碳气化反应的催化机理及应用——两种非均相催化机理的比较

Jiahui Jin
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摘要

本文是一篇简要的研究总结文章。回顾了三次实验的结果。介绍了两种非均相催化机理,即化学反应模式循环催化机理- crm和电子供体-受体循环催化机理- ecdam或电子轨道变形-恢复循环催化机理-EODRM。列举了客户关系管理遇到的一些困难。作者明确指出,客户关系管理是不可信的。这个错误的理论误导了我们一百多年。关于ECDAM,文章也做了简要的介绍。ECDAM的主要观点是催化现象是物理现象而不是化学现象。催化剂不参与化学反应。它只是接触,电子循环供体-受体或电子轨道变形-恢复循环。该理论包含三种观点:1。催化剂和毒药之间是有界限的。2. 催化剂的活性或毒物的毒性程度与催化剂或毒物的电负性值密切相关。3.催化剂的活性与催化剂的化学状态密切相关,催化剂的选择性也与电负性或能级有关。根据ECDAM,笔者认为在生产和科研中有几个值得研究的问题。如:氧化铝是一种有毒的铁氨合成催化剂。堇青石(2MgO·2Al2O3·5SiO2)陶瓷蜂窝载体也是汽车尾气净化催化剂中的毒药。堇青石蜂窝陶瓷在柴油车壁流过滤器中起阻燃作用。活性炭在合成氨的钌催化剂中是一种毒药。氧化铝和活性炭对贵金属催化剂都是有毒的,等等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Catalysis Mechanism and Application of Carbon Gasification Reaction-A Comparison of Two Heterogeneous Catalysis Mechanisms
This article is a brief summary article of research. The results of the three times experiments are reviewed. two heterogeneous catalysis mechanisms are introduced, namely: Chemical Reaction Mode Cyclic Catalysis Mechanism-CRM and Electron Cyclic Donate-Accept Catalysis Mechanism-ECDAM or Electron Orbital Deformation-Recovery Cyclic Catalysis Mechanism -EODRM. Some difficulties encountered by CRM are listed. The author clearly points out that the CRM is not credible. This false theory has misled us for more than 100 years. About ECDAM, the article also gives a brief description. The main point of ECDAM is that the catalysis phenomenon are physical rather than chemical phenomenon. The catalysts do not participate in chemical reactions. It's just contact, electron cyclic donate-accept or electron orbital deformation-recovery cycle. The theory contains three viewpoints: 1. There is a boundary between the catalyst and the poison. 2. The active of the catalyst or the degree of toxicity of the poison is closely related to ihe electronegative value of the catalyst or poison. 3. The active of catalyst is closely related to the chemical state of the catalyst The selectivity of catalyst is also related to electronegative or energy level According to ECDAM, the author considers that there are several problems worth studying in production and scientific research. such as: alumina is a poison in the Fe ammonia synthesis catalyst. The Cordierite (2MgO·2Al2O3·5SiO2) ceramic honeycomb support is also a poison in automotive exhaust purification catalyst. The Cordierite ceramic honeycomb is retardant in wall flow filter for diesel vehicles. Activated carbon is a poison in the Ruthenium catalyst for ammonia synthesis. Alumina and activated carbon all are a poison to noble metal catalysts, and so on.
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