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基于受激拉曼散射的高效率、大能量1197nm激光器 被引量:2
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作者 房春奇 于广礼 +5 位作者 丁建永 李彬彬 李高龙 周军 朱小磊 韦玮 《中国激光》 EI CAS CSCD 北大核心 2021年第20期27-33,共7页
随着医学光声成像和荧光探测技术的迅速发展,波长为1197 nm的激光光源,特别是拉曼激光器受到了人们的关注。但目前1197 nm拉曼激光器存在的主要问题是输出能量低、稳定性较差等。为此提出了一种结构紧凑、高效率、大能量拉曼激光器的设... 随着医学光声成像和荧光探测技术的迅速发展,波长为1197 nm的激光光源,特别是拉曼激光器受到了人们的关注。但目前1197 nm拉曼激光器存在的主要问题是输出能量低、稳定性较差等。为此提出了一种结构紧凑、高效率、大能量拉曼激光器的设计方案和原型样机制备。当300 mJ的1064 nm激光注入到腔外的硝酸钡晶体时,可获得能量为137 mJ、脉宽为7.4 ns的1197 nm激光输出,拉曼转换效率最高达到46.6%,1 h内能量稳定度为0.48%。该样机的输出特性优良,已成功用于医学光声成像,具备良好的产业化前景。 展开更多
关键词 激光器 固体激光器 受激拉曼散射 Ba(NO ) 晶体 高效率
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Chemical Synthesis Residual Pyrolysis and Combustion: Kinetics and Evolved Gases Investigated by TG-FTIR 被引量:4
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作者 fang chunqi JIANG Xuguang +4 位作者 LV Guojun YAN Jianhua LIN Xuliang SONG Huibo CAO Junjun 《Journal of Thermal Science》 SCIE EI CAS CSCD 2020年第1期108-114,共7页
Chemical synthetic residual is one of the solid wastes generated from pharmaceutical industry.The pyrolysis and combustion characteristics of chemical synthesis residual were investigated using a thermogravimetric ana... Chemical synthetic residual is one of the solid wastes generated from pharmaceutical industry.The pyrolysis and combustion characteristics of chemical synthesis residual were investigated using a thermogravimetric analyser coupled with Fourier transform infrared spectroscopy(TG-FTIR)in this study.The processes of pyrolysis and combustion can be divided into three stages.The average weight loss rate of pyrolysis process at low temperature was higher than that of combustion.The kinetic parameters of chemical synthesis residual during pyrolysis and combustion were calculated based on the TG results.Acetic acid and 4-aminophenol were the main evolved matter observed in the pyrolysis process.The emission characteristics of combustion at low temperature were similar to that of the pyrolysis,while CO2 was found as the major gaseous product at high temperature.A high temperature about 850°C is needed to make sure the complete combustion of chemical synthesis residual. 展开更多
关键词 chemical synthesis residual PYROLYSIS COMBUSTION TG-FTIR evolution
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