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A method of determining nanoparticle size distribution in iron ammonia synthesis catalyst by measuring mass changes during the nitriding process

机译:一种通过测量氮化过程中的质量变化测定铁氨合成催化剂中纳米粒子尺寸分布的方法

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摘要

A new method for determination of nanoparticle size distribution, on the basis of measurements of nanomaterial conversion degree as a function of the chemical potential of gas reagent, was presented. The method was applied for determination of nanocrystallite size distribution in a pre-reduced iron catalyst for ammonia synthesis being an example of a nanomaterial. Samples were reduced with hydrogen at 500 degrees C and then nitrided at 300 degrees C in gaseous ammonia-hydrogen mixtures of different nitriding potentials. Conversion degree measurements, viz., measurements of mass changes of the catalyst were performed in a differential reactor equipped with systems that enable thermogravimetric measurements and analysis of gas phase chemical composition. Based on the performed measurements, a relationship binding the conversion degree with size distribution was proposed. The resulting size distribution of nanocrystallites was compared to distributions determined by known techniques based on XRD or on measurements of the nitriding reaction rate. The size distribution determined using the new method has a higher resolution, revealing more details of the sample morphology. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了一种基于作为气体试剂的化学电位的纳米材料转换程度的测量来确定纳米粒子尺寸分布的新方法。施用该方法用于测定纳米晶体尺寸分布的用于氨合成的预氧化铁催化剂中,是纳米材料的实例。在500℃下用氢气降低样品,然后在不同氮化电位的气态氨 - 氢混合物中氮化为300℃。转换度测量,致催化剂的质量变化的测量在配备有能够热重度测量和气相化学成分的分析的差动反应器中进行。基于所进行的测量,提出了一种与尺寸分布的转换度结合的关系。将所得纳米晶体的尺寸分布与通过基于XRD的已知技术或氮化反应速率的测量确定的分布。使用新方法确定的尺寸分布具有更高的分辨率,揭示了样本形态的更多细节。 (c)2016年Elsevier B.v.保留所有权利。

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