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首页> 外文期刊>Journal of Materials >Modeling the Formation and Chemical Composition of Partially Oxidized Zn/ZnO Particles Formed by Rapid Cooling of a Mixture of Zn(g)and O2
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Modeling the Formation and Chemical Composition of Partially Oxidized Zn/ZnO Particles Formed by Rapid Cooling of a Mixture of Zn(g)and O2

机译:模拟通过快速冷却Zn(g)和O2的混合物形成的部分氧化的Zn / ZnO颗粒的形成和化学组成

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摘要

A model and its numerical implementation are presented which describe the formation of mixed Zn/ZnO droplets by rapid cooling of a mixture of zinc vapor and oxygen. The model incorporates a nucleation step producing pure metal droplets of a fixed size and three condensation-like processes determining the further growth of the droplets by adding metal atoms and oxygen. Properties to characterize the resulting droplet population are obtained from the model. Examples such as the number density of particles, their average chemical composition and surface area, or the particle mass distribution are presented. The model is verified on a qualitative level by comparing with experimental data the influence of the quench rate and the initial partial pressures of the reactants on the average chemical composition of the product. The model predicts, conforming qualitatively with experimental findings, that increasing the quench rate has little influence on the chemical composition of the products but that decreasing the initial partial pressures of zinc results in less oxidized products, thus, a higher average zinc content.
机译:提出了描述其通过快速冷却锌蒸气和氧气的混合物而形成的Zn / ZnO液滴的模型及其数值实现。该模型包含一个成核步骤,该步骤生成固定大小的纯金属液滴,并具有三个类似冷凝的过程,这些过程通过添加金属原子和氧来确定液滴的进一步生长。从模型获得表征所得液滴总数的特性。给出了实例,例如颗粒的数量密度,其平均化学组成和表面积或颗粒质量分布。通过与实验数据比较淬灭速率和反应物初始分压对产物平均化学组成的影响,在定性水平上验证了该模型。该模型从质量上与实验结果相一致地预测,增加淬灭速率对产物的化学组成影响很小,但是降低锌的初始分压会导致氧化产物减少,因此,平均锌含量更高。

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