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修饰的还原氧化石墨烯将废水中的硫化物转化为硫和砜。

Decorated reduced graphene oxide transfer sulfides into sulfur and sulfone in wastewater.

作者信息

Wang Zheng, Cui Hongtao, Xu Hengduo, Sheng Yanqing

机构信息

School of Chemistry and Chemical Engineering, Yantai University Yantai 264005 China.

Key Laboratory of Coastal Zone Environmental Processes, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences Yantai 264003 China

出版信息

RSC Adv. 2022 Oct 7;12(44):28586-28598. doi: 10.1039/d2ra04323h. eCollection 2022 Oct 4.

Abstract

Sulfides cannot be completely removed using oxidation due to the production of sulfate. In this work, a reduced graphene oxide (RGO)/FeO hybrid material was synthesized a simple chemical method for sulfide removal. The adsorption capacity of RGO/FeO was evaluated by sulfide removal from aqueous solution, and different experimental parameters including contact time, solution pH, adsorbent dosage, ion strength and temperature were investigated. The equilibrium data were in accordance with the Langmuir linear isotherm with a maximum uptake capacity of 173 mg g. The adsorption of sulfide by the RGO/FeO hybrid material can be attributed to the synergistic effect of both chemical and physical adsorption according to kinetic, adsorption isotherm and thermodynamic studies. The RGO/FeO material with oxygenated functional groups could convert sulfides to stable elemental sulfur and sulfone organics. The external magnetic field could easily separate the magnetic RGO/FeO adsorbent from the liquid. This research provides a novel strategy for the green and low-cost treatment of sulfide-containing wastewater by the RGO/FeO hybrid material.

摘要

由于会生成硫酸盐,所以无法通过氧化作用完全去除硫化物。在本研究中,采用一种简单的化学方法合成了还原氧化石墨烯(RGO)/FeO混合材料用于去除硫化物。通过从水溶液中去除硫化物来评估RGO/FeO的吸附容量,并研究了包括接触时间、溶液pH值、吸附剂用量、离子强度和温度在内的不同实验参数。平衡数据符合朗缪尔线性等温线,最大吸附容量为173 mg/g。根据动力学、吸附等温线和热力学研究,RGO/FeO混合材料对硫化物的吸附可归因于化学吸附和物理吸附的协同作用。具有含氧官能团的RGO/FeO材料可将硫化物转化为稳定的元素硫和砜类有机物。外加磁场可轻松地将磁性RGO/FeO吸附剂与液体分离。本研究为利用RGO/FeO混合材料绿色低成本处理含硫化物废水提供了一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cee5/9539723/3626b26cee98/d2ra04323h-f1.jpg

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