两种非均相催化机理的比较

Jiamin Jin
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引用次数: 0

摘要

本文介绍了两种多相催化机理,即:化学反应模式循环催化机理CRMM和电子轨道形变恢复循环催化机理EODRM(或电子循环供体采用催化机理——ECDAM。列举了CRMM遇到的一些困难。作者明确指出CRMM是不可信的。这种错误的理论已经误导了我们100多年。关于EODRM或ECDAM,本文也作了简要的描述裂解现象是物理现象,而不是化学现象。它与CRMM完全不同。该理论包含三个主要观点:1)催化剂和毒物之间有界限;2) 催化剂的活性大小或毒物的毒性大小与催化剂或毒物的电负性大小密切相关;3) 催化剂的活性大小与化学状态密切相关。催化剂的选择性与能量水平有关。光催化、电催化、激光催化和微波催化都是物理现象。它有不同的能量水平。根据这一理论,作者认为在生产和科研中有几个问题值得研究,如:铁氨合成催化剂中的氧化铝对铁催化剂有严重的毒害作用,导致氨合成生产出现三高情况(高温、高压、高能耗)。汽车尾气净化催化剂的载体材料采用了堇青石(2MgO-2Al2O3-5SiO2)陶瓷蜂窝载体,对贵金属催化剂有严重的毒害作用,浪费了大量的贵金属等,这些问题一直被催化学术界所忽视;笔者认为,这可能是由于对“催化”和“催化剂”的误解或误译所致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comparison of Two Heterogeneous Catalysis Mechanisms
In this paper, two heterogeneous catalysis mechanisms are introduced, namely: Chemical Reaction Mode Cyclic Catalysis Mechanism—CRMM and Electron Orbital Deformation-Recovery Cyclic Catalysis Mechanism—EODRM (or Electron Cyclic Donate-Adopt catalysis Mechanism—ECDAM. A number of difficulties encountered by CRMM are listed. The author clearly points out that CRMM is not credible. This false theory has misled us for more than 100 years. About EODRM or ECDAM, the article also gives a brief description. The key point of EODRM or ECDAM is that catalysts do not participate in chemical reactions, and catalysis phenomena are physical rather than chemical phenomena. It’s completely different from CRMM. The theory contains three main points: 1) There is a demarcation between the catalyst and the poison; 2) The active size of the catalyst or the poison size of the poison is closely related to the electronegative size of the catalyst or poison; 3) The active size of catalyst is closely related to the chemical state. The selectivity of catalyst is related to energy level. Photocatalysis, electrocatalysis, laser catalysis and microwave catalysis are all physical phenomena. It has different energy levels. According to this theory, the author thinks that there are several problems worth studying in production and scientific research, such as: alumina in the Fe ammonia synthesis catalyst has a serious poison effect on the iron catalyst, resulting in three high situations in ammonia synthesis production (high temperature, high pressure, high energy consumption). The support materials of automotive exhaust purification catalyst have used Cordierite (2MgO-2Al2O3-5SiO2) ceramic honeycomb support, which has a serious poisoning effect on noble metal catalysts, a lot of noble metals are wasted, and so on. These problems have long been ignored by the catalytic academia; the author considers that this reason may be due to a misunderstanding or mistranslation on the term “catalysis” and “catalyst”.
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