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La-, Mn- and Fe-doped zirconia catalysts by sol-gel synthesis: TEM characterization, mass-transfer evaluation and kinetic determination in the catalytic combustion of trichloroethylene

机译:溶胶-凝胶法合成镧,锰和铁掺杂的氧化锆催化剂:三氯乙烯催化燃烧的TEM表征,传质评价和动力学测定

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摘要

Catalysts of pure zirconia and novel zirconia materials doped with combinations of La, Mn and Fe at 0.5 wt% of each metal were synthesized by a sol-gel method and characterized by transmission electron microscopy (TEM). The crystallite size was determined by the Scherrer equation from the main peak of the tetragonal phase of ZrO_2 observed in X-ray diffraction (XRD) patterns; the size thus determined coincided with the crystallite size observed in the TEM images. The structures were revealed to be porous and the dopant metals La, Mn and Fe were distributed on the surfaces of the zirconia crystallite with metal particle sizes ranging from a few to 13nm. Different morphologies were adopted by the metal doping agents and caused different crystal aggregation modes in the doped samples during the xerogel annealing process. Agglomerates of the crystallites provided an average particle diameter of 23.67μm for the catalyst loaded into the experimental reactor, resulting in low mass-transfer effects during the combustion of trichloroethylene in air. The mass-transfer effect was evaluated using the Yoshida correlation under the catalytic test of trichloroethylene combustion. A Langmuir-Hinshelwood model was proposed to describe the inhibition phenomenon seen in the reaction rate data for trichloroethylene combustion over the catalysts.
机译:通过溶胶-凝胶法合成了纯氧化锆和掺有0.5%(重量)的La,Mn和Fe的新型氧化锆材料的催化剂,并用透射电子显微镜(TEM)表征。从X射线衍射(XRD)图中观察到的ZrO_2四方相的主峰,通过Scherrer方程确定微晶尺寸。这样确定的尺寸与在TEM图像中观察到的微晶尺寸一致。揭示出该结构是多孔的,并且掺杂金属La,Mn和Fe分布在氧化锆微晶的表面上,金属粒径为几纳米至13nm。金属掺杂剂采用了不同的形态,并在干凝胶退火过程中引起了掺杂样品中不同的晶体聚集模式。微晶的团聚体为加载到实验反应器中的催化剂提供了23.67μm的平均粒径,导致三氯乙烯在空气中燃烧过程中的传质效应低。使用吉田相关性在三氯乙烯燃烧的催化试验下评估传质效果。提出了Langmuir-Hinshelwood模型来描述在催化剂上三氯乙烯燃烧的反应速率数据中看到的抑制现象。

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