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首页> 外文期刊>Catalysis science & technology >Fenton reaction by H2O2 produced on a magnetically recyclable Ag/CuWO4/NiFe2O4 photocatalyst
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Fenton reaction by H2O2 produced on a magnetically recyclable Ag/CuWO4/NiFe2O4 photocatalyst

机译:Fenton reaction by H2O2 produced on a magnetically recyclable Ag/CuWO4/NiFe2O4 photocatalyst

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摘要

The development of recyclable H2O2-producing photocatalysts with in situ Fenton-like organic pollutant degradation is currently a topical area of research. This research investigates the visible light photocatalytic formation of H2O2 on Ag/CuWO4/NiFe2O4 composites. Investigations revealed that NiFe2O4 and CuWO4 have staggered valence band (VB) and conduction band (CB) positions, with the former acting as the reduction component. Large-scale molecular dynamics simulations demonstrated that oxygen molecules (in an aqueous medium) have an affinity for the NiFe2O4 surface. Appropriate scavenger experiments and molecular dynamics results point to a Z-scheme mechanism. Substantial H2O2 formation occurred on continuous oxygen-passing through the aqueous reaction medium under visible light irradiation in pure water. This H2O2 successfully degraded tetracycline by an in situ (heterogeneous) Fenton-like reaction.
机译:可回收H2O2-producing的发展与原位Fenton-like有机催化剂污染物降解目前是局部区域的研究。可见光的光催化过氧化氢的形成Ag / CuWO4 / NiFe2O4复合材料。透露,NiFe2O4和CuWO4交错价带(VB)和导带(CB)位置,前者作为减少组件。动力学模拟表明,氧气分子(在水介质)有密切关系NiFe2O4表面。实验和分子动力学的结果Z-scheme机制。发生在连续oxygen-passing形成通过水反应介质下可见光照射在纯水。成功由原位降解四环素(异构)Fenton-like反应。

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