2022 Mar 15;426:127811. doi: 10.1016/j.jhazmat.2021.127811. Epub 2021 Nov 21.

Abstract

This study provided a novel pathway to develop activated carbon with enhanced adsorption performance via feedstock pretreatment by fungi. The growth of Pleurotus ostreatus on cottonseed husks offered this feedstock an advantageous pore size for porous carbon making. The prepared activated carbons derived from cottonseed husks (CSH-ACs) during different fungal growth periods exhibited extraordinary performance than commercial activated carbon for sulfanilamide adsorptive removal. Their experimental data of adsorption capacities for sulfanilamide were 139.43, 146.15, and 146.16 mg g, respectively. The adsorption behaviors of sulfanilamide on CSH-ACs were evaluated by kinetic, isotherm and thermodynamic models. Pore filling, hydrogen-bond forming and π-π staking interactions all contributed to the rapid sulfanilamide removal. The microporous-mesoporous structure, stronger hydrophilicity, and richer functional groups moieties owing to the lignocellulose decomposition in the plant wall significantly strengthened the adsorption process on the microbial-mediated activated carbon. The effects of pH and water impurities (HPO, CO, SO, Cl, and humic acid) on sulfanilamide removal were investigated by a single factor experimental design. Results indicated that CSH-ACs were suitable for sulfanilamide removal in actual wastewater treatment with wide pH adaptability and resilience to interference.

摘要

本研究提供了一条通过真菌预处理原料来开发具有增强吸附性能的活性炭的新途径。糙皮侧耳在棉籽壳上的生长为多孔炭的制备提供了有利的孔径。在不同真菌生长阶段制备的棉籽壳衍生的活性炭(CSH-ACs)在磺胺类药物吸附去除方面表现出比商业活性炭更优异的性能。它们对磺胺类药物的吸附容量实验数据分别为 139.43、146.15 和 146.16mg/g。通过动力学、等温线和热力学模型评估了磺胺类药物在 CSH-ACs 上的吸附行为。孔填充、氢键形成和π-π堆积相互作用都有助于快速去除磺胺类药物。由于植物细胞壁中木质纤维素的分解,CSH-ACs 具有微孔-介孔结构、更强的亲水性和更丰富的官能团,这显著增强了微生物介导的活性炭上的吸附过程。通过单因素实验设计研究了 pH 值和水杂质(HPO、CO、SO、Cl 和腐殖酸)对磺胺类药物去除的影响。结果表明,CSH-ACs 适用于实际废水处理中的磺胺类药物去除,具有较宽的 pH 值适应性和对干扰的恢复能力。

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