首页> 外文会议>AIChE annual meeting >Na-promoted Pt catalysts in core-shell structure for the low-temperature Water-Gas-Shift reaction
【24h】

Na-promoted Pt catalysts in core-shell structure for the low-temperature Water-Gas-Shift reaction

机译:Na促进的核壳结构Pt催化剂用于低温水煤气变换反应

获取原文

摘要

The water-gas-shift (WGS) reaction is a key step in high-purity hydrogen production. Platinum-based catalysts are active over a wide temperature range and can be stabilized on certain supports, such as ceria and zirconia during WGS operation cycles. Thus, Pt is a good albeit much costlier alternative to Cu-ZnO catalysts for the demanding application to fuel cell systems. The activity of Pt on reducible ceria for low-temperature applications has been attributed to the interaction of Pt with the support and nanoscale ceria with a lot of surface oxygen defects is superior to high-temperature annealed ceria of large crystal size and low defect concentration . Addition of alkali was recently reported to promote the WGS activity of Pt on reducible oxide supports , and very recently our group reported that alkali promotion of Pt is possible even on an inert oxide surface such as silica . Moreover, a very small amount of oxidized Pt, atomically dispersed and stabilized by the alkali, Na-O-Pt(OH)_x, appeared to contain the active sites. From the practical viewpoint, this is important as it allows the choice of a low-cost support, e.g. silica or alumina for low-temperature shift applications. It also allows one to design a catalyst with potentially trace amounts of the costly Pt metal. From a fundamental viewpoint, understanding the promotion would shed light on the mechanistic aspects and allow rational designs of new WGS catalysts using very small amounts of Pt.In this work, we investigated the water-gas shift reaction on a differently designed catalyst, comprising a core-shell structure, Pt@SiO_2 and evaluated its activity and stability and compared it to Pt prepared by impregnation on silica surfaces.The core-shell structured catalyst Pt@SiO_2 was synthesized by the reverse microemulsion (ME) method . Alkali ions were added during the preparation or in a second step by impregnation. In addition to the Pt core, we found that platinum is atomically dispersed throughout the silica shell and sodium ions stabilize the atomically dispersed platinum species in the support. Using XPS, we found that the binding energy of Pt shifts to higher values, and oxidized Pt species were found on the Pt-
机译:水煤气变换(WGS)反应是高纯度制氢的关键步骤。铂基催化剂在很宽的温度范围内都具有活性,并且可以在WGS操作循环中稳定在某些载体上,例如二氧化铈和氧化锆。因此,对于要求苛刻的燃料电池系统应用而言,Pt是一种很好的替代品,尽管它是Cu-ZnO催化剂的昂贵替代品。 Pt在低温应用中对可还原二氧化铈的活性归因于Pt与载体和具有大量表面氧缺陷的纳米级二氧化铈的相互作用,优于具有大晶体尺寸和低缺陷浓度的高温退火二氧化铈。最近报道了加入碱可以促进Pt在可还原氧化物载体上的WGS活性,最近我们的研究小组报道甚至在惰性氧化物表面如二氧化硅上也可以促进Pt的碱促进。而且,极少量的被原子分散并被碱稳定的氧化Pt Na-O-Pt(OH)_x似乎含有活性位。从实践的角度来看,这很重要,因为它允许选择低成本的支持,例如低温转换应用中的二氧化硅或氧化铝。它还使人们可以设计出可能含有痕量昂贵的Pt金属的催化剂。从基本的角度来看,了解这种促进作用将有助于阐明机械方面,并允许使用非常少量的Pt对新型WGS催化剂进行合理的设计。 在这项工作中,我们研究了在设计不同的催化剂上进行的水煤气变换反应,该催化剂包括核-壳结构Pt @ SiO_2,并评估了其活性和稳定性,并将其与通过在二氧化硅表面浸渍制备的Pt进行了比较。 采用逆向微乳液(ME)法合成了核壳结构催化剂Pt @ SiO_2。在制备过程中或在第二步中通过浸渍添加碱金属离子。除Pt核外,我们发现铂原子分散在整个二氧化硅壳中,钠离子稳定了原子分散在载体中的铂物质。使用XPS,我们发现Pt的结合能转移到更高的值,并且在Pt-

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