Iron tungstate on nano-γ-alumina as photocatalyst for 1,4-dioxane solar degradation in water

Xiyan Xu*, Shuming Liu, Peifu Sun, Zhiren Guo, Kate Smith, Dongxiang Zhang*, Hansheng Li, Jorge Bedia, Carolina Belver

*此作品的通讯作者

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摘要

Reverse osmosis (RO) does not effectively remove carcinogenic 1,4-dioxane and, consequently, this compound needs to be eliminated from RO-reclaimed water for potable reuse. This work analyzed the 1,4-dioxane mineralization on a solar-driven system using home-made catalysts with iron tungstate (wt%: 1–20%) supported on nano-γ-alumina. Characterization has been conducted using SEM-EDS, N2 adsorption-desorption, XRD, XPS, UV–vis spectra, PL, EIS and transient photocurrent analyses. The BET area of FeW/nAl5 catalyst was close to 200 m2 g−1. XRD and XPS analysis confirmed that iron tungstate was loaded on the support. Mineralization has been checked with catalyst concentration ranging 0.1–0.9 g L−1. More than 90% TOC removal was achieved, with no iron or tungsten leaching after 4 h reaction. Scavenging tests, ESR, ionic chromatography and UPLC-MS analysis confirms that OH and O2•− radicals were responsible for 1,4-dioxane degradation. Iron promotes OH formation and 1,4-dioxane photodegradation. Several ring-opening intermediates were identified, whereas condensation byproducts were detected in minor amounts. Based on byproduct identification, reaction pathway was postulated.

源语言英语
文章编号134232
期刊Journal of Cleaner Production
377
DOI
出版状态已出版 - 1 12月 2022

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Xu, X., Liu, S., Sun, P., Guo, Z., Smith, K., Zhang, D., Li, H., Bedia, J., & Belver, C. (2022). Iron tungstate on nano-γ-alumina as photocatalyst for 1,4-dioxane solar degradation in water. Journal of Cleaner Production, 377, 文章 134232. https://doi.org/10.1016/j.jclepro.2022.134232