首页> 外文会议>Progress In Electromagnetic Research Symposium >Fine particle formation by microwave irradiation: Prevention of superheat behavior by addition of alcohol
【24h】

Fine particle formation by microwave irradiation: Prevention of superheat behavior by addition of alcohol

机译:微波辐射形成细颗粒:通过添加酒精防止过热行为

获取原文

摘要

Microwave has been often used for nano-particle synthesis because rapid growth and mono-dispersed particle size are obtained. However, superheat behavior causes larger bubble and disorders temperature distribution when higher power of microwave is irradiated. Accordingly, superheat must be prevented for stable operation of nano-particle process. In previous study [1], we found that bubble formation happened during particle formation at the same time when FeCl3 aqueous solution is heated by microwave. According to the results through in-situ particle size measurement during the irradiation, superheat behavior occurred at the condition of the higher power and lower suspension density. In this study, ethylene glycol with lower electric constant was added to promote particle nucleation and to enlarge particle number density. Moreover, the solute is not dissolved in ethylene glycol as anti-solvent although ethylene glycol is dissolved in water. The results showed that bubble size during the irradiation and particle size after the irradiation became smaller by the ethylene glycol addition. As a result, operation by higher power became possible, and higher particle number density was obtained as synergy effect of anti-solvent effect and quick thermal response by microwave. Finally, addition of alcohol became a good method for nano-particle formation process to prevent superheat behavior during higher power microwave irradiation.
机译:由于获得了快速的生长和单分散的粒径,所以微波通常被用于纳米粒子的合成。但是,当照射更高功率的微波时,过热行为会导致较大的气泡并扰乱温度分布。因此,必须防止过热以使纳米粒子工艺稳定运行。在先前的研究中[1],我们发现在微波加热FeCl3水溶液的同时,在颗粒形成过程中发生了气泡形成。根据辐照过程中原位粒度测量的结果,在较高功率和较低悬浮液密度的条件下会发生过热行为。在这项研究中,添加了较低电常数的乙二醇以促进颗粒成核并增加颗粒数密度。此外,尽管乙二醇溶解在水中,但溶质不作为抗溶剂溶解在乙二醇中。结果表明,通过加入乙二醇,辐射过程中的气泡尺寸和辐射后的颗粒尺寸变小。结果,可以以更高的功率进行操作,并且由于抗溶剂作用的协同作用和微波的快速热响应而获得了更高的颗粒数密度。最终,添加醇成为纳米颗粒形成过程中防止在高功率微波辐射过程中过热行为的一种好方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号