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微波增强类芬顿反应中铜铁矿型 CuFeO 对偶氮染料橙 G 的快速脱色。

Rapid decolorization of dye Orange G by microwave enhanced Fenton-like reaction with delafossite-type CuFeO.

机构信息

School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310018, China.

School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310018, China.

出版信息

Sci Total Environ. 2017 Feb 15;580:966-973. doi: 10.1016/j.scitotenv.2016.12.047. Epub 2016 Dec 15.

Abstract

Bimetallic oxide CuFeO as a new heterogeneous catalyst has shown much higher catalytic ability for activating peroxide than single-metal oxides. The present work demonstrated a synergistic microwave (MW) enhanced Fenton-like process with CuFeO for rapid decolorization of azo dye Orange G (OG). The MW irradiation dramatically enhanced the OG degradation efficiency, achieving 99.9% decolorization within 15min at pH5. The XRD analysis of reused CuFeO, together with metal leaching tests, indicated merits of recycling for CuFeO. The subsequent surface element analysis by XPS for fresh and used CuFeO showed a complex network for reactions between copper-iron redox pairs and surface hydroxyl groups, leading to a synergistic Fenton-like system accelerated by MW irradiation. In the CuFeO initiated Fenton-like reactions, several oxidant species (i.e., OH, O, electron hole, and FeO) responsible to the OG oxidation were identified by quenching experiments, showing the MW generated high temperature and "hot spots" enhanced the yield of OH by generation of electron-hole pairs. Further, the 26 detected degradation products confirmed the OH dominant oxidation of OG. This study shows that the MW-enhanced Fenton-like reaction using CuFeO has potential applications for rapid decolorization of dye effluent.

摘要

双金属氧化物 CuFeO 作为一种新型的多相催化剂,在活化过氧化物方面表现出比单金属氧化物更高的催化能力。本工作展示了一种协同微波(MW)增强类芬顿反应,使用 CuFeO 快速降解偶氮染料橙 G(OG)。MW 辐射显著提高了 OG 的降解效率,在 pH5 下 15min 内达到 99.9%的脱色率。重复使用的 CuFeO 的 XRD 分析以及金属浸出测试表明,CuFeO 具有回收利用的优点。随后对新鲜和使用过的 CuFeO 进行的 XPS 表面元素分析表明,铜铁氧化还原对与表面羟基之间存在复杂的反应网络,导致 MW 辐射加速的协同类芬顿体系。在 CuFeO 引发的类芬顿反应中,通过猝灭实验鉴定了几种氧化剂物种(即 OH、O、电子空穴和 FeO)负责 OG 的氧化,表明 MW 产生的高温和“热点”通过产生电子空穴对提高了 OH 的产率。此外,检测到的 26 种降解产物证实了 OH 对 OG 的主导氧化作用。本研究表明,使用 CuFeO 的 MW 增强类芬顿反应具有快速脱色染料废水的潜在应用。

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