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首页> 外文期刊>Kinetics and catalysis >Hydrothermal Synthesis of Porous Al_2O_3/Al Metal Ceramics: II. Mechanism of Formation of a Porous Al(OH)_3/Al Composite
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Hydrothermal Synthesis of Porous Al_2O_3/Al Metal Ceramics: II. Mechanism of Formation of a Porous Al(OH)_3/Al Composite

机译:水热法合成多孔Al_2O_3 / Al金属陶瓷:II。多孔Al(OH)_3 / Al复合材料的形成机理

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摘要

The formation of a porous layer of aluminum hydroxide on the surface of aluminum particles and the aggregation of Al(OH)_3/Al composite particles were analyzed theoretically. It was found that the diffusion mass transfer of the hydroxo complexes of aluminum through the porous structure of a growing layer of aluminum hydroxide to the outer surface is a rate-limiting step in the synthesis of the porous composite. A model mechanism of formation of the porous composite was developed, and rate equations were derived for describing the growth of an aluminum hydroxide layer on the surface of an aluminum particle and changes in the degree of aluminum conversion and the contact radius between composite particles. Based on the developed mathematical model and experimental data, the diffusion coefficient of the hydroxo complexes of aluminum in the porous structure of aluminum hydroxide was calculated.
机译:从理论上分析了铝颗粒表面氢氧化铝多孔层的形成以及Al(OH)_3 / Al复合颗粒的聚集。已经发现,铝的羟基配合物通过氢氧化铝生长层的多孔结构向外表面的扩散质量转移是合成多孔复合材料的限速步骤。提出了形成多孔复合材料的模型机制,并推导了速率方程,用于描述铝颗粒表面氢氧化铝层的生长以及铝转化度和复合颗粒之间接触半径的变化。根据建立的数学模型和实验数据,计算了氢氧化铝络合物在氢氧化铝多孔结构中的扩散系数。

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