TiO quantum dots loaded sulfonated graphene aerogel for effective adsorption-photocatalysis of PFOA.

Sci Total Environ

Key Laboratory of Microbial Technology for Industrial Pollution Control of Zhejiang Province, College of Environment, Zhejiang University of Technology, Hangzhou 310032, PR China. Electronic address:

Published: January 2020

With the pollution of perfluoroalkyl substances (PFASs) became increasingly serious, the researches focused on removal of PFASs by adsorption-photocatalysis method has attracted considerable attention. To make the catalyst TiO disperse uniformly as quantum dots onto hydrophobic surface which was liable to attract perfluorooctanoic acid (PFOA), the surfactant sodium dodecyl sulfate (SDS) were used in this work, which not only connected the hydrophilic TiCl to the hydrophobic sulfonated graphene (SG) nanosheets, but also behaved as the molecular template for controlled nucleation and growth of the nanostructured TiO. After 3D SG-TiO QD nanosheets were fabricated, a series of 3D SG-TiO QD aerogels were self-assembled by ice-template. TiO uniformly distributed on the surface of SG aerogel at QD size level (2-3 nm) and the size of TiO could be effectively regulated by concentration of SDS. Compared with aggregated TiO material, 3D SG-TiO QD aerogels owned higher adsorption and photocatalytic performance. Benefiting from the hydrophobic surface of 3D SG as well as dispersed TiO QDs, 3D SG-TiO QD could enrich PFOA instantaneously (0.0381/s) and photocatalytic decomposed them effectively (1.898 E/s). PFOA degradation by hole and hydroxyl radicals proceeded via a stepwise mechanism. The column made of 3D SG-TiO QD could remove PFOA persistently in cycles of permeation. 3D SG-TiO QD possessed powerful adsorption-photocatalytic decomposition capability of PFOA and steady reusability performance. The present work highlights the individual roles and synergistic effect of TiO QD and 3D SG for effectively removing PFOA.

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http://dx.doi.org/10.1016/j.scitotenv.2019.134275DOI Listing

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