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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Conventional and wet proofed CuO/Al2O3 catalysts for phenol oxidation: deactivation studies in a trickle bed reactor
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Conventional and wet proofed CuO/Al2O3 catalysts for phenol oxidation: deactivation studies in a trickle bed reactor

机译:用于苯酚氧化的常规湿法验证的CuO / Al2O3催化剂:滴流床反应器中的失活研究

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A large variety of catalytic systems have been studied for the catalytic wet air oxidation of phenolic solutions. Most of them show good activity, but serious stability problems. In this contribution, stability studies were performed over CuO/Al2O3 conventional (CNT) and polytetrafluorethylene coated (C3T) catalysts used for the oxidation of S g L-1 phenol solutions in a trickle bed reactor (140 degrees C and 7 atm of oxygen pressure). For the hydrophilic catalyst, phenol conversion decreased with usage due to the formation of Cu2O and copper oxalate phases. For the wet proofed catalyst, the hydrophobic layer prevented the appearence of those phases, and conversion levels remained practically constant with reaction time. After usage, both catalysts were oxidized at 400 degrees C and tested for reaction: in the case of the C3T catalyst, the phenol conversion was increased over its initial level; for CNT catalyst, the phenol conversion was also increased, but initial levels were not completely restored. The deactivation mechanism of the CNT catalyst is associated with the formation of the Cu2O and copper oxalate phases during reaction. For catalyst C3T, practically no deactivation was observed. (c) 2007 Society of Chemical Industry.
机译:对于酚溶液的催化湿空气氧化,已经研究了各种各样的催化体系。它们大多数表现出良好的活性,但是存在严重的稳定性问题。在这一贡献中,对滴流床反应器(140摄氏度和7个大气压的氧气)中用于S g L-1苯酚溶液氧化的常规CuO / Al2O3(CNT)和聚四氟乙烯涂覆(C3T)催化剂进行了稳定性研究。 )。对于亲水性催化剂,由于形成Cu2O和草酸铜相,苯酚的转化率随使用量而降低。对于防湿催化剂,疏水层阻止了这些相的出现,并且转化率实际上随反应时间保持恒定。使用后,两种催化剂均在400摄氏度下氧化并测试反应:在C3T催化剂的情况下,苯酚的转化率超过其初始水平;对于CNT催化剂,苯酚的转化率也增加了,但是初始水平没有完全恢复。 CNT催化剂的失活机理与反应过程中Cu2O和草酸铜相的形成有关。对于催化剂C3T,实际上未观察到失活。 (c)2007年化学工业协会。

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