Continuous Production of IF-WS2 Nanoparticles by a Rotary Process

Fang Xu, N. Wang, Hong Chang, Yongde Xia, Yanqiu Zhu
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引用次数: 19

Abstract

This manuscript demonstrates the design, modification and initial investigation of a rotary furnace for the manufacturing of inorganic fullerene WS2 nanoparticles. Different preparation methods starting with various precursors have been investigated, of which the gas-solid reaction starting with WO3 nanoparticles was the most efficient technique. Furthermore, the influence of temperature, reaction time, and reaction gases etc. on the synthesis of inorganic fullerene WS2 nanomaterials was investigated, and these parameters were optimised based on combined characterisations using XRD, SEM and TEM. In addition, the furnace was further modified to include a baffled tube, a continuous gas-blow feeding system, and a collection system, in order to improve the batch yield and realise continuous production. This technique has improved the production from less than 1 g/batch in a traditional tube furnace to a few tens of g/batch, and could be easily scaled up to industry level production.
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旋转法连续生产IF-WS2纳米颗粒
本文演示了用于制造无机富勒烯WS2纳米颗粒的旋转炉的设计、改造和初步研究。研究了从不同前驱体开始的不同制备方法,其中以WO3纳米颗粒为起始的气固反应是最有效的制备方法。研究了温度、反应时间、反应气体等因素对合成无机富勒烯WS2纳米材料的影响,并通过XRD、SEM和TEM对这些参数进行了综合表征。此外,还对炉进行了进一步改造,增加了折流板管、连续吹气进料系统和收集系统,以提高批次产量,实现连续生产。该技术将传统管式炉的产量从不足1克/批提高到几十克/批,并且可以很容易地扩大到工业生产水平。
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