硝酸锌与甘氨酸混合物燃烧过程中高分散氧化锌粉末的形成及其在光催化苯酚分解中的应用

A. Amosov, V. Novikov, E. M. Kachkin, N. Kryukov, A. Titov, I. Sosnin
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摘要

本文详细研究了以硝酸锌和还原剂(燃料)甘氨酸等常用试剂混合制备氧化锌自蔓延高温合成(SHS)氧化锌粉的燃烧过程和产物,以及合成的高度分散的亚微米和纳米级氧化锌粉在紫外线照射下用于苯酚光催化分解的应用。混合试剂的水溶液(SHS-S工艺或溶液燃烧合成- SCS)和由于吸湿性而被润湿形成的初始干燥试剂混合物的凝胶(SHS-G工艺或凝胶燃烧合成- GCS)被燃烧。研究了燃烧产物的物相、化学组成、结构,以及在氧化空气介质中煅烧、在鼓式球磨、行星式离心磨和砂浆中研磨对其光催化活性的影响。研究表明,煅烧显著提高了燃烧产物的光催化活性,因为未燃烧燃料残渣中的碳杂质显著减少,而磨矿由于铁污染和ZnO颗粒团块的粗化而降低了光催化活性。SHS-G和SHS-S产物在苯酚分解过程中的光催化活性差异仅在紫外线照射的初始阶段表现明显,之后这种差异消失。讨论了进一步研究的方向,以期显著提高燃烧合成的氧化锌在可见光作用下的光催化活性,使其有效地用于苯酚的分解。
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The formation of highly dispersed zinc oxide powder during combustion of zinc nitrate with glycine mixture and its application for photocatalytic phenol decomposition
The paper presents the results of a detailed study of the process and products of combustion during self-propagating high-temperature synthesis (SHS) of ZnO zinc oxide powder from mixtures of such common reagents as oxidizer zinc nitrate and reducing agent (fuel) glycine, as well as the application of synthesized highly dispersed submicron and nanosized ZnO powder for the phenol photocatalytic decomposition under the action of ultraviolet irradiation. An aqueous solution of a mixture of reagents (the SHS-S process or Solution Combustion Synthesis – SCS) and the gel from a mixture of initial dry reagents formed when they were moistened due to hygroscopicity (the SHS-G process or Gel Combustion Synthesis – GCS) were combusted. The authors studied the phase and chemical compositions, the structure of the combustion product, and the effect of calcination in an oxidizing air medium and grinding in drum ball and planetary-centrifugal mills, as well as in mortar, on them and their photocatalythic activity. The study showed that calcination considerably increases the photocatalytic activity of combustion products due to a significant decrease in carbon impurity in the unburned fuel remains, and grinding in mills reduces the photocatalytic activity due to iron contamination and coarsening of ZnO particle agglomerates. The difference between the photocatalytic activity of the SHS-G and SHS-S products in the phenol decomposition is evident only at the initial stage of ultraviolet irradiation, after which this difference disappears. The authors discuss the direction of further research to increase significantly the photocatalytic activity of zinc oxide synthesized during combustion to use it effectively for the phenol decomposition under the action of visible light.
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