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首页> 外文期刊>The Journal of Supercritical Fluids >Design of a reactor operating in supercritical water conditions using CFD simulations. Examples of synthesized nanomaterials
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Design of a reactor operating in supercritical water conditions using CFD simulations. Examples of synthesized nanomaterials

机译:使用CFD模拟设计在超临界水条件下运行的反应堆。合成纳米材料的例子

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摘要

Direct information about fluids under supercritical water conditions is unfeasible due to the engineering restrictions at high pressure and high temperature. Numerical investigations based on computational fluid dynamics (CFD) calculations are widely used in order to get extensive information on the fluid behavior, particularly to help the design of a new reactor. This paper presents the numerical investigations performed on an original supercritical water device, especially in the level of the reactor. CFD calculations allow to design and optimize the present reactor described in this study. Currently, this process produces some nanometric oxide powders in continuous way with a production rate of 10-15 g h~(-1). Examples of synthesized nanomaterials are presented in order to prove the process efficiency. Crystalline ZrO2 and TiO2 were produced from a metallic salt and an organometallic as precursors, respectively. XRD and HRTEM analyses show nanosized particles with an uniform size distribution (≤7nm) and a high crystallinity.
机译:由于在高压和高温下的工程限制,在超临界水条件下提供有关流体的直接信息是不可行的。广泛使用基于计算流体动力学(CFD)计算的数值研究,以获取有关流体行为的大量信息,特别是有助于设计新的反应堆。本文介绍了在原始超临界水装置上进行的数值研究,特别是在反应堆高度上。 CFD计算可以设计和优化本研究中描述的当前反应堆。目前,该方法以连续的方式生产了一些纳米氧化物粉末,生产率为10-15 g h〜(-1)。提出了合成纳米材料的实例,以证明工艺效率。 ZrO2和TiO2晶体分别由金属盐和有机金属作为前体制成。 XRD和HRTEM分析显示纳米颗粒具有均匀的尺寸分布(≤7nm)和高结晶度。

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