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Structure and the catalysis mechanism of oxidative chlorination in nanostructural layers of a surface of alumina

机译:氧化铝表面纳米结构层中氧化氯化的结构和催化机理

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摘要

On the basis of X-ray diffraction and mass spectrometric analysis of carrier γ-Al2O3 and catalysts CuCl2/CuCl on its surface, the chemical structure of the active centers of two types oxidative chlorination catalysts applied and permeated type of industrial brands “Harshow” and “MEDС-B” was investigated. On the basis of quantum-mechanical theory of the crystal, field complexes were detected by the presence of CuCl2 cation stoichiometry and structure of the proposed model crystal quasichemical industrial catalyst permeated type MEDС-B for oxidative chlorination of ethylene. On the basis of quantum-mechanical calculations, we propose a new mechanism of catalysis crystal quasichemical oxidative chlorination of ethylene reaction for the catalysts of this type (MEDС-B) and confirmed the possibility of such a mechanism after the analysis of mass spectrometric studies of the active phase (H2 [CuCl4]) catalyst oxidative chlorination of ethylene. The possibility of the formation of atomic and molecular chlorine on the oxidative chlorination of ethylene catalyst surface during Deacon reaction was displaying, which may react with ethylene to produce 1,2-dichloroethane. For the active phase (H [CuCl2]), catalyst offered another model of the metal complex catalyst oxidative chlorination of ethylene deposited type (firm ‘Harshow,’ USA) and the mechanism of catalysis of oxidative chlorination of ethylene with this catalyst.
机译:根据载体γ-Al2O3和表面催化剂CuCl2 / CuCl的X射线衍射和质谱分析,应用了两种类型的氧化氯化催化剂的活性中心的化学结构,并渗透了工业品牌“ Harshow”和研究了“MEDС-B”。根据晶体的量子力学理论,通过CuCl2阳离子化学计量的存在和所提出的用于渗透氧化乙烯的MEDС-B型模型晶体准化学工业催化剂的结构,检测了场络合物。在量子力学计算的基础上,我们针对这种类型的催化剂(MEDС-B)提出了一种乙烯反应催化晶体准化学氧化氯化的新机理,并在对四氯化碳的质谱研究进行分析后证实了这种机理的可能性。活性相(H2 [CuCl4])催化剂对乙烯进行氧化氯化。显示了在迪肯反应期间乙烯催化剂表面氧化氯化反应中形成原子和分子氯的可能性,这可能与乙烯反应生成1,2-二氯乙烷。对于活性相(H [CuCl2]),催化剂提供了另一种模型,描述了乙烯沉积型金属络合物催化剂的氧化氯化反应(美国公司“ Harshow”),以及该催化剂催化乙烯氧化氯化反应的机理。

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