...
首页> 外文期刊>ACS catalysis >Oxidative Coupling of Methane (OCM) by SiO2-Supported Tungsten Oxide Catalysts Promoted with Mn and Na
【24h】

Oxidative Coupling of Methane (OCM) by SiO2-Supported Tungsten Oxide Catalysts Promoted with Mn and Na

机译:用Mn和Na促进SiO 2支持的氧化钨催化剂的甲烷(OCM)的氧化偶联

获取原文
获取原文并翻译 | 示例
           

摘要

The literature for the oxidative coupling of methane (OCM) on supported Mn/Na2WO4/SiO2 catalysts is systematically and critically reviewed. The influence of the precursors, starting SiO2 support crystallinity, synthesis method, calcination temperature, and OCM reaction conditions on the catalyst structure is examined. The supported Mn/Na2WO4/SiO2 catalyst system is found to be dynamic with the catalyst structure quite dependent on the set of variables. Although almost all of the reported studies have determined the catalyst crystalline structures under ambient conditions (room temperature and air exposed), recent in situ/operando characterization study under OCM reaction conditions revealed that all previously detected crystalline phases of the active Mn-Na-W-O components are not present the temperature is above the melting points of their oxides. The presence of Na also induces the crystallization of the silica support to SiO2 (cristobalite) at elevated temperatures. The nature of the surface active sites under OCM reaction conditions is still not known because of the absence of in situ/operando surface spectroscopy characterization studies under relevant reaction conditions. Consequently, the proposed structure activity models in the literature are highly speculative since they are lacking supporting data. The rate-determining-step involves activation of the methane C-H bond by atomic surface O* as demonstrated by a kinetic isotope effect (KIE) between CH4 and CD4. Although the reaction kinetics follow a Langmuir-Hinshelwood type mechanism, r = [CH4](1)[O-2](1/2), isotopic O-18(2)-O-16(2) studies have shown that the catalyst lattice also provides O* for the OCM reaction suggesting involvement of a Mars-van Krevelen mechanism. Recommendations are given regarding the experimental investigations that could establish the fundamental reaction aspects of OCM by supported Mn/Na2WO4/SiO2 catalysts that would allow for the rational design of improved catalysts.
机译:甲烷(OCM)对负载的Mn / Na 2 O 4 / SiO 2催化剂的氧化偶联的文献系统地和批判性综述。研究了前体,起始SiO 2支持结晶度,合成方法,煅烧温度和OCM反应条件的影响。发现支持的Mn / Na 2 O 4 / SiO 2催化剂体系是具有催化剂结构的动态,其非常依赖于该组变量。虽然几乎所有报告的研究已经确定了在环境条件下(室温和暴露的空气)下的催化剂结晶结构,但近期在OCM反应条件下的原位/操作扬声表征研究表明,所有先前检测到的活性MN-Na-WO的结晶相组分不存在温度高于其氧化物的熔点。 Na在升高的温度下诱导二氧化硅载体的结晶二氧化硅载体(Cristobalite)。由于在相关反应条件下不存在原位/操作年度表面光谱表征研究,尚不清楚表面活性位点下的性质仍然未知。因此,文献中所提出的结构活动模型是高度投机的,因为它们缺乏支持数据。速率确定步骤涉及通过原子表面O *激活甲烷C-H键,如CH 4和CD4之间的动力学同位素效应(KIE)所示。虽然反应动力学遵循Langmuir-hinshelwood型机制,但R = [CH4](1)[O-2](1/2),同位素O-18(2)-O-16(2)研究表明催化剂晶格还为OCM反应提供O *,表明MARS-VAN KREVELEN机制的参与。关于可以通过支持的Mn / Na 2 O 4 / SiO 2催化剂建立OCM的基本反应方面的建议,该催化剂可以允许改进的催化剂的合理设计。

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