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通过开发氧化石墨烯和纳米片杂化气凝胶增强对自来水中新兴污染物的去除

Enhanced removal of emerging contaminants from tap water by developing graphene oxide and nanoplatelet hybrid aerogels.

作者信息

Gorgolis G, Tunioli F, Paterakis G, Melucci M, Koutroumanis N, Sygellou L, S Bafqi M S, Saner Okan B, Galiotis C

机构信息

Faculty of Chemical Engineering - University of Patras Panepistimioupoli 26504 Rio Achaia Greece

Foundation of Research and Technology - Institute of Chemical Engineering Sciences Stadiou Str. Platani - 26504 Greece.

出版信息

RSC Adv. 2024 Oct 29;14(47):34504-34514. doi: 10.1039/d4ra05658b.

Abstract

The removal of emerging contaminants (ECs) from drinking water is a current challenge of global concern. Graphene-based sorbents are attracting increasing interest in this field owing to the chemical versatility of graphene-based materials, their commercial availability and processability in various 3D structures. Herein, for the first time, graphene aerogels (GAs) are reported based on the synergy of graphene oxide (GO) and graphene nanoplatelets (GNPs) derived from waste tire and their use as a sorbent for a mixture of ECs in tap water. Reduction of GO up to 52.1% (O/C = 0.092) was demonstrated through X-ray photoelectron spectroscopy, whereas no changes in the GNP structure during aerogel synthesis were demonstrated with comprehensive spectroscopic and microscopic characterisation. Adsorption of a selection of ECs in a mixture from tap water was tested under flow conditions by inserting the aerogels into filtration cartridges and filtering tap water spiked with the mixture of ECs. Remarkably, the GO + GNP aerogel showed an increase in adsorption capacity of about 2.3 times that of the rGO aerogel owing to the higher obtained surface area, 27 instead of 16 m g, and the resultant more-reduced structure.

摘要

从饮用水中去除新兴污染物(ECs)是当前全球关注的挑战。基于石墨烯的吸附剂由于其材料的化学多功能性、商业可用性以及在各种三维结构中的可加工性,在该领域正吸引着越来越多的关注。在此,首次报道了基于氧化石墨烯(GO)和源自废轮胎的石墨烯纳米片(GNPs)协同作用的石墨烯气凝胶(GAs),以及它们作为自来水ECs混合物吸附剂的应用。通过X射线光电子能谱证明GO的还原率高达52.1%(O/C = 0.092),而通过全面的光谱和显微镜表征表明在气凝胶合成过程中GNP结构没有变化。通过将气凝胶插入过滤筒并过滤添加了ECs混合物的自来水,在流动条件下测试了从自来水中选择的ECs混合物的吸附情况。值得注意的是,由于获得了更高的表面积(27而不是16 m²/g)以及由此产生的更多还原结构,GO + GNP气凝胶的吸附容量比rGO气凝胶提高了约2.3倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9e6/11519773/cc5553a2ec75/d4ra05658b-f1.jpg

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