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The Effect of Water Vapor on the Particle Structure and Size of Silica Nanoparticles During Sintering

机译:烧结过程中水蒸气对二氧化硅纳米颗粒粒径和结构的影响

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In this article, the influence of the water vapor concentration on structural changes of SiO2 aerosol nanoparticle agglomerates during tempering was studied. The presence of water vapor in the carrier gas was shown to strongly accelerate the kinetics of sintering. While dry sintering at temperatures between 1100°C and 1500°C generated aggregates only, the addition of water to the process yields individual, completely coalesced nanoparticles at a temperature of 1300°C. Furthermore, depending on the water vapor concentration and temperature of the process, evaporation and condensation processes could be observed, leading to bimodal size distributions. The results prove the significant role of the water concentration in high temperature synthesis of silica and may be used to improve the control over morphology and specific surface area in these processes.
机译:本文研究了水蒸气浓度对回火过程中SiO 2 气溶胶纳米颗粒团聚体结构变化的影响。载气中水蒸气的存在显示出极大地促进了烧结的动力学。虽然在1100°C和1500°C之间的温度下进行干法烧结仅会产生聚集体,但在该过程中添加水会在1300°C的温度下产生单独的,完全聚结的纳米颗粒。此外,取决于过程中水蒸气的浓度和温度,可以观察到蒸发和冷凝过程,从而导致双峰尺寸分布。结果证明了水浓度在二氧化硅的高温合成中的重要作用,并且可用于在这些过程中改善对形态和比表面积的控制。

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