Y2O3:Eu micronic particles synthesised by spray pyrolysis:: Global modelling and optimisation of the evaporation stage

被引:9
|
作者
Reuge, N. [1 ]
Dexpert-Ghys, J. [2 ]
Verelst, M. [2 ]
Caussat, B. [1 ]
机构
[1] ENSIACET, INPT, Lab Genie Chim, CNRS,UMR 5503, F-31106 Toulouse 1, France
[2] CNRS, UPR 8011, CEMES, F-31055 Toulouse, France
关键词
spray pyrolysis; evaporation; coalescence; modelling; micronic particles; yttrium nitrate;
D O I
10.1016/j.cep.2006.12.007
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
There are a number of some major advantages to be gained in processing micronic europium-doped yttrium oxide Y2O3 particles for phosphor applications using spray pyrolysis. In order to maximise production rates, it is tempting to use relatively dense sprays, but then coalescence occurs increasing final particle diameters, which must be prevented. Moreover, the influence of the operating conditions on the process behaviour is poorly understood. A complete one-dimensional model of the evaporation stage of micronic water/Y(NO3)(3) droplets considering only the evaporation process and then both evaporation and gravity-induced coalescence phenomena has been established. Calculations of pure evaporation have shown that the amounts of evaporated water and droplet compositions depend only on the local temperature and not on the thermal history of the spray. Coupled calculations have shown that, in comparison with evaporation, coalescence plays a minor role on droplet diameter, but non-negligible as the increase of the final mean droplet diameter due to coalescence reaches up to 10% at low flow rates in the operating conditions tested. Injecting a preheated air flow directly into the nebuliser is a promising method to minimise coalescence effects: optimal operating conditions for which coalescence is completely insignificant were obtained by simulation. (C) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:731 / 743
页数:13
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