Deciphering highly resistant characteristics to different pHs of oxygen vacancy-rich Fe2Co1-LDH/PS system for bisphenol A degradation

化学 激进的 双酚A 电子顺磁共振 氧气 煅烧 催化作用 羟基自由基 降级(电信) 过氧化氢 猝灭(荧光) 无机化学 化学工程 光化学 X射线光电子能谱 核化学 有机化学 核磁共振 荧光 电信 物理 量子力学 计算机科学 环氧树脂 工程类
作者
Liying Wu,Junming Hong,Qian Zhang,Bor‐Yann Chen,Ji Wang,Zheng-Yu Dong
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:385: 123620-123620 被引量:107
标识
DOI:10.1016/j.cej.2019.123620
摘要

Abstract This first-attempt study explored interactive function of oxygen vacancies, transition metals, and surface hydroxyl groups for persulfate (PS) activation, at different pH conditions. Oxygen vacancy-rich Fe2Co1-LDHs was fabricated via calcination in hydrogen atmosphere. The Fe2Co1-LDH possessed the maximal concentration of oxygen vacancies and abundant hydroxyl groups for effective functioning according to the characterization through X-ray photoelectron spectroscopy (XPS) and electron paramagnetic resonance (EPR). The BPA-degrading efficiency in the LDHs/PS system indicated that Fe2Co1-LDH exhibited the most promising activated performance since oxygen vacancies could improve the catalytic efficiency to enhance electron transport phenomena between the Fe and Co. N2 experiments proved that the presence of oxygen vacancies could promote the production of 1O2 and O2 −. Phosphate and pH effect experiments showed the Fe2Co1-LDH/PS system stably maintained operation performance over a wide pH range for bisphenol A (BPA) removal with the effect of surface hydroxyl groups. Practical samples had little effect on the removal of BPA. According to the quenching experiments and EPR technology, SO4 − was the main active radicals in acid and neutral conditions and apparently the OH played the crucial role at alkaline pHs. Two different major reaction routes at different pH levels in the Fe2Co1-LDH/PS system for mechanisms of BPA degradation were proposed herein. The Chemical intermediates of BPA degradation were identified by gas chromatography-mass spectrophotometry (GC–MS) analysis, and degradation pathways were proposed for system optimization.
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