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环孢霉素A水性滴眼液的实验研制
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作者 黄雪英 魏桂林 +1 位作者 李希国 王辉 《中国现代药物应用》 2010年第2期106-107,共2页
目的实验研制环孢霉素A的水性滴眼液。方法使用增溶剂增加环孢霉素A的溶解度,用家兔做角膜移植后的抗免疫排斥试验。结果本法能有效增加环孢霉素A在水中的溶解度,抗免疫排斥的有效率90%。结论研制的水性滴眼液符合滴眼剂的要求,且药效... 目的实验研制环孢霉素A的水性滴眼液。方法使用增溶剂增加环孢霉素A的溶解度,用家兔做角膜移植后的抗免疫排斥试验。结果本法能有效增加环孢霉素A在水中的溶解度,抗免疫排斥的有效率90%。结论研制的水性滴眼液符合滴眼剂的要求,且药效优于油性滴眼液。 展开更多
关键词 环孢霉素A 水性滴眼液 实验研制
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Experimental Study on Latent Heat Storage Characteristics of W/O Emulsion-Supercooling Rate of Dispersed Water Drops by Direct Contact Heat Exchange
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作者 Shin-ichi Morita Yasutaka Hayamizu +2 位作者 Akihiko Horibe Naoto Haruki Hideo Inaba 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第2期145-151,共7页
Recently, much attention has been paid to investigate the latent heat storage system. Using of ice heat storage system brings an equalization of electric power demand, because it will solved the electric -power-demand... Recently, much attention has been paid to investigate the latent heat storage system. Using of ice heat storage system brings an equalization of electric power demand, because it will solved the electric -power-demand-concentration on day-time of summer by the air conditioning. The flowable latent heat storage material, Oil/Water type emulsion, microencapsulated latent heat material-water mixture or ice slurry, etc., is enable to transport the latent heat in a pipe. The flowable latent heat storage material can realize the pipe size reduction and system efficiency improvement. Supercooling phenomenon of the dispersed latent heat storage material in continuous phase brings the obstruction of latent heat storage. The latent heat storage rates of dispersed water drops in W/O (Water/Oil) emulsion are investigated experimentally in this study. The water drops in emulsion has the diameter within 3 ~ 25μm, the averaged water drop diameter is 7.3μm and the standard deviation is 2.9μm. The direct contact heat exchange method is chosen as the phase change rate evaluation of water drops in W/O emulsion. The supercooled temperature and the cooling rate are set as parameters of this study. The evaluation is performed by comparison between the results of this study and the past research. The obtained experimental result is shown that the 35K or more degree from melting point brings 100% latent heat storage rate of W/O emulsion. It was clarified that the supercooling rate of dispersed water particles in emulsion shows the larger value than that of the bulk water. 展开更多
关键词 Heat Storage Latent Heat W/O Emulsion Direct Contact Heat Exchange
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