首页> 外文期刊>Catalysis Surveys From Japan >Role of Cobalt Oxide-Based Catalysts for Styrene Production: A Review on Significance of Various Promoters, Calcination Temperature, Chemical Behavior of Support Materials and Synthesis Procedure
【24h】

Role of Cobalt Oxide-Based Catalysts for Styrene Production: A Review on Significance of Various Promoters, Calcination Temperature, Chemical Behavior of Support Materials and Synthesis Procedure

机译:氧化钴基催化剂在苯乙烯生产中的作用:各种助催化剂的意义,煅烧温度,载体材料的化学行为和合成方法的综述

获取原文
获取原文并翻译 | 示例
       

摘要

The direct CO2 oxidative dehydrogenation of ethyl benzene (ODH-EB) is a great potential for the production of valuable styrene monomer. In contrast, past/present styrene (ST) synthesis is mainly obtained from oxidative dehydrogenation of ethyl benzene (EB) and being transformed into pilot scale under CO2 atmosphere. It was due to few unresolved restrictions existed in the synthesis of styrene monomer using the steam assisted process and commercial ST production technology. These problems are being rectified by ODH-EB process using CO2 as a soft oxidant. Therefore, ODH of EB is well-known high temperature process to convert the EB (petroleum by product) into valuable ST monomer through the utilizing of CO2. Present study clearly explains the concise history of dehydrogenation process used to convert EB to ST monomer, which is essential feedstock in the wide range of industrial commodities production. In this discussion we majorly devoted to design, development and synthesis of different Co based catalysts by applying different support materials such as SiO2, MgO, MgAl2O4 and gamma-Al2O3 respectively. Moreover, this study extensively deals with chemical behavior of oxidants, utilization of viable active promoters and its characteristics features in the oxidative dehydrogenation process. Different reaction mechanisms in the ODH of EB process to describe CO2 utilization as well as surface styrene monomer formation and evaluation of other by products were discussed widely in this review paper. The surface acidic and basic chemistry of various support materials, its preparation, utilization and its catalytic activity applications have been discussed. Acidic-basic textural properties of different solid oxide support materials have been extensively illustrated through incorporation of variety active metallic oxide and promoters. The catalyst activity evaluation in ODH of EB process as well as plausible reaction mechanism of styrene monomer formation has been explained.
机译:乙苯的直接CO2氧化脱氢(ODH-EB)具有生产有价值的苯乙烯单体的巨大潜力。相反,过去/现在的苯乙烯(ST)合成主要是通过乙苯(EB)的氧化脱氢获得的,并在CO2气氛下转化为中试规模。这是由于在使用蒸汽辅助工艺和商业ST生产技术合成苯乙烯单体中几乎没有未解决的限制。这些问题已通过使用CO2作为软氧化剂的ODH-EB工艺得以纠正。因此,EB的ODH是众所周知的高温工艺,可通过利用CO2将EB(石油副产品)转化为有价值的ST单体。本研究清楚地解释了用于将EB转化为ST单体的脱氢过程的简明历史,这是广泛的工业商品生产中必不可少的原料。在此讨论中,我们主要致力于通过分别施加不同的载体材料(例如SiO2,MgO,MgAl2O4和gamma-Al2O3)来设计,开发和合成不同的Co基催化剂。而且,该研究广泛地涉及氧化剂的化学行为,活泼的活性促进剂的利用及其在氧化脱氢过程中的特征。在这篇综述文章中,广泛讨论了在EB工艺的ODH中描述CO 2利用以及表面苯乙烯单体形成和其他副产物评估的不同反应机理。讨论了各种载体材料的表面酸性和碱性化学性质,其制备,利用及其催化活性的应用。通过掺入各种活性金属氧化物和促进剂,已经广泛地说明了不同固体氧化物载体材料的酸碱性质构性质。已经解释了EB工艺的ODH中的催化剂活性评估以及苯乙烯单体形成的合理反应机理。

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