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首页> 外文期刊>Catalysis Letters >PdOx/Silicalite-1 Catalyst Prepared by Room Temperature Ozone Treatment: Preparation Chemistry and Catalytic Performance for Methane Combustion
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PdOx/Silicalite-1 Catalyst Prepared by Room Temperature Ozone Treatment: Preparation Chemistry and Catalytic Performance for Methane Combustion

机译:通过室温臭氧处理制备的PDOX /硅灰硅-1催化剂:制备化学和甲烷燃烧的催化性能

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摘要

The potential of ozone (O-3) for preparation of supported metal catalyst remained unexplored. In this work, a two-step preparation method comprising ion-exchange and room temperature ozone treatment was developed to prepare a zeolite (silicalite-1) supported palladium catalyst. The fundamental preparation chemistry was examined by diffuse reflectance UV-Vis spectroscopy, IR and Raman spectroscopy, X-ray powder diffraction (XRD), and scanning transmission electron microscopy (STEM). While conventional thermal calcination produced PdOx particles mostly on the external surface of silicalite-1 crystals, ozone treatment produced PdOx clusters mostly within the zeolite crystals. Compared with thermal calcination, room temperature ozone treatment can significantly suppress the migration of palladium species outward to the external surface of the zeolite crystals. PdOx/silicalite-1 catalyst prepared with this method exhibited good catalytic activity and stability for catalytic methane combustion. The methane combustion started at about 250 A degrees C; the T (50) and T (90) (the temperatures at which methane conversion reaches 50 and 90% respectively) were 345 and 403 A degrees C, respectively. The conversion decreased slightly from 100 to 96.1% after 24 h of reaction at 500 A degrees C. Deactivation is due to some growth of PdO crystallite revealed by Raman spectroscopy and still could not be detected by XRD.
机译:臭氧(O-3)在制备负载型金属催化剂方面的潜力尚待探索。本研究采用离子交换和室温臭氧处理两步法制备了沸石(silicalite-1)负载钯催化剂。通过漫反射紫外-可见光谱、红外和拉曼光谱、X射线粉末衍射(XRD)和扫描透射电子显微镜(STEM)对基本制备化学进行了检查。传统的热煅烧主要在硅分子筛-1晶体的外表面产生PdOx颗粒,而臭氧处理主要在沸石晶体内产生PdOx团簇。与热煅烧相比,室温臭氧处理可以显著抑制钯物种向沸石晶体外表面的迁移。用该方法制备的PdOx/silicalite-1催化剂对甲烷的催化燃烧具有良好的催化活性和稳定性。甲烷燃烧开始于大约250摄氏度;T(50)和T(90)(甲烷转化率分别达到50%和90%的温度)分别为345和403摄氏度。在500°C下反应24小时后,转化率从100%略微下降到96.1%。失活是由于拉曼光谱显示的PdO微晶生长,但仍然无法通过XRD检测到。

著录项

  • 来源
    《Catalysis Letters》 |2017年第7期|共8页
  • 作者单位

    China Acad Engn Phys Inst Nucl Phys &

    Chem Mianyang 621900 Peoples R China;

    China Acad Engn Phys Inst Nucl Phys &

    Chem Mianyang 621900 Peoples R China;

    China Acad Engn Phys Inst Nucl Phys &

    Chem Mianyang 621900 Peoples R China;

    China Acad Engn Phys Inst Nucl Phys &

    Chem Mianyang 621900 Peoples R China;

    China Acad Engn Phys Inst Nucl Phys &

    Chem Mianyang 621900 Peoples R China;

    China Acad Engn Phys Inst Nucl Phys &

    Chem Mianyang 621900 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 催化;
  • 关键词

    Silicalite-1; Catalytic methane combustion; Palladium catalyst; Ozone treatment;

    机译:硅藻土1;催化甲烷燃烧;钯催化剂;臭氧处理;

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