Defects in Oxide Catalysts: Fundamental Studies of Catalysis in Action

IF 9.3 2区 化学 Q1 CHEMISTRY, PHYSICAL Catalysis Reviews-Science and Engineering Pub Date : 1992-02-01 DOI:10.1080/01614949208021918
P. L. Gai-Boyes
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引用次数: 102

Abstract

Abstract Catalysis research underpins the science of modem chemical processing and fuel technologies. Catalysis is one of the most important technologies commercially in national economies. Solid-state heterogeneous catalyst materials such as metal oxides or metal particles on ceramic oxide substrates are most common. They are typically used with commodity gases and liquid reactants. Selective oxidation catalysis of hydrocarbon feedstocks is the dominant process converting them to key industrial chemicals, polymers, and energy sources, and is the basis of this review.
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氧化物催化剂的缺陷:作用催化的基础研究
催化研究是现代化学加工和燃料技术的基础。催化是国民经济中最重要的商业化技术之一。固态非均相催化剂材料,如金属氧化物或陶瓷氧化物衬底上的金属颗粒是最常见的。它们通常用于商品气体和液体反应物。碳氢化合物原料的选择性氧化催化是将其转化为关键工业化学品、聚合物和能源的主要过程,也是本综述的基础。
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来源期刊
CiteScore
22.30
自引率
2.80%
发文量
29
期刊介绍: Catalysis Reviews is dedicated to fostering interdisciplinary perspectives in catalytic science and engineering, catering to a global audience of industrial and academic researchers. This journal serves as a bridge between the realms of heterogeneous, homogeneous, and bio-catalysis, providing a crucial and critical evaluation of the current state of catalytic science and engineering. Published topics encompass advances in technology and theory, engineering and chemical aspects of catalytic reactions, reactor design, computer models, analytical tools, and statistical evaluations.
期刊最新文献
Zeolite Catalysts for Biomass Valorization: Tuning of active sites for promoting reactivity Best practices in catalyst screening Multi-metallic electrocatalysts as emerging class of materials: opportunities and challenges in the synthesis, characterization, and applications Challenges of heterogeneous catalytic wet air oxidation processes and potential applications on emerging contaminants loaded wastewater treatment Upgrading biomass to high-added value chemicals: synthesis of monoterpenes-based compounds using catalytic green chemical pathways
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