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Study of Catalytic Combustion of Chlorobenzene and Temperature Programmed Reactions over CrCeOx/AlFe Pillared Clay Catalysts

机译:氯苯催化燃烧对Crceox / Alfe柱粘土催化剂的催化燃烧和温度编程反应的研究

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摘要

In this study, both AlFe composite pillaring agents and AlFe pillared clays (AlFe-PILC) were synthesized via a facile process developed by our group, after which mixed Cr and Ce precursors were impregnated on AlFe-PILC. Catalytic combustion of organic pollutant chlorobenzene (CB) on CrCe/AlFe-PILC catalysts were systematically studied. AlFe-PILC displayed very high thermal stability and large BET surface area (SBET). After 4 h of calcination at 550 °C, the basal spacing (d001) and SBET of AlFe-PILC was still maintained at 1.91 nm and 318 m2/g, respectively. Large SBET and d001-value, along with the strong interaction between the carrier and active components, improved the adsorption/desorption of CB and O2. When the desorption temperatures of CB and O2 got closer to the CB combustion temperature, the CB conversion could be increased to a higher level. CB combustion on CrCe/AlFe-PILC catalyst was determined using a Langmuir–Hinshelwood mechanism. Adsorption/desorption/oxidation properties were critical to design highly efficient catalysts for CB degradation. Besides, CrCe/AlFe-PILC also displayed good durability for CB combustion, whether in a humid environment or in the presence of volatile organic compound (VOC), making the catalyst an excellent material for eliminating chlorinated VOCs.
机译:在这项研究中,既ALFE复合柱化剂和ALFE柱撑粘土(ALFE-PILC)经由我们的组,在这之后混合的Cr和Ce前体浸渍在ALFE-PILC开发了一种简便的方法合成。上CRCE / ALFE-PILC催化剂有机污染物氯苯(CB)的催化燃烧进行了系统研究。 ALFE-PILC显示非常高的热稳定性和大的BET比表面积(SBET)。在550℃,层间距(D001)和ALFE-PILC的SBET煅烧4小时后,仍维持在1.91纳米和318米2 /克。大SBET和D001值,与载体和活性成分之间的强相互作用沿,改进的CB和O2的吸附/解吸。当CB和O2的解吸温度有接近CB燃烧温度,CB转换可以提高到更高的水平。使用朗缪尔 - 欣谢尔伍德机构测定上CRCE / ALFE-PILC催化剂CB燃烧。吸附/解吸/氧化性能来设计的高效催化剂用于CB降解的关键。此外,CRCE / ALFE-PILC也显示良好的耐久性用于CB燃烧,无论是在潮湿环境中或在挥发性有机化合物(VOC)的存在下,使催化剂的优良材料用于消除氯化挥发性有机物。

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