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Strategies and applications of combinatorial methods and high throughput screening to the discovery of non-noble metal catalyst

机译:组合方法和高通量筛选在非贵金属催化剂发现中的策略和应用

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The integrated End-to-End~(TM) combinatorial process for catalyst preparation and screening, with emphasis on its capability to vary both process and compositional parameters will be demonstrated. Additionally, each step of the combinatorial screening process has been validated against results from traditional screening methods. The greatest challenge of all has been the adherence to the core concepts of the combinatorial approach. Catalyst libraries have been made and tested for naphthalene dehydrogenation chemistry. The preparation of these libraries has included the application of high throughput techniques for: 1. metal impregnation; 2. catalyst finishing; 3. catalyst screening. The catalyst screening system has been used to find a non-noble metal catalyst system that can replace Pt in dehydrogenation applications in the petroleum industry. A proprietary catalytic composition was developed for the dehydrogenation of methylcyclohexane (MCH) to toluene starting with four non-noble metals of different proportions and four different supports (alumina, titania, zirconia and silica) prepared in different ways and applying a statistical design of experiments. These data demonstrate that all steps of catalyst preparation and screening are performed in a rapid, useful, high throughput manner. Data will be presented from the catalyst screening efforts will demonstrate that optimized metal composition is dependent on the
机译:将展示用于催化剂制备和筛选的集成式End-to-EndTM组合工艺,重点是其改变工艺和组成参数的能力。另外,组合筛选过程的每个步骤均已针对传统筛选方法的结果进行了验证。所有最大的挑战是坚持组合方法的核心概念。已经制备了催化剂库并测试了萘脱氢化学。这些库的准备工作包括高通量技术在以下方面的应用:1.金属浸渍; 2.催化剂精加工; 3.催化剂筛选。催化剂筛选系统已用于寻找非贵金属催化剂系统,该系统可替代石油工业中脱氢应用中的Pt。开发了一种专有的催化组合物,用于从不同比例制备的四种不同比例的非贵金属和四种不同载体(氧化铝,二氧化钛,氧化锆和二氧化硅)开始的甲基环己烷(MCH)脱氢为甲苯,并采用统计设计进行实验。这些数据表明,催化剂制备和筛选的所有步骤均以快速,有用,高通量的方式进行。将从催化剂筛选工作中得出的数据将证明优化的金属成分取决于

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