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Influence of the heating method on the particle characteristics of copper oxide powders synthesized from copper nitrate aqueous solutions

机译:加热方法对硝酸铜水溶液合成氧化铜粉颗粒特性的影响

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The influence of the heating method and rate on the morphology of CuO powders synthesized from Cu(NO3)(2)center dot 3H(2)O aqueous solutions by denitration was investigated. The median diameter of the obtained powder was found to decrease as the heating rate increased, independent of the heating method. The microwave heating (MW) method remarkably reduced the particle size and enhanced the irregularity and disorder of the shape and surface of the particles, which were found to be more widely distributed. In contrast, the microwave hybrid heating (MHH) method (i.e., a combined usage of microwave and external heating) yielded the most spherical particles with the smoothest surface. It was also found that this heating method sharpened the particle size distribution and had higher energy efficiency than the MW method. Numerical simulations also indicated a difference in the energy efficiency between these two methods. The simulations also revealed that the MHH method could heat the whole reactor more uniformly with a lower microwave output. Moreover, the morphological difference of the powders obtained by these heating methods can be potentially explained by the difference in the simulated bulk temperature distribution and the intensity of the formed hot spot in the CuO particles caused by microwave irradiation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了加热方法和速率对通过脱硝作用从Cu(NO3)(2)中心点3H(2)O水溶液合成的CuO粉末形态的影响。发现所获得的粉末的中值直径随加热速率的增加而减小,而与加热方法无关。微波加热(MW)方法显着减小了颗粒尺寸,并增强了颗粒形状和表面的不规则性和无序性,发现其分布更广泛。相反,微波混合加热(MHH)方法(即微波和外部加热的组合使用)产生的球形颗粒最多,表面最光滑。还发现,该加热方法比MW方法锐化了粒度分布并且具有更高的能量效率。数值模拟还表明这两种方法之间的能效差异。模拟还表明,MHH方法可以以较低的微波输出更均匀地加热整个反应器。而且,通过这些加热方法获得的粉末的形态差异可以通过模拟的体温分布的差异和由微波照射导致的CuO颗粒中形成的热点的强度的差异来潜在地解释。 (C)2016 Elsevier Ltd.保留所有权利。

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