首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Photodegradation of p-nitrophenol using octahedral Cu2O particles immobilized on a solid support under a tungsten halogen lamp
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Photodegradation of p-nitrophenol using octahedral Cu2O particles immobilized on a solid support under a tungsten halogen lamp

机译:使用八面体Cu2O颗粒在卤钨灯下固定化在固相载体上对对硝基苯酚的光降解

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摘要

Octahedral Cu2O particles were prepared on an indium-tin oxide glass via electrodeposition and were employed in the catalytic degradation of p-nitrophenol in the presence of H2O2. Under irradiation of a warm visible-light source, tungsten halogen lamp, Cu2O particles not only acted as a photocatalyst, but might also act as a thermal-catalyst to induce the decomposition of H2O2 and produce O2 at higher temperatures. The photogenerated electrons and holes could react with H2O2, O2, and H2O to produce abundant ~·OH radicals, resulting in the effective oxidation of p-nitrophenol. High-performance liquid chromatography measurements of degradation intermediates showed that p-nitrophenol was first decomposed into hydroquinone and benzoquinone and then mineralized. The degradation efficiency was dependent on electrodeposition time, light intensity, H2O2 amount, and solution temperature. This catalyst could be easily recycled and used in the efficient degradation of other phenolic compounds.
机译:通过电沉积在铟锡氧化物玻璃上制备八面体Cu2O颗粒,并在H2O2存在下将其用于对硝基苯酚的催化降解。在温暖的可见光源,卤钨灯的照射下,Cu2O颗粒不仅充当光催化剂,而且还可能充当热催化剂,以诱导H2O2分解并在较高温度下产生O2。光生电子和空穴可以与H2O2,O2和H2O反应生成大量的〜·OH自由基,从而导致对硝基苯酚的有效氧化。高效液相色谱法对降解中间体的测量表明,对硝基苯酚首先分解为对苯二酚和苯醌,然后矿化。降解效率取决于电沉积时间,光强度,H2O2量和溶液温度。该催化剂可以容易地再循环并用于其他酚类化合物的有效降解。

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