Synthesis design of Cu/Al2O3 catalysts to decrease copper leaching in the catalytic wet peroxide oxidation of phenol

IF 6.6 Q1 ENGINEERING, ENVIRONMENTAL Journal of hazardous materials letters Pub Date : 2022-11-01 DOI:10.1016/j.hazl.2022.100059
N.A. Sacco , M.E. Lovato , F.A. Marchesini , A.V. Devard
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引用次数: 3

Abstract

This work aims to study the catalytic performance of Cu/Al2O3 catalysts in the catalytic reaction of oxidation of phenol. The addition of La and Mn to Al2O3 support and the calcination temperature influence on the catalytic performance and Cu leaching were studied. The addition of either La or Mn to the support triggered less Cu leaching compared to the unmodified support. The catalysts modified with Mn and calcined at 650ºC and 900 °C yielded low Cu leaching values and high phenol conversions at 120 min of reaction, achieving total consumption of H2O2. The catalysts prepared in the same way but modified with La and calcined at 900 °C, achieved 100% phenol conversion and higher TOC conversion. Copper leaching was higher when the support was modified with La, but improved when compared to the unmodified support, suggesting that the presence of Mn allowed a better anchoring of Cu on the support. However, this was not beneficial for the reaction since a certain amount of Cu in the homogeneous phase was required for the reaction to start. Cu-La-Al2O3 showed stability after consecutive reaction cycles with the corresponding calcinations in each cycle.

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Cu/Al2O3催化剂的合成设计,以减少苯酚湿式过氧化氧化中铜的浸出
本工作旨在研究Cu/Al2O3催化剂在苯酚氧化催化反应中的催化性能。研究了在Al2O3载体中添加La和Mn,以及煅烧温度对催化性能和铜浸出的影响。与未改性的支架相比,在支架中添加La或Mn导致的Cu浸出较少。经650℃和900℃煅烧的Mn改性催化剂在反应120 min时Cu浸出值低,苯酚转化率高,达到H2O2的总消耗。用相同的方法制备的催化剂经La改性后,在900℃下煅烧,苯酚转化率达到100%,TOC转化率较高。用La修饰支架时,铜的浸出率较高,但与未修饰支架相比,铜的浸出率有所提高,这表明Mn的存在使Cu更好地锚定在支架上。然而,这对反应是不利的,因为在均相中需要一定量的Cu才能开始反应。Cu-La-Al2O3在连续反应循环后表现出稳定性,每个循环对应的煅烧。
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来源期刊
Journal of hazardous materials letters
Journal of hazardous materials letters Pollution, Health, Toxicology and Mutagenesis, Environmental Chemistry, Waste Management and Disposal, Environmental Engineering
CiteScore
10.30
自引率
0.00%
发文量
0
审稿时长
20 days
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