...
首页> 外文期刊>ACS Omega >Impact of Incorporation of Active Nanoporous Components or Their Precursors in a CuAlO/CuAl Ceramometal Skeleton on the Properties in the Low-Temperature Water-Gas Shift Reaction
【24h】

Impact of Incorporation of Active Nanoporous Components or Their Precursors in a CuAlO/CuAl Ceramometal Skeleton on the Properties in the Low-Temperature Water-Gas Shift Reaction

机译:活性纳米多孔成分或其前体掺入的影响在黄色水 - 气体变换反应中的性能下的Cualo / Wual岩浆骨架中的影响

获取原文
           

摘要

Enhanced activity in low-temperature water-gas shift (LT-WGS) reaction of some ceramometal catalysts compared to conventional Cu–Zn–Al oxide catalyst was demonstrated. Porous ceramometals were synthesized from powdered CuAl alloys prepared by mechanical alloying with the addition of either CuAl_(exp) powders produced by current spark explosion of Cu+Al wires or CuZnAl oxide obtained by coprecipitation. Their structural, microstructural, and textural characteristics were examined by means of X-ray diffraction, scanning electron microscopy with energy-dispersive X-ray spectrometry, NMR, and adsorption methods, and catalytic properties were studied in the LT-WGS reaction. CuAlO/CuAl ceramometals were found to have mostly the egg-shell microstructure with the metallic cores (Al_(x) Cu_(1–x ), Al_(2)Cu, and Al_(4)Cu_(9)) and the oxide shell containing copper oxides and/or mixed oxides of copper and aluminum and, at same time, CuAlO/CuAl ceramometal with incorporated additives was found to create a more complicated microstructure. A large amount of X-ray amorphous oxides of copper and aluminum is typical for all composites. CuAl ceramometal was shown to be more active than the CuZnAl oxide catalyst in spite of a much lower specific surface area. The CuAl+CuZnAl catalyst consisting of prismatic granules showed a higher activity in comparison with CuZnAl oxide consisting of cylindrical granules. The activity of the composite granulated catalyst referred to its unit weight was more than 6-fold higher as compared to the oxide catalyst, while the activity per the surface area was found to be more than an order of magnitude higher due to much higher specific activity of small fraction and additively much lower diffusion limitation of granules.
机译:对与常规的Cu-Zn-Al氧化物催化剂相比,一些陶瓷催化剂的低温水 - 气体移位(LT-WGS)反应的增强活性的增强活性。通过通过机械合金化制备的粉末状陶瓷,通过加入通过CopRecipItation获得的Cu + Al线或Cuznal氧化物产生的Cul-POULDER(EXP)粉末制备的粉末状陶瓷。通过X射线衍射检查它们的结构,微观结构和纹理特征,扫描电子显微镜与能量分散X射线光谱法,NMR和吸附方法,并在LT-WGS反应中研究了催化性质。发现Cualo / Wual陶瓷数主要具有金属芯的蛋壳微观结构(Al _(x)Cu_(1- x),Al_(2)Cu,Al_(4)Cu_( 9))和含有铜和铝的氧化铜和/或混合氧化物的氧化物壳,同时发现与掺入的添加剂的Cualo / Wual Cailometal植物产生更复杂的微观结构。所有复合材料的铜和铝的大量X射线非晶氧化物是典型的。由于小比表面积,显示出比氧化钴催化剂更有效的。由棱柱形颗粒组成的Cual + Cuznal催化剂表明,与由圆柱形颗粒组成的Cuznal氧化物相比显示出更高的活性。与氧化物催化剂相比,其单位重量的复合粒状催化剂的活性比氧化催化剂相比大于6倍,而每种表面区域的活性被发现由于高得多的比活性,因此面积的活性大于更高的数量级小部分,颗粒的较低扩散限制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号